Started by user Gunther Huebler Obtained jenkins_tests/clubb_stats_output_consistency_gfortran_test/Jenkinsfile from git https://github.com/larson-group/clubb.git [Pipeline] Start of Pipeline [Pipeline] node Running on Jenkins in /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test [Pipeline] { [Pipeline] stage [Pipeline] { (Declarative: Checkout SCM) [Pipeline] checkout The recommended git tool is: git Cloning the remote Git repository Cloning repository https://github.com/larson-group/clubb.git > git init /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test # timeout=10 Fetching upstream changes from https://github.com/larson-group/clubb.git > git --version # timeout=10 > git --version # 'git version 2.34.1' using GIT_ASKPASS to set credentials larsongroupsysadmin github token > git fetch --tags --force --progress -- https://github.com/larson-group/clubb.git +refs/heads/*:refs/remotes/origin/* # timeout=10 > git config remote.origin.url https://github.com/larson-group/clubb.git # timeout=10 > git config --add remote.origin.fetch +refs/heads/*:refs/remotes/origin/* # timeout=10 Avoid second fetch > git rev-parse refs/remotes/origin/master^{commit} # timeout=10 Checking out Revision 2ca3ddc3ece9ae81f9b9acc08d3be93c4aab01fb (refs/remotes/origin/master) > git config core.sparsecheckout # timeout=10 > git checkout -f 2ca3ddc3ece9ae81f9b9acc08d3be93c4aab01fb # timeout=10 Commit message: "Recently clubb_BFB_varying_flags_gfortran_test failed due to a script bug, dispite it being BFB. RESOLVED:2a334f87922dfaceb7d3a37b1924d374f1b986d5" First time build. Skipping changelog. [Pipeline] } [Pipeline] // stage [Pipeline] withEnv [Pipeline] { [Pipeline] stage [Pipeline] { (Compile) [Pipeline] sh + source /etc/profile.d/larson-group.sh ++ export GIT_EDITOR=vi ++ GIT_EDITOR=vi ++ export SVN_EDITOR=vi ++ SVN_EDITOR=vi ++ export OMP_STACKSIZE=1048579 ++ OMP_STACKSIZE=1048579 ++ export LMOD_ROOT=/opt/lmod/ ++ LMOD_ROOT=/opt/lmod/ ++ source /opt/lmod//lmod/lmod/init/bash +++ '[' -z '' ']' +++ case "$-" in +++ __lmod_vx=x +++ '[' -n x ']' +++ set +x Shell debugging temporarily silenced: export LMOD_SH_DBG_ON=1 for this output (/usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-12.2.0/lmod-8.7.37-bi3kyxcdrfgw3y7vv2k7c5rjxg75qzju/lmod/lmod/init/bash) Shell debugging restarted +++ unset __lmod_vx +++ find /usr/local/spack/share/spack/lmod/linux-pop22-x86_64/Core -print -quit ++ export MODULEPATH=/usr/local/spack/share/spack/lmod/linux-pop22-x86_64/Core ++ MODULEPATH=/usr/local/spack/share/spack/lmod/linux-pop22-x86_64/Core + module load gcc netcdf-fortran + '[' -z '' ']' + case "$-" in + __lmod_sh_dbg=x + '[' -n x ']' + set +x Shell debugging temporarily silenced: export LMOD_SH_DBG_ON=1 for Lmod's output Lmod Warning: ------------------------------------------------------------------------------- The following dependent module(s) are not currently loaded: gcc-runtime/13.1.0-gzedt3f (required by: mpich/4.2.1, hdf5/1.14.3-42x3zrv, netcdf-c/4.9.2, netcdf-fortran/4.5.3) ------------------------------------------------------------------------------- Shell debugging restarted + unset __lmod_sh_dbg + return 0 + ./compile.py -debug -- The Fortran compiler identification is GNU 13.1.0 -- The C compiler identification is GNU 13.1.0 -- The CXX compiler identification is GNU 13.1.0 -- Detecting Fortran compiler ABI info -- Detecting Fortran compiler ABI info - done -- Check for working Fortran compiler: /usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-12.2.0/gcc-13.1.0-uswx4gd4eee2bf3orriqppfr4j25x4li/bin/gfortran - skipped -- Detecting C compiler ABI info -- Detecting C compiler ABI info - done -- Check for working C compiler: /usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-12.2.0/gcc-13.1.0-uswx4gd4eee2bf3orriqppfr4j25x4li/bin/gcc - skipped -- Detecting C compile features -- Detecting C compile features - done -- Detecting CXX compiler ABI info -- Detecting CXX compiler ABI info - done -- Check for working CXX compiler: /usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-12.2.0/gcc-13.1.0-uswx4gd4eee2bf3orriqppfr4j25x4li/bin/g++ - skipped -- Detecting CXX compile features -- Detecting CXX compile features - done -- Compiling with double precision -- Performing Test NETCDF_ABI_COMPATIBLE -- Performing Test NETCDF_ABI_COMPATIBLE - Success -- SUCCESS: netcdf-fortran found. -- -> Library : /usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-13.1.0/netcdf-fortran-4.5.3-ivafocv4fav4rj3ckswo6vj33utvtdir/lib/libnetcdff.so -- -> Modules : /usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-13.1.0/netcdf-fortran-4.5.3-ivafocv4fav4rj3ckswo6vj33utvtdir/include -- Configuring done -- Generating done -- Build files have been written to: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/build/gcc_DEBUG_PRECdouble Using inferred toolchain file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/cmake/toolchains/linux_x86_64_gcc.cmake Setting CLUBB installation dir: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/build/gcc_DEBUG_PRECdouble Setting CLUBB installation dir: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble about to cmnake /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/build/gcc_DEBUG_PRECdouble Running CMake configure... 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Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/matrix_operations.F90.o [633/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/diagnose_correlations_module.F90.o [634/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/calc_roots.F90.o [635/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/LY93_pdf.F90.o [636/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/new_tsdadg_pdf.F90.o [637/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/penta_lu_solver.F90.o [638/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/penta_bicgstab_solver.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/CLUBB_core/penta_bicgstab_solver.F90:140:10: 140 | if ( norm_rhs == 0.0) then | 1 Warning: Equality comparison for REAL(8) at (1) [-Wcompare-reals] [639/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/lapack_wrap.F90.o [640/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/corr_varnce_module.F90.o [641/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/index_mapping.F90.o [642/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/matrix_solver_wrapper.F90.o [643/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/grid_class.F90.o [644/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/adg1_adg2_3d_luhar_pdf.F90.o [645/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/sponge_layer_damping.F90.o [646/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/calc_pressure.F90.o [647/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/sigma_sqd_w_module.F90.o [648/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/saturation.F90.o [649/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/pos_definite_module.F90.o [650/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/turbulent_adv_pdf.F90.o [651/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/diffusion.F90.o [652/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/new_pdf.F90.o [653/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/remapping_module.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/CLUBB_core/remapping_module.F90:1210:43: 1210 | if(f(i,k+1)*f(i,k-1)<zero .and. df2(i,k)/=zero) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/CLUBB_core/remapping_module.F90:1104:15: 1104 | if(dm(i) == zero) then | 1 Warning: Equality comparison for REAL(8) at (1) [-Wcompare-reals] [654/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/parameters_tunable.F90.o [655/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/pdf_parameter_module.F90.o [656/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/new_pdf_main.F90.o [657/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/new_hybrid_pdf_main.F90.o [658/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/stats_netcdf.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/CLUBB_core/stats_netcdf.F90:2961:73: 2961 | character(len=REG_LINE_LEN) , dimension(NML_REG_MAX_ENTRIES) :: entry | 1 Warning: Array 'entry' at (1) is larger than limit set by '-fmax-stack-var-size=', moved from stack to static storage. This makes the procedure unsafe when called recursively, or concurrently from multiple threads. Consider increasing the '-fmax-stack-var-size=' limit (or use '-frecursive', which implies unlimited '-fmax-stack-var-size') - or change the code to use an ALLOCATABLE array. If the variable is never accessed concurrently, this warning can be ignored, and the variable could also be declared with the SAVE attribute. [-Wsurprising] [659/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/advance_xp3_module.F90.o [660/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/mono_flux_limiter.F90.o [661/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/precipitation_fraction.F90.o [662/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/advance_helper_module.F90.o [663/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/numerical_check.F90.o [664/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/fill_holes.F90.o [665/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/pdf_utilities.F90.o [666/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/clip_explicit.F90.o [667/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/sfc_varnce_module.F90.o [668/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/stats_clubb_utilities.F90.o [669/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/mixing_length.F90.o [670/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/grid_adaptation_module.F90.o [671/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/advance_windm_edsclrm_module.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/CLUBB_core/advance_windm_edsclrm_module.F90:50:78: 50 | order_xp2_xpyp, order_wp2_wp3, order_windm, & | 1 Warning: Unused dummy argument 'order_windm' at (1) [-Wunused-dummy-argument] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/CLUBB_core/advance_windm_edsclrm_module.F90:50:65: 50 | order_xp2_xpyp, order_wp2_wp3, order_windm, & | 1 Warning: Unused dummy argument 'order_wp2_wp3' at (1) [-Wunused-dummy-argument] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/CLUBB_core/advance_windm_edsclrm_module.F90:50:50: 50 | order_xp2_xpyp, order_wp2_wp3, order_windm, & | 1 Warning: Unused dummy argument 'order_xp2_xpyp' at (1) [-Wunused-dummy-argument] [672/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/setup_clubb_pdf_params.F90.o [673/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/advance_wp2_wp3_module.F90.o [674/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/advance_xm_wpxp_module.F90.o [675/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/advance_xp2_xpyp_module.F90.o [676/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/pdf_closure_module.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/CLUBB_core/pdf_closure_module.F90:3610:52: 3610 | l_predict_upwp_vpwp, & ! Intent(in) | 1 Warning: Unused dummy argument 'l_predict_upwp_vpwp' at (1) [-Wunused-dummy-argument] [677/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/advance_clubb_core_module.F90.o [678/923] Building Fortran object src/CLUBB_core/CMakeFiles/clubb_core_lib.dir/clubb_api_module.F90.o [679/923] Linking Fortran static library src/CLUBB_core/libclubb_core_lib.a [680/923] Generating Fortran dyndep file src/Microphys/Microphys_utils/CMakeFiles/microphys_utils_lib.dir/Fortran.dd [681/923] Generating Fortran dyndep file src/CMakeFiles/text_writer_lib.dir/Fortran.dd [682/923] Generating Fortran dyndep file src/Radiation/BUGSrad/CMakeFiles/bugsrad_lib.dir/Fortran.dd [683/923] Generating Fortran dyndep file src/Microphys/COAMPS_microphys/CMakeFiles/coamps_lib.dir/Fortran.dd [684/923] Building Fortran object src/Radiation/BUGSrad/CMakeFiles/bugsrad_lib.dir/kinds.F90.o [685/923] Building Fortran object src/Microphys/COAMPS_microphys/CMakeFiles/coamps_lib.dir/eqa20g.F.o 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src/Microphys/KK_microphys/CMakeFiles/KK_microphys_lib.dir/KK_Nrm_tendencies.F90.o [772/923] Building Fortran object src/Microphys/KK_microphys/CMakeFiles/KK_microphys_lib.dir/KK_upscaled_turbulent_sed.F90.o [773/923] Linking Fortran static library src/Radiation/BUGSrad/libbugsrad_lib.a [774/923] Building Fortran object src/Microphys/KK_microphys/CMakeFiles/KK_microphys_lib.dir/KK_upscaled_covariances.F90.o [775/923] Linking Fortran static library src/Microphys/KK_microphys/libKK_microphys_lib.a [776/923] Generating Fortran dyndep file src/SILHS/CMakeFiles/silhs_lib.dir/Fortran.dd [777/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/latin_hypercube_arrays.F90.o [778/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/parameters_silhs.F90.o [779/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/est_kessler_microphys_module.F90.o [780/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/transform_to_pdf_module.F90.o [781/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/mt95.F90.o [782/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/generate_uniform_sample_module.F90.o [783/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/math_utilities.F90.o [784/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/lh_microphys_var_covar_module.F90.o [785/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/silhs_importance_sample_module.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/SILHS/silhs_importance_sample_module.F90:638:62: 633 | do category=1, num_importance_categories | 2 ...... 638 | rand_vect(sample) < category_cumulative_probs(category+1) ) then | 1 Warning: Array reference at (1) out of bounds (9 > 8) in loop beginning at (2) [-Wdo-subscript] [786/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/latin_hypercube_driver_module.F90.o [787/923] Building Fortran object src/SILHS/CMakeFiles/silhs_lib.dir/silhs_api_module.F90.o [788/923] Linking Fortran static library src/SILHS/libsilhs_lib.a [789/923] Generating Fortran dyndep file src/Radiation/CMakeFiles/radiation_lib.dir/Fortran.dd [790/923] Generating Fortran dyndep file src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/Fortran.dd [791/923] Building Fortran object src/Radiation/CMakeFiles/radiation_lib.dir/parameters_radiation.F90.o [792/923] Building Fortran object src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/nrtype.f90.o [793/923] Building Fortran object src/Radiation/CMakeFiles/radiation_lib.dir/cos_solar_zen_module.F90.o [794/923] Building Fortran object src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/quicksort.F90.o [795/923] Building Fortran object src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/nr.f90.o [796/923] Building Fortran object src/Radiation/CMakeFiles/radiation_lib.dir/soil_vegetation.F90.o [797/923] Building Fortran object src/Radiation/CMakeFiles/radiation_lib.dir/extended_atmosphere_module.F90.o [798/923] Building Fortran object src/Radiation/CMakeFiles/radiation_lib.dir/rad_lwsw_module.F90.o [799/923] Building Fortran object src/Radiation/CMakeFiles/radiation_lib.dir/simple_rad_module.F90.o [800/923] Building Fortran object src/Microphys/Morrison_microphys/CMakeFiles/morrison_microphys_lib.dir/module_mp_graupel.F90.o [801/923] Building Fortran object src/Radiation/CMakeFiles/radiation_lib.dir/radiation_variables_module.F90.o [802/923] Building Fortran object src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/enhanced_simann.F90.o [803/923] Linking Fortran static library src/Microphys/Morrison_microphys/libmorrison_microphys_lib.a [804/923] Building Fortran object src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/nrutil.f90.o [805/923] Building Fortran object src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/amoeba.f90.o [806/923] Building Fortran object src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/amebsa.f90.o [807/923] Building Fortran object src/Radiation/CMakeFiles/radiation_lib.dir/bugsrad_driver.F90.o [808/923] Building Fortran object src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/ran_state.f90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Numerical_recipes/ran_state.f90:8:59: 8 | INTEGER(K4B), PARAMETER :: hg=huge(1_K4B), hgm=-hg, hgng=hgm-1 | 1 Warning: Integer outside symmetric range implied by Standard Fortran at (1) [809/923] Building Fortran object src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/ran1_s.f90.o [810/923] Building Fortran object src/Numerical_recipes/CMakeFiles/numerical_recipes_lib.dir/ran1_v.f90.o [811/923] Linking Fortran static library src/Numerical_recipes/libnumerical_recipes_lib.a [812/923] Building Fortran object src/Radiation/CMakeFiles/radiation_lib.dir/radiation_module.F90.o [813/923] Linking Fortran static library src/Radiation/libradiation_lib.a [814/923] Generating Fortran dyndep file src/Input_fields/CMakeFiles/input_fields_lib.dir/Fortran.dd [815/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/input_names.F90.o [816/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/extrapolation.F90.o [817/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/stat_file_module.F90.o [818/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/hydrostatic_module.F90.o [819/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/input_netcdf.F90.o [820/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/input_reader.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/input_reader.F90:498:28: 491 | do i=1, dim_grid | 2 ...... 498 | if ( grid(i) < grid(i-1) ) then | 1 Warning: Array reference at (1) out of bounds (0 < 1) in loop beginning at (2) [-Wdo-subscript] [821/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/corr_varnce_input_reader.F90.o [822/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/stat_file_utils.F90.o [823/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/input_interpret.F90.o [824/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/sounding.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/sounding.F90:156:13: 156 | p_in_Pa, & ! Pressure [Pa] | 1 Warning: Array 'p_in_pa' at (1) is larger than limit set by '-fmax-stack-var-size=', moved from stack to static storage. This makes the procedure unsafe when called recursively, or concurrently from multiple threads. Consider increasing the '-fmax-stack-var-size=' limit (or use '-frecursive', which implies unlimited '-fmax-stack-var-size') - or change the code to use an ALLOCATABLE array. If the variable is never accessed concurrently, this warning can be ignored, and the variable could also be declared with the SAVE attribute. [-Wsurprising] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/sounding.F90:151:8: 151 | rt, & ! Total water mixing ratio sounding [kg/kg] | 1 Warning: Array 'rt' at (1) is larger than limit set by '-fmax-stack-var-size=', moved from stack to static storage. This makes the procedure unsafe when called recursively, or concurrently from multiple threads. Consider increasing the '-fmax-stack-var-size=' limit (or use '-frecursive', which implies unlimited '-fmax-stack-var-size') - or change the code to use an ALLOCATABLE array. If the variable is never accessed concurrently, this warning can be ignored, and the variable could also be declared with the SAVE attribute. [-Wsurprising] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/sounding.F90:157:10: 157 | subs ! Vertical velocity sounding [m/s or Pa/s] | 1 Warning: Array 'subs' at (1) is larger than limit set by '-fmax-stack-var-size=', moved from stack to static storage. This makes the procedure unsafe when called recursively, or concurrently from multiple threads. Consider increasing the '-fmax-stack-var-size=' limit (or use '-frecursive', which implies unlimited '-fmax-stack-var-size') - or change the code to use an ALLOCATABLE array. If the variable is never accessed concurrently, this warning can be ignored, and the variable could also be declared with the SAVE attribute. [-Wsurprising] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/sounding.F90:150:11: 150 | theta, & ! Liquid potential temperature sounding [K] | 1 Warning: Array 'theta' at (1) is larger than limit set by '-fmax-stack-var-size=', moved from stack to static storage. This makes the procedure unsafe when called recursively, or concurrently from multiple threads. Consider increasing the '-fmax-stack-var-size=' limit (or use '-frecursive', which implies unlimited '-fmax-stack-var-size') - or change the code to use an ALLOCATABLE array. If the variable is never accessed concurrently, this warning can be ignored, and the variable could also be declared with the SAVE attribute. [-Wsurprising] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/sounding.F90:152:7: 152 | u, & ! u wind sounding [m/s] | 1 Warning: Array 'u' at (1) is larger than limit set by '-fmax-stack-var-size=', moved from stack to static storage. This makes the procedure unsafe when called recursively, or concurrently from multiple threads. Consider increasing the '-fmax-stack-var-size=' limit (or use '-frecursive', which implies unlimited '-fmax-stack-var-size') - or change the code to use an ALLOCATABLE array. If the variable is never accessed concurrently, this warning can be ignored, and the variable could also be declared with the SAVE attribute. [-Wsurprising] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/sounding.F90:154:8: 154 | ug, & ! u geostrophic wind sounding [m/s] | 1 Warning: Array 'ug' at (1) is larger than limit set by '-fmax-stack-var-size=', moved from stack to static storage. This makes the procedure unsafe when called recursively, or concurrently from multiple threads. Consider increasing the '-fmax-stack-var-size=' limit (or use '-frecursive', which implies unlimited '-fmax-stack-var-size') - or change the code to use an ALLOCATABLE array. If the variable is never accessed concurrently, this warning can be ignored, and the variable could also be declared with the SAVE attribute. [-Wsurprising] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/sounding.F90:153:7: 153 | v, & ! v wind sounding [m/s] | 1 Warning: Array 'v' at (1) is larger than limit set by '-fmax-stack-var-size=', moved from stack to static storage. This makes the procedure unsafe when called recursively, or concurrently from multiple threads. Consider increasing the '-fmax-stack-var-size=' limit (or use '-frecursive', which implies unlimited '-fmax-stack-var-size') - or change the code to use an ALLOCATABLE array. If the variable is never accessed concurrently, this warning can be ignored, and the variable could also be declared with the SAVE attribute. [-Wsurprising] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/sounding.F90:155:8: 155 | vg, & ! v geostrophic wind sounding [m/s] | 1 Warning: Array 'vg' at (1) is larger than limit set by '-fmax-stack-var-size=', moved from stack to static storage. This makes the procedure unsafe when called recursively, or concurrently from multiple threads. Consider increasing the '-fmax-stack-var-size=' limit (or use '-frecursive', which implies unlimited '-fmax-stack-var-size') - or change the code to use an ALLOCATABLE array. If the variable is never accessed concurrently, this warning can be ignored, and the variable could also be declared with the SAVE attribute. [-Wsurprising] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/sounding.F90:149:7: 149 | z, & ! Altitude [m] | 1 Warning: Array 'z' at (1) is larger than limit set by '-fmax-stack-var-size=', moved from stack to static storage. This makes the procedure unsafe when called recursively, or concurrently from multiple threads. Consider increasing the '-fmax-stack-var-size=' limit (or use '-frecursive', which implies unlimited '-fmax-stack-var-size') - or change the code to use an ALLOCATABLE array. If the variable is never accessed concurrently, this warning can be ignored, and the variable could also be declared with the SAVE attribute. [-Wsurprising] [825/923] Building Fortran object src/Input_fields/CMakeFiles/input_fields_lib.dir/input_fields.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/input_fields.F90:2877:22: 2877 | base_unit_number = 15 | 1 Warning: Unused parameter 'base_unit_number' declared at (1) [-Wunused-parameter] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Input_fields/input_fields.F90:151:8: 151 | use constants_clubb, only: fstderr, fstdout ! Constants | 1 Warning: Unused parameter 'fstdout' which has been explicitly imported at (1) [-Wunused-parameter] [826/923] Linking Fortran static library src/Input_fields/libinput_fields_lib.a [827/923] Generating Fortran dyndep file src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/Fortran.dd [828/923] Generating Fortran dyndep file src/Microphys/CMakeFiles/microphys_lib.dir/Fortran.dd [829/923] Generating Fortran dyndep file src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/Fortran.dd [830/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/parameters_microphys.F90.o [831/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/diag_ustar_module.F90.o [832/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/silhs_category_test.F90.o [833/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/spec_hum_to_mixing_ratio.F90.o [834/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/smooth_heaviside_tests.F90.o [835/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/wangara.F90.o [836/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/Nc_Ncn_test.F90.o [837/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/read_corr_mtx_test.F90.o [838/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/cloud_sed_module.F90.o [839/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/corr_cholesky_mtx_tests.F90.o [840/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/smooth_min_max_tests.F90.o [841/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/hole_filling_tests.F90.o [842/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/silhs_category_variance_module.F90.o [843/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/KK_integrals_tests.F90.o [844/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/ice_dfsn_module.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Microphys/ice_dfsn_module.F90:272:25: 207 | do k = gr%nzt, 1, -1 | 2 ...... 272 | mass_ice_cryst(k-1) = mass_ice_cryst(k) & | 1 Warning: Array reference at (1) out of bounds (0 < 1) in loop beginning at (2) [-Wdo-subscript] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Microphys/ice_dfsn_module.F90:287:25: 207 | do k = gr%nzt, 1, -1 | 2 ...... 287 | mass_ice_cryst(k-1) = mass_ice_cryst(k) | 1 Warning: Array reference at (1) out of bounds (0 < 1) in loop beginning at (2) [-Wdo-subscript] [845/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/fill_holes_tests.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/G_unit_test_types/fill_holes_tests.F90:407:27: 407 | .or. any( field(:,upper_hf_level:nz) /= field(:,upper_hf_level:nz) ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/G_unit_test_types/fill_holes_tests.F90:406:22: 406 | if ( any( field(:,1:lower_hf_level) /= field(:,1:lower_hf_level) ) & | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/G_unit_test_types/fill_holes_tests.F90:462:22: 462 | if ( any( field_rev_rev /= field ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/G_unit_test_types/fill_holes_tests.F90:221:27: 221 | .or. any( field(:,upper_hf_level:nz) /= field(:,upper_hf_level:nz) ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/G_unit_test_types/fill_holes_tests.F90:220:22: 220 | if ( any( field(:,1:lower_hf_level) /= field(:,1:lower_hf_level) ) & | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/G_unit_test_types/fill_holes_tests.F90:275:22: 275 | if ( any( field_rev_rev /= field ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] [846/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/gfdl_activation.F90.o [847/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/w_up_in_cloud_tests.F90.o [848/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/tuner_tests.F90.o [849/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/mixed_moment_PDF_integrals.F90.o [850/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/mu_sigma_hm_tests.F90.o [851/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/time_dependent_input.F90.o [852/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/spurious_source_test.F90.o [853/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/pdf_hydromet_microphys_wrapper.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/Microphys/pdf_hydromet_microphys_wrapper.F90:15:29: 15 | itime, dt_main, vert_decorr_coef, & ! In | 1 Warning: Unused dummy argument 'dt_main' at (1) [-Wunused-dummy-argument] [854/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/clex9_oct14.F90.o [855/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/clex9_nov02.F90.o [856/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/jun25.F90.o [857/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/nov11.F90.o [858/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/bomex.F90.o [859/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/sfc_flux.F90.o [860/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/rev_direction_grid_test.F90.o [861/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/arm_0003.F90.o [862/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/neutral_case.F90.o [863/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/arm.F90.o [864/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/arm_97.F90.o [865/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/ekman.F90.o [866/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/arm_3year.F90.o [867/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/fire.F90.o [868/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/gabls3.F90.o [869/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/cloud_feedback.F90.o [870/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/twp_ice.F90.o [871/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/dycoms2_rf02.F90.o [872/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/lba.F90.o [873/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/cobra.F90.o [874/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/astex_a209.F90.o [875/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/dycoms2_rf01.F90.o [876/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/mpace_b.F90.o [877/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/gabls3_night.F90.o [878/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/gabls2.F90.o [879/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/mpace_a.F90.o [880/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/microphys_init_cleanup.F90.o [881/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/atex_long.F90.o [882/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/rico.F90.o [883/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/atex.F90.o [884/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/coamps_microphys_driver_module.F90.o [885/923] Building Fortran object src/G_unit_test_types/CMakeFiles/G_unit_test_lib.dir/pdf_parameter_tests.F90.o [886/923] Linking Fortran static library src/G_unit_test_types/libG_unit_test_lib.a [887/923] Building Fortran object src/Benchmark_cases/CMakeFiles/benchmark_cases_lib.dir/prescribe_forcings.F90.o [888/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/advance_microphys_module.F90.o [889/923] Linking Fortran static library src/Benchmark_cases/libbenchmark_cases_lib.a [890/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/morrison_microphys_module.F90.o [891/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/KK_microphys_module.F90.o [892/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/estimate_scm_microphys_module.F90.o [893/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/lh_microphys_driver_module.F90.o [894/923] Building Fortran object src/Microphys/CMakeFiles/microphys_lib.dir/microphys_driver.F90.o [895/923] Linking Fortran static library src/Microphys/libmicrophys_lib.a [896/923] Generating Fortran dyndep file src/CMakeFiles/G_unit_tests.dir/Fortran.dd [897/923] Generating Fortran dyndep file src/CMakeFiles/clubb_driver_lib.dir/Fortran.dd [898/923] Building Fortran object src/CMakeFiles/G_unit_tests.dir/G_unit_tests.F90.o [899/923] Linking Fortran executable src/G_unit_tests [900/923] Building Fortran object src/CMakeFiles/clubb_driver_lib.dir/generalized_grid_test.F90.o [901/923] Building Fortran object src/CMakeFiles/clubb_driver_lib.dir/clubb_driver.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_driver.F90:6166:25: 6166 | ( gr, iunit, hydromet_dim, hm_metadata, & ! In | 1 Warning: Unused dummy argument 'iunit' at (1) [-Wunused-dummy-argument] [902/923] Building Fortran object src/CMakeFiles/clubb_driver_lib.dir/clubb_loss_driver.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver.F90:255:28: 255 | is_finite_core_value = ( value == value ) .and. ( abs( value ) <= huge( value ) ) | 1 Warning: Equality comparison for REAL(8) at (1) [-Wcompare-reals] [903/923] Linking Fortran static library src/libclubb_driver_lib.a [904/923] Generating Fortran dyndep file src/CMakeFiles/clubb_tuner.dir/Fortran.dd [905/923] Generating Fortran dyndep file src/CMakeFiles/clubb_thread_test.dir/Fortran.dd [906/923] Generating Fortran dyndep file src/CMakeFiles/clubb_driver_test.dir/Fortran.dd [907/923] Generating Fortran dyndep file src/CMakeFiles/clubb_standalone.dir/Fortran.dd [908/923] Generating Fortran dyndep file src/CMakeFiles/clubb_standalone_loss.dir/Fortran.dd [909/923] Generating Fortran dyndep file src/CMakeFiles/clubb_loss_driver_test.dir/Fortran.dd [910/923] Building Fortran object src/CMakeFiles/clubb_driver_test.dir/clubb_driver_test.F90.o [911/923] Building Fortran object src/CMakeFiles/clubb_standalone.dir/clubb_standalone.F90.o [912/923] Building Fortran object src/CMakeFiles/clubb_thread_test.dir/clubb_thread_test.F90.o [913/923] Building Fortran object src/CMakeFiles/clubb_standalone_loss.dir/clubb_standalone_loss.F90.o [914/923] Linking Fortran executable src/clubb_thread_test [915/923] Linking Fortran executable src/clubb_standalone [916/923] Building Fortran object src/CMakeFiles/clubb_tuner.dir/error.F90.o [917/923] Building Fortran object src/CMakeFiles/clubb_loss_driver_test.dir/clubb_loss_driver_test.F90.o /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:262:14: 262 | if ( any( test_scaled_rmse /= reference_scaled_rmse ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:267:14: 267 | if ( any( test_correlation /= reference_correlation ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:272:14: 272 | if ( any( test_std_ratio /= reference_std_ratio ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:277:14: 277 | if ( any( test_centered_rmse_norm /= reference_centered_rmse_norm ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:282:14: 282 | if ( any( test_bias_norm /= reference_bias_norm ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:501:14: 501 | if ( any( clubb_params_all_1 /= clubb_params_all_2 ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:510:14: 510 | any( reinit_bias_norm_1 /= reinit_bias_norm_2 ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:509:14: 509 | any( reinit_centered_rmse_norm_1 /= reinit_centered_rmse_norm_2 ) .or. & | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:508:14: 508 | any( reinit_std_ratio_1 /= reinit_std_ratio_2 ) .or. & | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:507:14: 507 | any( reinit_correlation_1 /= reinit_correlation_2 ) .or. & | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:506:14: 506 | if ( any( reinit_scaled_rmse_1 /= reinit_scaled_rmse_2 ) .or. & | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:420:14: 420 | if ( all( tweaked_scaled_rmse == reference_scaled_rmse ) ) then | 1 Warning: Equality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:360:14: 360 | any( manual_bias_norm_2 /= manual_bias_norm_1 ) ) then | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:359:14: 359 | any( manual_centered_rmse_norm_2 /= manual_centered_rmse_norm_1 ) .or. & | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:358:14: 358 | any( manual_std_ratio_2 /= manual_std_ratio_1 ) .or. & | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:357:14: 357 | any( manual_correlation_2 /= manual_correlation_1 ) .or. & | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/src/clubb_loss_driver_test.F90:356:14: 356 | if ( any( manual_scaled_rmse_2 /= manual_scaled_rmse_1 ) .or. & | 1 Warning: Inequality comparison for REAL(8) at (1) [-Wcompare-reals] [918/923] Linking Fortran executable src/clubb_standalone_loss [919/923] Linking Fortran executable src/clubb_driver_test [920/923] Building Fortran object src/CMakeFiles/clubb_tuner.dir/clubb_tuner.F90.o [921/923] Linking Fortran executable src/clubb_loss_driver_test [922/923] Linking Fortran executable src/clubb_tuner [922/923] Install the project... -- Install configuration: "Debug" -- Installing: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/libclubb_driver_lib.a -- Installing: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_tuner -- Set runtime path of "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_tuner" to "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib64:/usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-13.1.0/netcdf-fortran-4.5.3-ivafocv4fav4rj3ckswo6vj33utvtdir/lib" -- Installing: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/G_unit_tests -- Set runtime path of "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/G_unit_tests" to "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib64:/usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-13.1.0/netcdf-fortran-4.5.3-ivafocv4fav4rj3ckswo6vj33utvtdir/lib" -- Installing: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_thread_test -- Set runtime path of "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_thread_test" to "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib64:/usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-13.1.0/netcdf-fortran-4.5.3-ivafocv4fav4rj3ckswo6vj33utvtdir/lib" -- Installing: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_standalone -- Set runtime path of "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_standalone" to "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib64:/usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-13.1.0/netcdf-fortran-4.5.3-ivafocv4fav4rj3ckswo6vj33utvtdir/lib" -- Installing: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_driver_test -- Set runtime path of "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_driver_test" to "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib64:/usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-13.1.0/netcdf-fortran-4.5.3-ivafocv4fav4rj3ckswo6vj33utvtdir/lib" -- Installing: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_standalone_loss -- Set runtime path of "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_standalone_loss" to "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib64:/usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-13.1.0/netcdf-fortran-4.5.3-ivafocv4fav4rj3ckswo6vj33utvtdir/lib" -- Installing: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_loss_driver_test -- Set runtime path of "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/clubb_loss_driver_test" to "/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib:/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/install/gcc_DEBUG_PRECdouble/lib64:/usr/local/spack/opt/spack/linux-pop22-cascadelake/gcc-13.1.0/netcdf-fortran-4.5.3-ivafocv4fav4rj3ckswo6vj33utvtdir/lib" CLUBBStandardsCheck.py: beginning check on src PASS: 0 checks failed for src CLUBBStandardsCheck.py: beginning check on src/CLUBB_core PASS: 0 checks failed for src/CLUBB_core CLUBBStandardsCheck.py: beginning check on src/SILHS PASS: 0 checks failed for src/SILHS CLUBBStandardsCheck.py: beginning check on src/Benchmark_cases PASS: 0 checks failed for src/Benchmark_cases CLUBBStandardsCheck.py: beginning check on src/Radiation PASS: 0 checks failed for src/Radiation CLUBBStandardsCheck.py: beginning check on src/Microphys PASS: 0 checks failed for src/Microphys CLUBBStandardsCheck.py: beginning check on src/Microphys/KK_microphys PASS: 0 checks failed for src/Microphys/KK_microphys CLUBBStandardsCheck.py: beginning check on src/G_unit_test_types PASS: 0 checks failed for src/G_unit_test_types [92mBuild completed successfully, and all source code checks passed.[0m [Pipeline] } [Pipeline] // stage [Pipeline] stage [Pipeline] { (Run stats output consistency tests) [Pipeline] sh + python run_scripts/run_stats_output_consistency.py -stats input/stats/standard_stats.in bomex ======================== Test Setup ======================== Case: bomex Stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in Multicol spec: C8/0.2:0.8/4 Reference batch size: 4 Batch sizes checked: 2, 1 Fine tout: 60 Coarse touts: 300, 600 Window checks stats_tstart/stats_tend: 5400, 16200 Output root: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex Planned runs: - bs4_tout60: batch_size=4, tout=60, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60 - bs2_tout60: batch_size=2, tout=60, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs2_tout60 - bs1_tout60: batch_size=1, tout=60, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs1_tout60 - bs4_tout300: batch_size=4, tout=300, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300 - bs4_tout600: batch_size=4, tout=600, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout600 - bs4_tout60_window5400_16200: batch_size=4, tout=60, stats_tstart=5400, stats_tend=16200, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60_window5400_16200 - bs4_tout300_window5400_16200: batch_size=4, tout=300, stats_tstart=5400, stats_tend=16200, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300_window5400_16200 ======================== Run Phase ======================== Running bs4_tout60 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 60 bomex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60/bomex_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60/bomex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running bomex =================== 2026/06/23 17:06:33 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = bomex nzmax = 75 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 3500.0000000000000 3500.0000000000000 3500.0000000000000 3500.0000000000000 zt_grid_fname = zm_grid_fname = day = 22 month = 6 year = 1969 lat_vals = 15.000000000000000 lon_vals = -56.500000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 21600.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 0 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7599999999999999E-005 3.7599999999999999E-005 3.7599999999999999E-005 3.7599999999999999E-005 fcor_y = 1.4087062250470739E-004 1.4087062250470739E-004 1.4087062250470739E-004 1.4087062250470739E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/bomex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60/ fname_prefix = bomex stats_output_filename = bomex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 0.0000000000000000 stats_tend = 21600.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/bomex_corr_array_cloud.in and/or ../input/case_setups/bomex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified_bomex sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: bomex_sounding.in File exists? T Path to sclr_sounding: bomex_sclr_sounding.in File exists? T Path to edsclr_sounding: bomex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 100.00000000000000 200.00000000000000 300.00000000000000 400.00000000000000 500.00000000000000 520.00000000000000 600.00000000000000 700.00000000000000 800.00000000000000 900.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1480.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2099.9000000000001 2100.0000000000000 2200.0000000000000 2300.0000000000000 2400.0000000000000 2500.0000000000000 2600.0000000000000 2700.0000000000000 2800.0000000000000 2900.0000000000000 3000.0000000000000 3100.0000000000000 3200.0000000000000 3300.0000000000000 3400.0000000000000 3500.0000000000000 u = -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.5700000000000003 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298.69999999999999 298.69999999999999 299.00833333333333 299.39375000000001 299.77916666666670 300.16458333333333 300.55000000000001 300.93541666666664 301.32083333333333 301.70625000000001 302.09166666666664 302.39999999999998 302.63076923076920 303.78461538461534 304.93846153846152 306.09230769230766 307.24615384615385 308.39999999999998 308.75131499999998 308.75166666666667 309.10333333333330 309.45499999999998 309.80666666666667 310.15833333333330 310.50999999999999 310.86166666666668 311.21333333333331 311.56500000000000 311.91666666666669 312.26833333333332 312.62000000000000 312.97166666666669 313.32333333333332 313.67500000000001 rt = 1.7290000000000000E-002 1.7151538461538461E-002 1.7013076923076922E-002 1.6874615384615384E-002 1.6736153846153849E-002 1.6597692307692310E-002 1.6570000000000001E-002 1.6090000000000000E-002 1.5490000000000000E-002 1.4891282051282052E-002 1.4292564102564104E-002 1.3693846153846154E-002 1.3095128205128205E-002 1.2496410256410257E-002 1.1897692307692307E-002 1.1298974358974359E-002 1.0820000000000000E-002 1.0566153846153847E-002 9.2969230769230759E-003 8.0276923076923069E-003 6.7584615384615378E-003 5.4892307692307688E-003 4.2199999999999998E-003 4.0994539999999998E-003 4.0993333333333333E-003 3.9786666666666668E-003 3.8579999999999999E-003 3.7373333333333330E-003 3.6166666666666665E-003 3.4960000000000000E-003 3.3753333333333331E-003 3.2546666666666666E-003 3.1339999999999996E-003 3.0133333333333331E-003 2.8926666666666666E-003 2.7719999999999997E-003 2.6513333333333328E-003 2.5306666666666663E-003 2.4099999999999998E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 -4.3333331081081084E-004 -8.6666662162162168E-004 -1.2999999324324325E-003 -1.7333332432432434E-003 -2.1666665540540542E-003 -2.2533332162162165E-003 -2.5999998648648650E-003 -3.0333331756756759E-003 -3.4666664864864867E-003 -3.8999997972972975E-003 -4.3333331081081084E-003 -4.7666664189189188E-003 -5.1999997297297301E-003 -5.6333330405405405E-003 -6.0666663513513517E-003 -6.4133330000000002E-003 -6.4999999999999997E-003 -5.4166666111018502E-003 -4.3333332222037007E-003 -3.2499998333055508E-003 -2.1666664444074018E-003 -1.0833330555092523E-003 -1.0829999999998133E-006 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 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iteration: 351 / 360 -- time = 21060.0 / 21600.0 iteration: 352 / 360 -- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.2400 CLUBB-TIMER time_clubb_advance = 3.4669 CLUBB-TIMER time_clubb_pdf = 0.0006 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 5.0810 Program exited normally [PASS] bs4_tout60: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60/bomex_stats.nc Running bs2_tout60 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs2_tout60 -multicol C8/0.2:0.8/4 -batch_size 2 -tout 60 bomex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs2_tout60/bomex_multicol_params.in': - ngrdcol = 4 - batch_size = 2 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs2_tout60/bomex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running bomex =================== 2026/06/23 17:06:39 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = bomex nzmax = 75 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 zm_top = 3500.0000000000000 3500.0000000000000 zt_grid_fname = zm_grid_fname = day = 22 month = 6 year = 1969 lat_vals = 15.000000000000000 lon_vals = -56.500000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 21600.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 0 T_sfc = 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7599999999999999E-005 3.7599999999999999E-005 fcor_y = 1.4087062250470739E-004 1.4087062250470739E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/bomex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs2_tout60/ fname_prefix = bomex stats_output_filename = bomex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 0.0000000000000000 stats_tend = 21600.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/bomex_corr_array_cloud.in and/or ../input/case_setups/bomex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified_bomex sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: bomex_sounding.in File exists? T Path to sclr_sounding: bomex_sclr_sounding.in File exists? T Path to edsclr_sounding: bomex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 100.00000000000000 200.00000000000000 300.00000000000000 400.00000000000000 500.00000000000000 520.00000000000000 600.00000000000000 700.00000000000000 800.00000000000000 900.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1480.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2099.9000000000001 2100.0000000000000 2200.0000000000000 2300.0000000000000 2400.0000000000000 2500.0000000000000 2600.0000000000000 2700.0000000000000 2800.0000000000000 2900.0000000000000 3000.0000000000000 3100.0000000000000 3200.0000000000000 3300.0000000000000 3400.0000000000000 3500.0000000000000 u = -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.5700000000000003 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298.69999999999999 298.69999999999999 299.00833333333333 299.39375000000001 299.77916666666670 300.16458333333333 300.55000000000001 300.93541666666664 301.32083333333333 301.70625000000001 302.09166666666664 302.39999999999998 302.63076923076920 303.78461538461534 304.93846153846152 306.09230769230766 307.24615384615385 308.39999999999998 308.75131499999998 308.75166666666667 309.10333333333330 309.45499999999998 309.80666666666667 310.15833333333330 310.50999999999999 310.86166666666668 311.21333333333331 311.56500000000000 311.91666666666669 312.26833333333332 312.62000000000000 312.97166666666669 313.32333333333332 313.67500000000001 rt = 1.7290000000000000E-002 1.7151538461538461E-002 1.7013076923076922E-002 1.6874615384615384E-002 1.6736153846153849E-002 1.6597692307692310E-002 1.6570000000000001E-002 1.6090000000000000E-002 1.5490000000000000E-002 1.4891282051282052E-002 1.4292564102564104E-002 1.3693846153846154E-002 1.3095128205128205E-002 1.2496410256410257E-002 1.1897692307692307E-002 1.1298974358974359E-002 1.0820000000000000E-002 1.0566153846153847E-002 9.2969230769230759E-003 8.0276923076923069E-003 6.7584615384615378E-003 5.4892307692307688E-003 4.2199999999999998E-003 4.0994539999999998E-003 4.0993333333333333E-003 3.9786666666666668E-003 3.8579999999999999E-003 3.7373333333333330E-003 3.6166666666666665E-003 3.4960000000000000E-003 3.3753333333333331E-003 3.2546666666666666E-003 3.1339999999999996E-003 3.0133333333333331E-003 2.8926666666666666E-003 2.7719999999999997E-003 2.6513333333333328E-003 2.5306666666666663E-003 2.4099999999999998E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 -4.3333331081081084E-004 -8.6666662162162168E-004 -1.2999999324324325E-003 -1.7333332432432434E-003 -2.1666665540540542E-003 -2.2533332162162165E-003 -2.5999998648648650E-003 -3.0333331756756759E-003 -3.4666664864864867E-003 -3.8999997972972975E-003 -4.3333331081081084E-003 -4.7666664189189188E-003 -5.1999997297297301E-003 -5.6333330405405405E-003 -6.0666663513513517E-003 -6.4133330000000002E-003 -6.4999999999999997E-003 -5.4166666111018502E-003 -4.3333332222037007E-003 -3.2499998333055508E-003 -2.1666664444074018E-003 -1.0833330555092523E-003 -1.0829999999998133E-006 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 20 / 360 -- time = 1200.0 / 21600.0 iteration: 21 / 360 -- time = 1260.0 / 21600.0 iteration: 22 / 360 -- time = 1320.0 / 21600.0 iteration: 23 / 360 -- time = 1380.0 / 21600.0 iteration: 24 / 360 -- time = 1440.0 / 21600.0 iteration: 25 / 360 -- time = 1500.0 / 21600.0 iteration: 26 / 360 -- time = 1560.0 / 21600.0 iteration: 27 / 360 -- time = 1620.0 / 21600.0 iteration: 28 / 360 -- time = 1680.0 / 21600.0 iteration: 29 / 360 -- time = 1740.0 / 21600.0 iteration: 30 / 360 -- time = 1800.0 / 21600.0 iteration: 31 / 360 -- time = 1860.0 / 21600.0 iteration: 32 / 360 -- time = 1920.0 / 21600.0 iteration: 33 / 360 -- time = 1980.0 / 21600.0 iteration: 34 / 360 -- time = 2040.0 / 21600.0 iteration: 35 / 360 -- time = 2100.0 / 21600.0 iteration: 36 / 360 -- time = 2160.0 / 21600.0 iteration: 37 / 360 -- time = 2220.0 / 21600.0 iteration: 38 / 360 -- time = 2280.0 / 21600.0 iteration: 39 / 360 -- time = 2340.0 / 21600.0 iteration: 40 / 360 -- time = 2400.0 / 21600.0 iteration: 41 / 360 -- time = 2460.0 / 21600.0 iteration: 42 / 360 -- time = 2520.0 / 21600.0 iteration: 43 / 360 -- time = 2580.0 / 21600.0 iteration: 44 / 360 -- time = 2640.0 / 21600.0 iteration: 45 / 360 -- time = 2700.0 / 21600.0 iteration: 46 / 360 -- time = 2760.0 / 21600.0 iteration: 47 / 360 -- time = 2820.0 / 21600.0 iteration: 48 / 360 -- time = 2880.0 / 21600.0 iteration: 49 / 360 -- time = 2940.0 / 21600.0 iteration: 50 / 360 -- time = 3000.0 / 21600.0 iteration: 51 / 360 -- time = 3060.0 / 21600.0 iteration: 52 / 360 -- time = 3120.0 / 21600.0 iteration: 53 / 360 -- time = 3180.0 / 21600.0 iteration: 54 / 360 -- time = 3240.0 / 21600.0 iteration: 55 / 360 -- time = 3300.0 / 21600.0 iteration: 56 / 360 -- time = 3360.0 / 21600.0 iteration: 57 / 360 -- time = 3420.0 / 21600.0 iteration: 58 / 360 -- time = 3480.0 / 21600.0 iteration: 59 / 360 -- time = 3540.0 / 21600.0 iteration: 60 / 360 -- time = 3600.0 / 21600.0 iteration: 61 / 360 -- time = 3660.0 / 21600.0 iteration: 62 / 360 -- time = 3720.0 / 21600.0 iteration: 63 / 360 -- time 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iteration: 352 / 360 -- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.1469 CLUBB-TIMER time_clubb_advance = 2.2664 CLUBB-TIMER time_clubb_pdf = 0.0004 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 4.0780 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 20 / 360 -- time = 1200.0 / 21600.0 iteration: 21 / 360 -- time = 1260.0 / 21600.0 iteration: 22 / 360 -- time = 1320.0 / 21600.0 iteration: 23 / 360 -- time = 1380.0 / 21600.0 iteration: 24 / 360 -- time = 1440.0 / 21600.0 iteration: 25 / 360 -- time = 1500.0 / 21600.0 iteration: 26 / 360 -- time = 1560.0 / 21600.0 iteration: 27 / 360 -- time = 1620.0 / 21600.0 iteration: 28 / 360 -- time = 1680.0 / 21600.0 iteration: 29 / 360 -- time = 1740.0 / 21600.0 iteration: 30 / 360 -- time = 1800.0 / 21600.0 iteration: 31 / 360 -- time = 1860.0 / 21600.0 iteration: 32 / 360 -- time = 1920.0 / 21600.0 iteration: 33 / 360 -- time = 1980.0 / 21600.0 iteration: 34 / 360 -- time = 2040.0 / 21600.0 iteration: 35 / 360 -- time = 2100.0 / 21600.0 iteration: 36 / 360 -- time = 2160.0 / 21600.0 iteration: 37 / 360 -- time = 2220.0 / 21600.0 iteration: 38 / 360 -- time = 2280.0 / 21600.0 iteration: 39 / 360 -- time = 2340.0 / 21600.0 iteration: 40 / 360 -- time = 2400.0 / 21600.0 iteration: 41 / 360 -- time = 2460.0 / 21600.0 iteration: 42 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iteration: 352 / 360 -- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.1385 CLUBB-TIMER time_clubb_advance = 2.2304 CLUBB-TIMER time_clubb_pdf = 0.0004 CLUBB-TIMER time_SILHS = 0.0001 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.3762 Program exited normally [PASS] bs2_tout60: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs2_tout60/bomex_stats.nc Running bs1_tout60 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs1_tout60 -multicol C8/0.2:0.8/4 -batch_size 1 -tout 60 bomex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs1_tout60/bomex_multicol_params.in': - ngrdcol = 4 - batch_size = 1 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs1_tout60/bomex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running bomex =================== 2026/06/23 17:06:47 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = bomex nzmax = 75 grid_type = 1 deltaz = 40.000000000000000 zm_init = 0.0000000000000000 zm_top = 3500.0000000000000 zt_grid_fname = zm_grid_fname = day = 22 month = 6 year = 1969 lat_vals = 15.000000000000000 lon_vals = -56.500000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 21600.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 0 T_sfc = 288.00000000000000 p_sfc = 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7599999999999999E-005 fcor_y = 1.4087062250470739E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/bomex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs1_tout60/ fname_prefix = bomex stats_output_filename = bomex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 0.0000000000000000 stats_tend = 21600.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/bomex_corr_array_cloud.in and/or ../input/case_setups/bomex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified_bomex sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: bomex_sounding.in File exists? T Path to sclr_sounding: bomex_sclr_sounding.in File exists? T Path to edsclr_sounding: bomex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 100.00000000000000 200.00000000000000 300.00000000000000 400.00000000000000 500.00000000000000 520.00000000000000 600.00000000000000 700.00000000000000 800.00000000000000 900.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1480.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2099.9000000000001 2100.0000000000000 2200.0000000000000 2300.0000000000000 2400.0000000000000 2500.0000000000000 2600.0000000000000 2700.0000000000000 2800.0000000000000 2900.0000000000000 3000.0000000000000 3100.0000000000000 3200.0000000000000 3300.0000000000000 3400.0000000000000 3500.0000000000000 u = -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.5700000000000003 -8.3900000000000006 -8.2100000000000009 -8.0299999999999994 -7.8499999999999996 -7.6699999999999999 -7.4900000000000002 -7.3460000000000001 -7.3100000000000005 -7.1299999999999999 -6.9500000000000002 -6.7700000000000005 -6.5899999999999999 -6.4100000000000001 -6.2301799999999998 -6.2300000000000004 -6.0499999999999998 -5.8700000000000001 -5.6900000000000004 -5.5099999999999998 -5.3300000000000001 -5.1500000000000004 -4.9699999999999998 -4.7900000000000000 -4.6100000000000003 -4.4299999999999997 -4.2500000000000000 -4.0700000000000003 -3.8900000000000001 -3.7100000000000000 v = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 ug = -10.000000000000000 -9.8200000000000003 -9.6400000000000006 -9.4600000000000009 -9.2799999999999994 -9.0999999999999996 -9.0640000000000001 -8.9199999999999999 -8.7400000000000002 -8.5600000000000005 -8.3800000000000008 -8.1999999999999993 -8.0199999999999996 -7.8399999999999999 -7.6600000000000001 -7.4800000000000004 -7.3360000000000003 -7.3000000000000007 -7.1200000000000001 -6.9400000000000004 -6.7600000000000007 -6.5800000000000001 -6.4000000000000004 -6.2201800000000000 -6.2200000000000006 -6.0400000000000000 -5.8600000000000003 -5.6800000000000006 -5.5000000000000000 -5.3200000000000003 -5.1400000000000006 -4.9600000000000000 -4.7800000000000002 -4.6000000000000005 -4.4199999999999999 -4.2400000000000002 -4.0600000000000005 -3.8800000000000003 -3.7000000000000002 vg = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 299.00833333333333 299.39375000000001 299.77916666666670 300.16458333333333 300.55000000000001 300.93541666666664 301.32083333333333 301.70625000000001 302.09166666666664 302.39999999999998 302.63076923076920 303.78461538461534 304.93846153846152 306.09230769230766 307.24615384615385 308.39999999999998 308.75131499999998 308.75166666666667 309.10333333333330 309.45499999999998 309.80666666666667 310.15833333333330 310.50999999999999 310.86166666666668 311.21333333333331 311.56500000000000 311.91666666666669 312.26833333333332 312.62000000000000 312.97166666666669 313.32333333333332 313.67500000000001 rt = 1.7290000000000000E-002 1.7151538461538461E-002 1.7013076923076922E-002 1.6874615384615384E-002 1.6736153846153849E-002 1.6597692307692310E-002 1.6570000000000001E-002 1.6090000000000000E-002 1.5490000000000000E-002 1.4891282051282052E-002 1.4292564102564104E-002 1.3693846153846154E-002 1.3095128205128205E-002 1.2496410256410257E-002 1.1897692307692307E-002 1.1298974358974359E-002 1.0820000000000000E-002 1.0566153846153847E-002 9.2969230769230759E-003 8.0276923076923069E-003 6.7584615384615378E-003 5.4892307692307688E-003 4.2199999999999998E-003 4.0994539999999998E-003 4.0993333333333333E-003 3.9786666666666668E-003 3.8579999999999999E-003 3.7373333333333330E-003 3.6166666666666665E-003 3.4960000000000000E-003 3.3753333333333331E-003 3.2546666666666666E-003 3.1339999999999996E-003 3.0133333333333331E-003 2.8926666666666666E-003 2.7719999999999997E-003 2.6513333333333328E-003 2.5306666666666663E-003 2.4099999999999998E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 -4.3333331081081084E-004 -8.6666662162162168E-004 -1.2999999324324325E-003 -1.7333332432432434E-003 -2.1666665540540542E-003 -2.2533332162162165E-003 -2.5999998648648650E-003 -3.0333331756756759E-003 -3.4666664864864867E-003 -3.8999997972972975E-003 -4.3333331081081084E-003 -4.7666664189189188E-003 -5.1999997297297301E-003 -5.6333330405405405E-003 -6.0666663513513517E-003 -6.4133330000000002E-003 -6.4999999999999997E-003 -5.4166666111018502E-003 -4.3333332222037007E-003 -3.2499998333055508E-003 -2.1666664444074018E-003 -1.0833330555092523E-003 -1.0829999999998133E-006 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 20 / 360 -- time = 1200.0 / 21600.0 iteration: 21 / 360 -- time = 1260.0 / 21600.0 iteration: 22 / 360 -- time = 1320.0 / 21600.0 iteration: 23 / 360 -- time = 1380.0 / 21600.0 iteration: 24 / 360 -- time = 1440.0 / 21600.0 iteration: 25 / 360 -- time = 1500.0 / 21600.0 iteration: 26 / 360 -- time = 1560.0 / 21600.0 iteration: 27 / 360 -- time = 1620.0 / 21600.0 iteration: 28 / 360 -- time = 1680.0 / 21600.0 iteration: 29 / 360 -- time = 1740.0 / 21600.0 iteration: 30 / 360 -- time = 1800.0 / 21600.0 iteration: 31 / 360 -- time = 1860.0 / 21600.0 iteration: 32 / 360 -- time = 1920.0 / 21600.0 iteration: 33 / 360 -- time = 1980.0 / 21600.0 iteration: 34 / 360 -- time = 2040.0 / 21600.0 iteration: 35 / 360 -- time = 2100.0 / 21600.0 iteration: 36 / 360 -- time = 2160.0 / 21600.0 iteration: 37 / 360 -- time = 2220.0 / 21600.0 iteration: 38 / 360 -- time = 2280.0 / 21600.0 iteration: 39 / 360 -- time = 2340.0 / 21600.0 iteration: 40 / 360 -- time = 2400.0 / 21600.0 iteration: 41 / 360 -- time = 2460.0 / 21600.0 iteration: 42 / 360 -- time = 2520.0 / 21600.0 iteration: 43 / 360 -- time = 2580.0 / 21600.0 iteration: 44 / 360 -- time = 2640.0 / 21600.0 iteration: 45 / 360 -- time = 2700.0 / 21600.0 iteration: 46 / 360 -- time = 2760.0 / 21600.0 iteration: 47 / 360 -- time = 2820.0 / 21600.0 iteration: 48 / 360 -- time = 2880.0 / 21600.0 iteration: 49 / 360 -- time = 2940.0 / 21600.0 iteration: 50 / 360 -- time = 3000.0 / 21600.0 iteration: 51 / 360 -- time = 3060.0 / 21600.0 iteration: 52 / 360 -- time = 3120.0 / 21600.0 iteration: 53 / 360 -- time = 3180.0 / 21600.0 iteration: 54 / 360 -- time = 3240.0 / 21600.0 iteration: 55 / 360 -- time = 3300.0 / 21600.0 iteration: 56 / 360 -- time = 3360.0 / 21600.0 iteration: 57 / 360 -- time = 3420.0 / 21600.0 iteration: 58 / 360 -- time = 3480.0 / 21600.0 iteration: 59 / 360 -- time = 3540.0 / 21600.0 iteration: 60 / 360 -- time = 3600.0 / 21600.0 iteration: 61 / 360 -- time = 3660.0 / 21600.0 iteration: 62 / 360 -- time = 3720.0 / 21600.0 iteration: 63 / 360 -- time = 3780.0 / 21600.0 iteration: 64 / 360 -- time = 3840.0 / 21600.0 iteration: 65 / 360 -- time = 3900.0 / 21600.0 iteration: 66 / 360 -- time = 3960.0 / 21600.0 iteration: 67 / 360 -- time = 4020.0 / 21600.0 iteration: 68 / 360 -- time = 4080.0 / 21600.0 iteration: 69 / 360 -- time = 4140.0 / 21600.0 iteration: 70 / 360 -- time = 4200.0 / 21600.0 iteration: 71 / 360 -- time = 4260.0 / 21600.0 iteration: 72 / 360 -- time = 4320.0 / 21600.0 iteration: 73 / 360 -- time = 4380.0 / 21600.0 iteration: 74 / 360 -- time = 4440.0 / 21600.0 iteration: 75 / 360 -- time = 4500.0 / 21600.0 iteration: 76 / 360 -- time = 4560.0 / 21600.0 iteration: 77 / 360 -- time = 4620.0 / 21600.0 iteration: 78 / 360 -- time = 4680.0 / 21600.0 iteration: 79 / 360 -- time = 4740.0 / 21600.0 iteration: 80 / 360 -- time = 4800.0 / 21600.0 iteration: 81 / 360 -- time = 4860.0 / 21600.0 iteration: 82 / 360 -- time = 4920.0 / 21600.0 iteration: 83 / 360 -- time = 4980.0 / 21600.0 iteration: 84 / 360 -- time = 5040.0 / 21600.0 iteration: 85 / 360 -- time = 5100.0 / 21600.0 iteration: 86 / 360 -- time = 5160.0 / 21600.0 iteration: 87 / 360 -- time = 5220.0 / 21600.0 iteration: 88 / 360 -- time = 5280.0 / 21600.0 iteration: 89 / 360 -- time = 5340.0 / 21600.0 iteration: 90 / 360 -- time = 5400.0 / 21600.0 iteration: 91 / 360 -- time = 5460.0 / 21600.0 iteration: 92 / 360 -- time = 5520.0 / 21600.0 iteration: 93 / 360 -- time = 5580.0 / 21600.0 iteration: 94 / 360 -- time = 5640.0 / 21600.0 iteration: 95 / 360 -- time = 5700.0 / 21600.0 iteration: 96 / 360 -- time = 5760.0 / 21600.0 iteration: 97 / 360 -- time = 5820.0 / 21600.0 iteration: 98 / 360 -- time = 5880.0 / 21600.0 iteration: 99 / 360 -- time = 5940.0 / 21600.0 iteration: 100 / 360 -- time = 6000.0 / 21600.0 iteration: 101 / 360 -- time = 6060.0 / 21600.0 iteration: 102 / 360 -- time = 6120.0 / 21600.0 iteration: 103 / 360 -- time = 6180.0 / 21600.0 iteration: 104 / 360 -- time = 6240.0 / 21600.0 iteration: 105 / 360 -- time = 6300.0 / 21600.0 iteration: 106 / 360 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-- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.1044 CLUBB-TIMER time_clubb_advance = 1.7251 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.4359 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 20 / 360 -- time = 1200.0 / 21600.0 iteration: 21 / 360 -- 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/ 21600.0 iteration: 43 / 360 -- time = 2580.0 / 21600.0 iteration: 44 / 360 -- time = 2640.0 / 21600.0 iteration: 45 / 360 -- time = 2700.0 / 21600.0 iteration: 46 / 360 -- time = 2760.0 / 21600.0 iteration: 47 / 360 -- time = 2820.0 / 21600.0 iteration: 48 / 360 -- time = 2880.0 / 21600.0 iteration: 49 / 360 -- time = 2940.0 / 21600.0 iteration: 50 / 360 -- time = 3000.0 / 21600.0 iteration: 51 / 360 -- time = 3060.0 / 21600.0 iteration: 52 / 360 -- time = 3120.0 / 21600.0 iteration: 53 / 360 -- time = 3180.0 / 21600.0 iteration: 54 / 360 -- time = 3240.0 / 21600.0 iteration: 55 / 360 -- time = 3300.0 / 21600.0 iteration: 56 / 360 -- time = 3360.0 / 21600.0 iteration: 57 / 360 -- time = 3420.0 / 21600.0 iteration: 58 / 360 -- time = 3480.0 / 21600.0 iteration: 59 / 360 -- time = 3540.0 / 21600.0 iteration: 60 / 360 -- time = 3600.0 / 21600.0 iteration: 61 / 360 -- time = 3660.0 / 21600.0 iteration: 62 / 360 -- time = 3720.0 / 21600.0 iteration: 63 / 360 -- time = 3780.0 / 21600.0 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-- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.1048 CLUBB-TIMER time_clubb_advance = 1.7414 CLUBB-TIMER time_clubb_pdf = 0.0004 CLUBB-TIMER time_SILHS = 0.0001 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 2.8256 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 20 / 360 -- time = 1200.0 / 21600.0 iteration: 21 / 360 -- 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-- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.1025 CLUBB-TIMER time_clubb_advance = 1.7201 CLUBB-TIMER time_clubb_pdf = 0.0003 CLUBB-TIMER time_SILHS = 0.0001 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 2.7760 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 20 / 360 -- time = 1200.0 / 21600.0 iteration: 21 / 360 -- 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-- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.1024 CLUBB-TIMER time_clubb_advance = 1.7019 CLUBB-TIMER time_clubb_pdf = 0.0003 CLUBB-TIMER time_SILHS = 0.0001 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 2.7462 Program exited normally [PASS] bs1_tout60: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs1_tout60/bomex_stats.nc Running bs4_tout300 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 300 bomex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300/bomex_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300/bomex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running bomex =================== 2026/06/23 17:07:00 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = bomex nzmax = 75 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 3500.0000000000000 3500.0000000000000 3500.0000000000000 3500.0000000000000 zt_grid_fname = zm_grid_fname = day = 22 month = 6 year = 1969 lat_vals = 15.000000000000000 lon_vals = -56.500000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 21600.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 0 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7599999999999999E-005 3.7599999999999999E-005 3.7599999999999999E-005 3.7599999999999999E-005 fcor_y = 1.4087062250470739E-004 1.4087062250470739E-004 1.4087062250470739E-004 1.4087062250470739E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/bomex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300/ fname_prefix = bomex stats_output_filename = bomex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 300.00000000000000 stats_tstart = 0.0000000000000000 stats_tend = 21600.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/bomex_corr_array_cloud.in and/or ../input/case_setups/bomex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified_bomex sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: bomex_sounding.in File exists? T Path to sclr_sounding: bomex_sclr_sounding.in File exists? T Path to edsclr_sounding: bomex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 100.00000000000000 200.00000000000000 300.00000000000000 400.00000000000000 500.00000000000000 520.00000000000000 600.00000000000000 700.00000000000000 800.00000000000000 900.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1480.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2099.9000000000001 2100.0000000000000 2200.0000000000000 2300.0000000000000 2400.0000000000000 2500.0000000000000 2600.0000000000000 2700.0000000000000 2800.0000000000000 2900.0000000000000 3000.0000000000000 3100.0000000000000 3200.0000000000000 3300.0000000000000 3400.0000000000000 3500.0000000000000 u = -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.5700000000000003 -8.3900000000000006 -8.2100000000000009 -8.0299999999999994 -7.8499999999999996 -7.6699999999999999 -7.4900000000000002 -7.3460000000000001 -7.3100000000000005 -7.1299999999999999 -6.9500000000000002 -6.7700000000000005 -6.5899999999999999 -6.4100000000000001 -6.2301799999999998 -6.2300000000000004 -6.0499999999999998 -5.8700000000000001 -5.6900000000000004 -5.5099999999999998 -5.3300000000000001 -5.1500000000000004 -4.9699999999999998 -4.7900000000000000 -4.6100000000000003 -4.4299999999999997 -4.2500000000000000 -4.0700000000000003 -3.8900000000000001 -3.7100000000000000 v = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 ug = -10.000000000000000 -9.8200000000000003 -9.6400000000000006 -9.4600000000000009 -9.2799999999999994 -9.0999999999999996 -9.0640000000000001 -8.9199999999999999 -8.7400000000000002 -8.5600000000000005 -8.3800000000000008 -8.1999999999999993 -8.0199999999999996 -7.8399999999999999 -7.6600000000000001 -7.4800000000000004 -7.3360000000000003 -7.3000000000000007 -7.1200000000000001 -6.9400000000000004 -6.7600000000000007 -6.5800000000000001 -6.4000000000000004 -6.2201800000000000 -6.2200000000000006 -6.0400000000000000 -5.8600000000000003 -5.6800000000000006 -5.5000000000000000 -5.3200000000000003 -5.1400000000000006 -4.9600000000000000 -4.7800000000000002 -4.6000000000000005 -4.4199999999999999 -4.2400000000000002 -4.0600000000000005 -3.8800000000000003 -3.7000000000000002 vg = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 299.00833333333333 299.39375000000001 299.77916666666670 300.16458333333333 300.55000000000001 300.93541666666664 301.32083333333333 301.70625000000001 302.09166666666664 302.39999999999998 302.63076923076920 303.78461538461534 304.93846153846152 306.09230769230766 307.24615384615385 308.39999999999998 308.75131499999998 308.75166666666667 309.10333333333330 309.45499999999998 309.80666666666667 310.15833333333330 310.50999999999999 310.86166666666668 311.21333333333331 311.56500000000000 311.91666666666669 312.26833333333332 312.62000000000000 312.97166666666669 313.32333333333332 313.67500000000001 rt = 1.7290000000000000E-002 1.7151538461538461E-002 1.7013076923076922E-002 1.6874615384615384E-002 1.6736153846153849E-002 1.6597692307692310E-002 1.6570000000000001E-002 1.6090000000000000E-002 1.5490000000000000E-002 1.4891282051282052E-002 1.4292564102564104E-002 1.3693846153846154E-002 1.3095128205128205E-002 1.2496410256410257E-002 1.1897692307692307E-002 1.1298974358974359E-002 1.0820000000000000E-002 1.0566153846153847E-002 9.2969230769230759E-003 8.0276923076923069E-003 6.7584615384615378E-003 5.4892307692307688E-003 4.2199999999999998E-003 4.0994539999999998E-003 4.0993333333333333E-003 3.9786666666666668E-003 3.8579999999999999E-003 3.7373333333333330E-003 3.6166666666666665E-003 3.4960000000000000E-003 3.3753333333333331E-003 3.2546666666666666E-003 3.1339999999999996E-003 3.0133333333333331E-003 2.8926666666666666E-003 2.7719999999999997E-003 2.6513333333333328E-003 2.5306666666666663E-003 2.4099999999999998E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 -4.3333331081081084E-004 -8.6666662162162168E-004 -1.2999999324324325E-003 -1.7333332432432434E-003 -2.1666665540540542E-003 -2.2533332162162165E-003 -2.5999998648648650E-003 -3.0333331756756759E-003 -3.4666664864864867E-003 -3.8999997972972975E-003 -4.3333331081081084E-003 -4.7666664189189188E-003 -5.1999997297297301E-003 -5.6333330405405405E-003 -6.0666663513513517E-003 -6.4133330000000002E-003 -6.4999999999999997E-003 -5.4166666111018502E-003 -4.3333332222037007E-003 -3.2499998333055508E-003 -2.1666664444074018E-003 -1.0833330555092523E-003 -1.0829999999998133E-006 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 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/ 21600.0 iteration: 63 / 360 -- time = 3780.0 / 21600.0 iteration: 64 / 360 -- time = 3840.0 / 21600.0 iteration: 65 / 360 -- time = 3900.0 / 21600.0 iteration: 66 / 360 -- time = 3960.0 / 21600.0 iteration: 67 / 360 -- time = 4020.0 / 21600.0 iteration: 68 / 360 -- time = 4080.0 / 21600.0 iteration: 69 / 360 -- time = 4140.0 / 21600.0 iteration: 70 / 360 -- time = 4200.0 / 21600.0 iteration: 71 / 360 -- time = 4260.0 / 21600.0 iteration: 72 / 360 -- time = 4320.0 / 21600.0 iteration: 73 / 360 -- time = 4380.0 / 21600.0 iteration: 74 / 360 -- time = 4440.0 / 21600.0 iteration: 75 / 360 -- time = 4500.0 / 21600.0 iteration: 76 / 360 -- time = 4560.0 / 21600.0 iteration: 77 / 360 -- time = 4620.0 / 21600.0 iteration: 78 / 360 -- time = 4680.0 / 21600.0 iteration: 79 / 360 -- time = 4740.0 / 21600.0 iteration: 80 / 360 -- time = 4800.0 / 21600.0 iteration: 81 / 360 -- time = 4860.0 / 21600.0 iteration: 82 / 360 -- time = 4920.0 / 21600.0 iteration: 83 / 360 -- time = 4980.0 / 21600.0 iteration: 84 / 360 -- time = 5040.0 / 21600.0 iteration: 85 / 360 -- time = 5100.0 / 21600.0 iteration: 86 / 360 -- time = 5160.0 / 21600.0 iteration: 87 / 360 -- time = 5220.0 / 21600.0 iteration: 88 / 360 -- time = 5280.0 / 21600.0 iteration: 89 / 360 -- time = 5340.0 / 21600.0 iteration: 90 / 360 -- time = 5400.0 / 21600.0 iteration: 91 / 360 -- time = 5460.0 / 21600.0 iteration: 92 / 360 -- time = 5520.0 / 21600.0 iteration: 93 / 360 -- time = 5580.0 / 21600.0 iteration: 94 / 360 -- time = 5640.0 / 21600.0 iteration: 95 / 360 -- time = 5700.0 / 21600.0 iteration: 96 / 360 -- time = 5760.0 / 21600.0 iteration: 97 / 360 -- time = 5820.0 / 21600.0 iteration: 98 / 360 -- time = 5880.0 / 21600.0 iteration: 99 / 360 -- time = 5940.0 / 21600.0 iteration: 100 / 360 -- time = 6000.0 / 21600.0 iteration: 101 / 360 -- time = 6060.0 / 21600.0 iteration: 102 / 360 -- time = 6120.0 / 21600.0 iteration: 103 / 360 -- time = 6180.0 / 21600.0 iteration: 104 / 360 -- time = 6240.0 / 21600.0 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21600.0 iteration: 126 / 360 -- time = 7560.0 / 21600.0 iteration: 127 / 360 -- time = 7620.0 / 21600.0 iteration: 128 / 360 -- time = 7680.0 / 21600.0 iteration: 129 / 360 -- time = 7740.0 / 21600.0 iteration: 130 / 360 -- time = 7800.0 / 21600.0 iteration: 131 / 360 -- time = 7860.0 / 21600.0 iteration: 132 / 360 -- time = 7920.0 / 21600.0 iteration: 133 / 360 -- time = 7980.0 / 21600.0 iteration: 134 / 360 -- time = 8040.0 / 21600.0 iteration: 135 / 360 -- time = 8100.0 / 21600.0 iteration: 136 / 360 -- time = 8160.0 / 21600.0 iteration: 137 / 360 -- time = 8220.0 / 21600.0 iteration: 138 / 360 -- time = 8280.0 / 21600.0 iteration: 139 / 360 -- time = 8340.0 / 21600.0 iteration: 140 / 360 -- time = 8400.0 / 21600.0 iteration: 141 / 360 -- time = 8460.0 / 21600.0 iteration: 142 / 360 -- time = 8520.0 / 21600.0 iteration: 143 / 360 -- time = 8580.0 / 21600.0 iteration: 144 / 360 -- time = 8640.0 / 21600.0 iteration: 145 / 360 -- time = 8700.0 / 21600.0 iteration: 146 / 360 -- time = 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iteration: 351 / 360 -- time = 21060.0 / 21600.0 iteration: 352 / 360 -- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.0774 CLUBB-TIMER time_clubb_advance = 3.2215 CLUBB-TIMER time_clubb_pdf = 0.0004 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.5706 Program exited normally [PASS] bs4_tout300: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300/bomex_stats.nc Running bs4_tout600 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout600 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 600 bomex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout600/bomex_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout600/bomex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running bomex =================== 2026/06/23 17:07:04 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = bomex nzmax = 75 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 3500.0000000000000 3500.0000000000000 3500.0000000000000 3500.0000000000000 zt_grid_fname = zm_grid_fname = day = 22 month = 6 year = 1969 lat_vals = 15.000000000000000 lon_vals = -56.500000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 21600.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 0 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7599999999999999E-005 3.7599999999999999E-005 3.7599999999999999E-005 3.7599999999999999E-005 fcor_y = 1.4087062250470739E-004 1.4087062250470739E-004 1.4087062250470739E-004 1.4087062250470739E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/bomex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout600/ fname_prefix = bomex stats_output_filename = bomex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 600.00000000000000 stats_tstart = 0.0000000000000000 stats_tend = 21600.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/bomex_corr_array_cloud.in and/or ../input/case_setups/bomex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified_bomex sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: bomex_sounding.in File exists? T Path to sclr_sounding: bomex_sclr_sounding.in File exists? T Path to edsclr_sounding: bomex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 100.00000000000000 200.00000000000000 300.00000000000000 400.00000000000000 500.00000000000000 520.00000000000000 600.00000000000000 700.00000000000000 800.00000000000000 900.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1480.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2099.9000000000001 2100.0000000000000 2200.0000000000000 2300.0000000000000 2400.0000000000000 2500.0000000000000 2600.0000000000000 2700.0000000000000 2800.0000000000000 2900.0000000000000 3000.0000000000000 3100.0000000000000 3200.0000000000000 3300.0000000000000 3400.0000000000000 3500.0000000000000 u = -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.5700000000000003 -8.3900000000000006 -8.2100000000000009 -8.0299999999999994 -7.8499999999999996 -7.6699999999999999 -7.4900000000000002 -7.3460000000000001 -7.3100000000000005 -7.1299999999999999 -6.9500000000000002 -6.7700000000000005 -6.5899999999999999 -6.4100000000000001 -6.2301799999999998 -6.2300000000000004 -6.0499999999999998 -5.8700000000000001 -5.6900000000000004 -5.5099999999999998 -5.3300000000000001 -5.1500000000000004 -4.9699999999999998 -4.7900000000000000 -4.6100000000000003 -4.4299999999999997 -4.2500000000000000 -4.0700000000000003 -3.8900000000000001 -3.7100000000000000 v = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 ug = -10.000000000000000 -9.8200000000000003 -9.6400000000000006 -9.4600000000000009 -9.2799999999999994 -9.0999999999999996 -9.0640000000000001 -8.9199999999999999 -8.7400000000000002 -8.5600000000000005 -8.3800000000000008 -8.1999999999999993 -8.0199999999999996 -7.8399999999999999 -7.6600000000000001 -7.4800000000000004 -7.3360000000000003 -7.3000000000000007 -7.1200000000000001 -6.9400000000000004 -6.7600000000000007 -6.5800000000000001 -6.4000000000000004 -6.2201800000000000 -6.2200000000000006 -6.0400000000000000 -5.8600000000000003 -5.6800000000000006 -5.5000000000000000 -5.3200000000000003 -5.1400000000000006 -4.9600000000000000 -4.7800000000000002 -4.6000000000000005 -4.4199999999999999 -4.2400000000000002 -4.0600000000000005 -3.8800000000000003 -3.7000000000000002 vg = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 299.00833333333333 299.39375000000001 299.77916666666670 300.16458333333333 300.55000000000001 300.93541666666664 301.32083333333333 301.70625000000001 302.09166666666664 302.39999999999998 302.63076923076920 303.78461538461534 304.93846153846152 306.09230769230766 307.24615384615385 308.39999999999998 308.75131499999998 308.75166666666667 309.10333333333330 309.45499999999998 309.80666666666667 310.15833333333330 310.50999999999999 310.86166666666668 311.21333333333331 311.56500000000000 311.91666666666669 312.26833333333332 312.62000000000000 312.97166666666669 313.32333333333332 313.67500000000001 rt = 1.7290000000000000E-002 1.7151538461538461E-002 1.7013076923076922E-002 1.6874615384615384E-002 1.6736153846153849E-002 1.6597692307692310E-002 1.6570000000000001E-002 1.6090000000000000E-002 1.5490000000000000E-002 1.4891282051282052E-002 1.4292564102564104E-002 1.3693846153846154E-002 1.3095128205128205E-002 1.2496410256410257E-002 1.1897692307692307E-002 1.1298974358974359E-002 1.0820000000000000E-002 1.0566153846153847E-002 9.2969230769230759E-003 8.0276923076923069E-003 6.7584615384615378E-003 5.4892307692307688E-003 4.2199999999999998E-003 4.0994539999999998E-003 4.0993333333333333E-003 3.9786666666666668E-003 3.8579999999999999E-003 3.7373333333333330E-003 3.6166666666666665E-003 3.4960000000000000E-003 3.3753333333333331E-003 3.2546666666666666E-003 3.1339999999999996E-003 3.0133333333333331E-003 2.8926666666666666E-003 2.7719999999999997E-003 2.6513333333333328E-003 2.5306666666666663E-003 2.4099999999999998E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 -4.3333331081081084E-004 -8.6666662162162168E-004 -1.2999999324324325E-003 -1.7333332432432434E-003 -2.1666665540540542E-003 -2.2533332162162165E-003 -2.5999998648648650E-003 -3.0333331756756759E-003 -3.4666664864864867E-003 -3.8999997972972975E-003 -4.3333331081081084E-003 -4.7666664189189188E-003 -5.1999997297297301E-003 -5.6333330405405405E-003 -6.0666663513513517E-003 -6.4133330000000002E-003 -6.4999999999999997E-003 -5.4166666111018502E-003 -4.3333332222037007E-003 -3.2499998333055508E-003 -2.1666664444074018E-003 -1.0833330555092523E-003 -1.0829999999998133E-006 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 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/ 21600.0 iteration: 63 / 360 -- time = 3780.0 / 21600.0 iteration: 64 / 360 -- time = 3840.0 / 21600.0 iteration: 65 / 360 -- time = 3900.0 / 21600.0 iteration: 66 / 360 -- time = 3960.0 / 21600.0 iteration: 67 / 360 -- time = 4020.0 / 21600.0 iteration: 68 / 360 -- time = 4080.0 / 21600.0 iteration: 69 / 360 -- time = 4140.0 / 21600.0 iteration: 70 / 360 -- time = 4200.0 / 21600.0 iteration: 71 / 360 -- time = 4260.0 / 21600.0 iteration: 72 / 360 -- time = 4320.0 / 21600.0 iteration: 73 / 360 -- time = 4380.0 / 21600.0 iteration: 74 / 360 -- time = 4440.0 / 21600.0 iteration: 75 / 360 -- time = 4500.0 / 21600.0 iteration: 76 / 360 -- time = 4560.0 / 21600.0 iteration: 77 / 360 -- time = 4620.0 / 21600.0 iteration: 78 / 360 -- time = 4680.0 / 21600.0 iteration: 79 / 360 -- time = 4740.0 / 21600.0 iteration: 80 / 360 -- time = 4800.0 / 21600.0 iteration: 81 / 360 -- time = 4860.0 / 21600.0 iteration: 82 / 360 -- time = 4920.0 / 21600.0 iteration: 83 / 360 -- time = 4980.0 / 21600.0 iteration: 84 / 360 -- time = 5040.0 / 21600.0 iteration: 85 / 360 -- time = 5100.0 / 21600.0 iteration: 86 / 360 -- time = 5160.0 / 21600.0 iteration: 87 / 360 -- time = 5220.0 / 21600.0 iteration: 88 / 360 -- time = 5280.0 / 21600.0 iteration: 89 / 360 -- time = 5340.0 / 21600.0 iteration: 90 / 360 -- time = 5400.0 / 21600.0 iteration: 91 / 360 -- time = 5460.0 / 21600.0 iteration: 92 / 360 -- time = 5520.0 / 21600.0 iteration: 93 / 360 -- time = 5580.0 / 21600.0 iteration: 94 / 360 -- time = 5640.0 / 21600.0 iteration: 95 / 360 -- time = 5700.0 / 21600.0 iteration: 96 / 360 -- time = 5760.0 / 21600.0 iteration: 97 / 360 -- time = 5820.0 / 21600.0 iteration: 98 / 360 -- time = 5880.0 / 21600.0 iteration: 99 / 360 -- time = 5940.0 / 21600.0 iteration: 100 / 360 -- time = 6000.0 / 21600.0 iteration: 101 / 360 -- time = 6060.0 / 21600.0 iteration: 102 / 360 -- time = 6120.0 / 21600.0 iteration: 103 / 360 -- time = 6180.0 / 21600.0 iteration: 104 / 360 -- time = 6240.0 / 21600.0 iteration: 105 / 360 -- time = 6300.0 / 21600.0 iteration: 106 / 360 -- time = 6360.0 / 21600.0 iteration: 107 / 360 -- time = 6420.0 / 21600.0 iteration: 108 / 360 -- time = 6480.0 / 21600.0 iteration: 109 / 360 -- time = 6540.0 / 21600.0 iteration: 110 / 360 -- time = 6600.0 / 21600.0 iteration: 111 / 360 -- time = 6660.0 / 21600.0 iteration: 112 / 360 -- time = 6720.0 / 21600.0 iteration: 113 / 360 -- time = 6780.0 / 21600.0 iteration: 114 / 360 -- time = 6840.0 / 21600.0 iteration: 115 / 360 -- time = 6900.0 / 21600.0 iteration: 116 / 360 -- time = 6960.0 / 21600.0 iteration: 117 / 360 -- time = 7020.0 / 21600.0 iteration: 118 / 360 -- time = 7080.0 / 21600.0 iteration: 119 / 360 -- time = 7140.0 / 21600.0 iteration: 120 / 360 -- time = 7200.0 / 21600.0 iteration: 121 / 360 -- time = 7260.0 / 21600.0 iteration: 122 / 360 -- time = 7320.0 / 21600.0 iteration: 123 / 360 -- time = 7380.0 / 21600.0 iteration: 124 / 360 -- time = 7440.0 / 21600.0 iteration: 125 / 360 -- time = 7500.0 / 21600.0 iteration: 126 / 360 -- time = 7560.0 / 21600.0 iteration: 127 / 360 -- time = 7620.0 / 21600.0 iteration: 128 / 360 -- time = 7680.0 / 21600.0 iteration: 129 / 360 -- time = 7740.0 / 21600.0 iteration: 130 / 360 -- time = 7800.0 / 21600.0 iteration: 131 / 360 -- time = 7860.0 / 21600.0 iteration: 132 / 360 -- time = 7920.0 / 21600.0 iteration: 133 / 360 -- time = 7980.0 / 21600.0 iteration: 134 / 360 -- time = 8040.0 / 21600.0 iteration: 135 / 360 -- time = 8100.0 / 21600.0 iteration: 136 / 360 -- time = 8160.0 / 21600.0 iteration: 137 / 360 -- time = 8220.0 / 21600.0 iteration: 138 / 360 -- time = 8280.0 / 21600.0 iteration: 139 / 360 -- time = 8340.0 / 21600.0 iteration: 140 / 360 -- time = 8400.0 / 21600.0 iteration: 141 / 360 -- time = 8460.0 / 21600.0 iteration: 142 / 360 -- time = 8520.0 / 21600.0 iteration: 143 / 360 -- time = 8580.0 / 21600.0 iteration: 144 / 360 -- time = 8640.0 / 21600.0 iteration: 145 / 360 -- time = 8700.0 / 21600.0 iteration: 146 / 360 -- time = 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iteration: 351 / 360 -- time = 21060.0 / 21600.0 iteration: 352 / 360 -- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.0593 CLUBB-TIMER time_clubb_advance = 3.2345 CLUBB-TIMER time_clubb_pdf = 0.0004 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.4425 Program exited normally [PASS] bs4_tout600: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout600/bomex_stats.nc Running bs4_tout60_window5400_16200 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60_window5400_16200 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 60 -stats_tstart 5400 -stats_tend 16200 bomex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60_window5400_16200/bomex_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60_window5400_16200/bomex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running bomex =================== 2026/06/23 17:07:09 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = bomex nzmax = 75 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 3500.0000000000000 3500.0000000000000 3500.0000000000000 3500.0000000000000 zt_grid_fname = zm_grid_fname = day = 22 month = 6 year = 1969 lat_vals = 15.000000000000000 lon_vals = -56.500000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 21600.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 0 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7599999999999999E-005 3.7599999999999999E-005 3.7599999999999999E-005 3.7599999999999999E-005 fcor_y = 1.4087062250470739E-004 1.4087062250470739E-004 1.4087062250470739E-004 1.4087062250470739E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/bomex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60_window5400_16200/ fname_prefix = bomex stats_output_filename = bomex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 5400.0000000000000 stats_tend = 16200.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/bomex_corr_array_cloud.in and/or ../input/case_setups/bomex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified_bomex sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: bomex_sounding.in File exists? T Path to sclr_sounding: bomex_sclr_sounding.in File exists? T Path to edsclr_sounding: bomex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 100.00000000000000 200.00000000000000 300.00000000000000 400.00000000000000 500.00000000000000 520.00000000000000 600.00000000000000 700.00000000000000 800.00000000000000 900.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1480.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2099.9000000000001 2100.0000000000000 2200.0000000000000 2300.0000000000000 2400.0000000000000 2500.0000000000000 2600.0000000000000 2700.0000000000000 2800.0000000000000 2900.0000000000000 3000.0000000000000 3100.0000000000000 3200.0000000000000 3300.0000000000000 3400.0000000000000 3500.0000000000000 u = -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.5700000000000003 -8.3900000000000006 -8.2100000000000009 -8.0299999999999994 -7.8499999999999996 -7.6699999999999999 -7.4900000000000002 -7.3460000000000001 -7.3100000000000005 -7.1299999999999999 -6.9500000000000002 -6.7700000000000005 -6.5899999999999999 -6.4100000000000001 -6.2301799999999998 -6.2300000000000004 -6.0499999999999998 -5.8700000000000001 -5.6900000000000004 -5.5099999999999998 -5.3300000000000001 -5.1500000000000004 -4.9699999999999998 -4.7900000000000000 -4.6100000000000003 -4.4299999999999997 -4.2500000000000000 -4.0700000000000003 -3.8900000000000001 -3.7100000000000000 v = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 ug = -10.000000000000000 -9.8200000000000003 -9.6400000000000006 -9.4600000000000009 -9.2799999999999994 -9.0999999999999996 -9.0640000000000001 -8.9199999999999999 -8.7400000000000002 -8.5600000000000005 -8.3800000000000008 -8.1999999999999993 -8.0199999999999996 -7.8399999999999999 -7.6600000000000001 -7.4800000000000004 -7.3360000000000003 -7.3000000000000007 -7.1200000000000001 -6.9400000000000004 -6.7600000000000007 -6.5800000000000001 -6.4000000000000004 -6.2201800000000000 -6.2200000000000006 -6.0400000000000000 -5.8600000000000003 -5.6800000000000006 -5.5000000000000000 -5.3200000000000003 -5.1400000000000006 -4.9600000000000000 -4.7800000000000002 -4.6000000000000005 -4.4199999999999999 -4.2400000000000002 -4.0600000000000005 -3.8800000000000003 -3.7000000000000002 vg = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 299.00833333333333 299.39375000000001 299.77916666666670 300.16458333333333 300.55000000000001 300.93541666666664 301.32083333333333 301.70625000000001 302.09166666666664 302.39999999999998 302.63076923076920 303.78461538461534 304.93846153846152 306.09230769230766 307.24615384615385 308.39999999999998 308.75131499999998 308.75166666666667 309.10333333333330 309.45499999999998 309.80666666666667 310.15833333333330 310.50999999999999 310.86166666666668 311.21333333333331 311.56500000000000 311.91666666666669 312.26833333333332 312.62000000000000 312.97166666666669 313.32333333333332 313.67500000000001 rt = 1.7290000000000000E-002 1.7151538461538461E-002 1.7013076923076922E-002 1.6874615384615384E-002 1.6736153846153849E-002 1.6597692307692310E-002 1.6570000000000001E-002 1.6090000000000000E-002 1.5490000000000000E-002 1.4891282051282052E-002 1.4292564102564104E-002 1.3693846153846154E-002 1.3095128205128205E-002 1.2496410256410257E-002 1.1897692307692307E-002 1.1298974358974359E-002 1.0820000000000000E-002 1.0566153846153847E-002 9.2969230769230759E-003 8.0276923076923069E-003 6.7584615384615378E-003 5.4892307692307688E-003 4.2199999999999998E-003 4.0994539999999998E-003 4.0993333333333333E-003 3.9786666666666668E-003 3.8579999999999999E-003 3.7373333333333330E-003 3.6166666666666665E-003 3.4960000000000000E-003 3.3753333333333331E-003 3.2546666666666666E-003 3.1339999999999996E-003 3.0133333333333331E-003 2.8926666666666666E-003 2.7719999999999997E-003 2.6513333333333328E-003 2.5306666666666663E-003 2.4099999999999998E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 -4.3333331081081084E-004 -8.6666662162162168E-004 -1.2999999324324325E-003 -1.7333332432432434E-003 -2.1666665540540542E-003 -2.2533332162162165E-003 -2.5999998648648650E-003 -3.0333331756756759E-003 -3.4666664864864867E-003 -3.8999997972972975E-003 -4.3333331081081084E-003 -4.7666664189189188E-003 -5.1999997297297301E-003 -5.6333330405405405E-003 -6.0666663513513517E-003 -6.4133330000000002E-003 -6.4999999999999997E-003 -5.4166666111018502E-003 -4.3333332222037007E-003 -3.2499998333055508E-003 -2.1666664444074018E-003 -1.0833330555092523E-003 -1.0829999999998133E-006 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 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/ 21600.0 iteration: 63 / 360 -- time = 3780.0 / 21600.0 iteration: 64 / 360 -- time = 3840.0 / 21600.0 iteration: 65 / 360 -- time = 3900.0 / 21600.0 iteration: 66 / 360 -- time = 3960.0 / 21600.0 iteration: 67 / 360 -- time = 4020.0 / 21600.0 iteration: 68 / 360 -- time = 4080.0 / 21600.0 iteration: 69 / 360 -- time = 4140.0 / 21600.0 iteration: 70 / 360 -- time = 4200.0 / 21600.0 iteration: 71 / 360 -- time = 4260.0 / 21600.0 iteration: 72 / 360 -- time = 4320.0 / 21600.0 iteration: 73 / 360 -- time = 4380.0 / 21600.0 iteration: 74 / 360 -- time = 4440.0 / 21600.0 iteration: 75 / 360 -- time = 4500.0 / 21600.0 iteration: 76 / 360 -- time = 4560.0 / 21600.0 iteration: 77 / 360 -- time = 4620.0 / 21600.0 iteration: 78 / 360 -- time = 4680.0 / 21600.0 iteration: 79 / 360 -- time = 4740.0 / 21600.0 iteration: 80 / 360 -- time = 4800.0 / 21600.0 iteration: 81 / 360 -- time = 4860.0 / 21600.0 iteration: 82 / 360 -- time = 4920.0 / 21600.0 iteration: 83 / 360 -- time = 4980.0 / 21600.0 iteration: 84 / 360 -- time = 5040.0 / 21600.0 iteration: 85 / 360 -- time = 5100.0 / 21600.0 iteration: 86 / 360 -- time = 5160.0 / 21600.0 iteration: 87 / 360 -- time = 5220.0 / 21600.0 iteration: 88 / 360 -- time = 5280.0 / 21600.0 iteration: 89 / 360 -- time = 5340.0 / 21600.0 iteration: 90 / 360 -- time = 5400.0 / 21600.0 iteration: 91 / 360 -- time = 5460.0 / 21600.0 iteration: 92 / 360 -- time = 5520.0 / 21600.0 iteration: 93 / 360 -- time = 5580.0 / 21600.0 iteration: 94 / 360 -- time = 5640.0 / 21600.0 iteration: 95 / 360 -- time = 5700.0 / 21600.0 iteration: 96 / 360 -- time = 5760.0 / 21600.0 iteration: 97 / 360 -- time = 5820.0 / 21600.0 iteration: 98 / 360 -- time = 5880.0 / 21600.0 iteration: 99 / 360 -- time = 5940.0 / 21600.0 iteration: 100 / 360 -- time = 6000.0 / 21600.0 iteration: 101 / 360 -- time = 6060.0 / 21600.0 iteration: 102 / 360 -- time = 6120.0 / 21600.0 iteration: 103 / 360 -- time = 6180.0 / 21600.0 iteration: 104 / 360 -- time = 6240.0 / 21600.0 iteration: 105 / 360 -- time = 6300.0 / 21600.0 iteration: 106 / 360 -- time = 6360.0 / 21600.0 iteration: 107 / 360 -- time = 6420.0 / 21600.0 iteration: 108 / 360 -- time = 6480.0 / 21600.0 iteration: 109 / 360 -- time = 6540.0 / 21600.0 iteration: 110 / 360 -- time = 6600.0 / 21600.0 iteration: 111 / 360 -- time = 6660.0 / 21600.0 iteration: 112 / 360 -- time = 6720.0 / 21600.0 iteration: 113 / 360 -- time = 6780.0 / 21600.0 iteration: 114 / 360 -- time = 6840.0 / 21600.0 iteration: 115 / 360 -- time = 6900.0 / 21600.0 iteration: 116 / 360 -- time = 6960.0 / 21600.0 iteration: 117 / 360 -- time = 7020.0 / 21600.0 iteration: 118 / 360 -- time = 7080.0 / 21600.0 iteration: 119 / 360 -- time = 7140.0 / 21600.0 iteration: 120 / 360 -- time = 7200.0 / 21600.0 iteration: 121 / 360 -- time = 7260.0 / 21600.0 iteration: 122 / 360 -- time = 7320.0 / 21600.0 iteration: 123 / 360 -- time = 7380.0 / 21600.0 iteration: 124 / 360 -- time = 7440.0 / 21600.0 iteration: 125 / 360 -- time = 7500.0 / 21600.0 iteration: 126 / 360 -- time = 7560.0 / 21600.0 iteration: 127 / 360 -- time = 7620.0 / 21600.0 iteration: 128 / 360 -- time = 7680.0 / 21600.0 iteration: 129 / 360 -- time = 7740.0 / 21600.0 iteration: 130 / 360 -- time = 7800.0 / 21600.0 iteration: 131 / 360 -- time = 7860.0 / 21600.0 iteration: 132 / 360 -- time = 7920.0 / 21600.0 iteration: 133 / 360 -- time = 7980.0 / 21600.0 iteration: 134 / 360 -- time = 8040.0 / 21600.0 iteration: 135 / 360 -- time = 8100.0 / 21600.0 iteration: 136 / 360 -- time = 8160.0 / 21600.0 iteration: 137 / 360 -- time = 8220.0 / 21600.0 iteration: 138 / 360 -- time = 8280.0 / 21600.0 iteration: 139 / 360 -- time = 8340.0 / 21600.0 iteration: 140 / 360 -- time = 8400.0 / 21600.0 iteration: 141 / 360 -- time = 8460.0 / 21600.0 iteration: 142 / 360 -- time = 8520.0 / 21600.0 iteration: 143 / 360 -- time = 8580.0 / 21600.0 iteration: 144 / 360 -- time = 8640.0 / 21600.0 iteration: 145 / 360 -- time = 8700.0 / 21600.0 iteration: 146 / 360 -- time = 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iteration: 351 / 360 -- time = 21060.0 / 21600.0 iteration: 352 / 360 -- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.1337 CLUBB-TIMER time_clubb_advance = 2.5929 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.3851 Program exited normally [PASS] bs4_tout60_window5400_16200: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout60_window5400_16200/bomex_stats.nc Running bs4_tout300_window5400_16200 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300_window5400_16200 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 300 -stats_tstart 5400 -stats_tend 16200 bomex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300_window5400_16200/bomex_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300_window5400_16200/bomex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running bomex =================== 2026/06/23 17:07:13 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = bomex nzmax = 75 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 3500.0000000000000 3500.0000000000000 3500.0000000000000 3500.0000000000000 zt_grid_fname = zm_grid_fname = day = 22 month = 6 year = 1969 lat_vals = 15.000000000000000 lon_vals = -56.500000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 21600.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 0 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7599999999999999E-005 3.7599999999999999E-005 3.7599999999999999E-005 3.7599999999999999E-005 fcor_y = 1.4087062250470739E-004 1.4087062250470739E-004 1.4087062250470739E-004 1.4087062250470739E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/bomex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300_window5400_16200/ fname_prefix = bomex stats_output_filename = bomex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 300.00000000000000 stats_tstart = 5400.0000000000000 stats_tend = 16200.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/bomex_corr_array_cloud.in and/or ../input/case_setups/bomex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified_bomex sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: bomex_sounding.in File exists? T Path to sclr_sounding: bomex_sclr_sounding.in File exists? T Path to edsclr_sounding: bomex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 100.00000000000000 200.00000000000000 300.00000000000000 400.00000000000000 500.00000000000000 520.00000000000000 600.00000000000000 700.00000000000000 800.00000000000000 900.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1480.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2099.9000000000001 2100.0000000000000 2200.0000000000000 2300.0000000000000 2400.0000000000000 2500.0000000000000 2600.0000000000000 2700.0000000000000 2800.0000000000000 2900.0000000000000 3000.0000000000000 3100.0000000000000 3200.0000000000000 3300.0000000000000 3400.0000000000000 3500.0000000000000 u = -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.7500000000000000 -8.5700000000000003 -8.3900000000000006 -8.2100000000000009 -8.0299999999999994 -7.8499999999999996 -7.6699999999999999 -7.4900000000000002 -7.3460000000000001 -7.3100000000000005 -7.1299999999999999 -6.9500000000000002 -6.7700000000000005 -6.5899999999999999 -6.4100000000000001 -6.2301799999999998 -6.2300000000000004 -6.0499999999999998 -5.8700000000000001 -5.6900000000000004 -5.5099999999999998 -5.3300000000000001 -5.1500000000000004 -4.9699999999999998 -4.7900000000000000 -4.6100000000000003 -4.4299999999999997 -4.2500000000000000 -4.0700000000000003 -3.8900000000000001 -3.7100000000000000 v = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 ug = -10.000000000000000 -9.8200000000000003 -9.6400000000000006 -9.4600000000000009 -9.2799999999999994 -9.0999999999999996 -9.0640000000000001 -8.9199999999999999 -8.7400000000000002 -8.5600000000000005 -8.3800000000000008 -8.1999999999999993 -8.0199999999999996 -7.8399999999999999 -7.6600000000000001 -7.4800000000000004 -7.3360000000000003 -7.3000000000000007 -7.1200000000000001 -6.9400000000000004 -6.7600000000000007 -6.5800000000000001 -6.4000000000000004 -6.2201800000000000 -6.2200000000000006 -6.0400000000000000 -5.8600000000000003 -5.6800000000000006 -5.5000000000000000 -5.3200000000000003 -5.1400000000000006 -4.9600000000000000 -4.7800000000000002 -4.6000000000000005 -4.4199999999999999 -4.2400000000000002 -4.0600000000000005 -3.8800000000000003 -3.7000000000000002 vg = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 298.69999999999999 299.00833333333333 299.39375000000001 299.77916666666670 300.16458333333333 300.55000000000001 300.93541666666664 301.32083333333333 301.70625000000001 302.09166666666664 302.39999999999998 302.63076923076920 303.78461538461534 304.93846153846152 306.09230769230766 307.24615384615385 308.39999999999998 308.75131499999998 308.75166666666667 309.10333333333330 309.45499999999998 309.80666666666667 310.15833333333330 310.50999999999999 310.86166666666668 311.21333333333331 311.56500000000000 311.91666666666669 312.26833333333332 312.62000000000000 312.97166666666669 313.32333333333332 313.67500000000001 rt = 1.7290000000000000E-002 1.7151538461538461E-002 1.7013076923076922E-002 1.6874615384615384E-002 1.6736153846153849E-002 1.6597692307692310E-002 1.6570000000000001E-002 1.6090000000000000E-002 1.5490000000000000E-002 1.4891282051282052E-002 1.4292564102564104E-002 1.3693846153846154E-002 1.3095128205128205E-002 1.2496410256410257E-002 1.1897692307692307E-002 1.1298974358974359E-002 1.0820000000000000E-002 1.0566153846153847E-002 9.2969230769230759E-003 8.0276923076923069E-003 6.7584615384615378E-003 5.4892307692307688E-003 4.2199999999999998E-003 4.0994539999999998E-003 4.0993333333333333E-003 3.9786666666666668E-003 3.8579999999999999E-003 3.7373333333333330E-003 3.6166666666666665E-003 3.4960000000000000E-003 3.3753333333333331E-003 3.2546666666666666E-003 3.1339999999999996E-003 3.0133333333333331E-003 2.8926666666666666E-003 2.7719999999999997E-003 2.6513333333333328E-003 2.5306666666666663E-003 2.4099999999999998E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 -4.3333331081081084E-004 -8.6666662162162168E-004 -1.2999999324324325E-003 -1.7333332432432434E-003 -2.1666665540540542E-003 -2.2533332162162165E-003 -2.5999998648648650E-003 -3.0333331756756759E-003 -3.4666664864864867E-003 -3.8999997972972975E-003 -4.3333331081081084E-003 -4.7666664189189188E-003 -5.1999997297297301E-003 -5.6333330405405405E-003 -6.0666663513513517E-003 -6.4133330000000002E-003 -6.4999999999999997E-003 -5.4166666111018502E-003 -4.3333332222037007E-003 -3.2499998333055508E-003 -2.1666664444074018E-003 -1.0833330555092523E-003 -1.0829999999998133E-006 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 / 360 -- time = 840.0 / 21600.0 iteration: 15 / 360 -- time = 900.0 / 21600.0 iteration: 16 / 360 -- time = 960.0 / 21600.0 iteration: 17 / 360 -- time = 1020.0 / 21600.0 iteration: 18 / 360 -- time = 1080.0 / 21600.0 iteration: 19 / 360 -- time = 1140.0 / 21600.0 iteration: 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/ 21600.0 iteration: 63 / 360 -- time = 3780.0 / 21600.0 iteration: 64 / 360 -- time = 3840.0 / 21600.0 iteration: 65 / 360 -- time = 3900.0 / 21600.0 iteration: 66 / 360 -- time = 3960.0 / 21600.0 iteration: 67 / 360 -- time = 4020.0 / 21600.0 iteration: 68 / 360 -- time = 4080.0 / 21600.0 iteration: 69 / 360 -- time = 4140.0 / 21600.0 iteration: 70 / 360 -- time = 4200.0 / 21600.0 iteration: 71 / 360 -- time = 4260.0 / 21600.0 iteration: 72 / 360 -- time = 4320.0 / 21600.0 iteration: 73 / 360 -- time = 4380.0 / 21600.0 iteration: 74 / 360 -- time = 4440.0 / 21600.0 iteration: 75 / 360 -- time = 4500.0 / 21600.0 iteration: 76 / 360 -- time = 4560.0 / 21600.0 iteration: 77 / 360 -- time = 4620.0 / 21600.0 iteration: 78 / 360 -- time = 4680.0 / 21600.0 iteration: 79 / 360 -- time = 4740.0 / 21600.0 iteration: 80 / 360 -- time = 4800.0 / 21600.0 iteration: 81 / 360 -- time = 4860.0 / 21600.0 iteration: 82 / 360 -- time = 4920.0 / 21600.0 iteration: 83 / 360 -- time = 4980.0 / 21600.0 iteration: 84 / 360 -- time = 5040.0 / 21600.0 iteration: 85 / 360 -- time = 5100.0 / 21600.0 iteration: 86 / 360 -- time = 5160.0 / 21600.0 iteration: 87 / 360 -- time = 5220.0 / 21600.0 iteration: 88 / 360 -- time = 5280.0 / 21600.0 iteration: 89 / 360 -- time = 5340.0 / 21600.0 iteration: 90 / 360 -- time = 5400.0 / 21600.0 iteration: 91 / 360 -- time = 5460.0 / 21600.0 iteration: 92 / 360 -- time = 5520.0 / 21600.0 iteration: 93 / 360 -- time = 5580.0 / 21600.0 iteration: 94 / 360 -- time = 5640.0 / 21600.0 iteration: 95 / 360 -- time = 5700.0 / 21600.0 iteration: 96 / 360 -- time = 5760.0 / 21600.0 iteration: 97 / 360 -- time = 5820.0 / 21600.0 iteration: 98 / 360 -- time = 5880.0 / 21600.0 iteration: 99 / 360 -- time = 5940.0 / 21600.0 iteration: 100 / 360 -- time = 6000.0 / 21600.0 iteration: 101 / 360 -- time = 6060.0 / 21600.0 iteration: 102 / 360 -- time = 6120.0 / 21600.0 iteration: 103 / 360 -- time = 6180.0 / 21600.0 iteration: 104 / 360 -- time = 6240.0 / 21600.0 iteration: 105 / 360 -- time = 6300.0 / 21600.0 iteration: 106 / 360 -- time = 6360.0 / 21600.0 iteration: 107 / 360 -- time = 6420.0 / 21600.0 iteration: 108 / 360 -- time = 6480.0 / 21600.0 iteration: 109 / 360 -- time = 6540.0 / 21600.0 iteration: 110 / 360 -- time = 6600.0 / 21600.0 iteration: 111 / 360 -- time = 6660.0 / 21600.0 iteration: 112 / 360 -- time = 6720.0 / 21600.0 iteration: 113 / 360 -- time = 6780.0 / 21600.0 iteration: 114 / 360 -- time = 6840.0 / 21600.0 iteration: 115 / 360 -- time = 6900.0 / 21600.0 iteration: 116 / 360 -- time = 6960.0 / 21600.0 iteration: 117 / 360 -- time = 7020.0 / 21600.0 iteration: 118 / 360 -- time = 7080.0 / 21600.0 iteration: 119 / 360 -- time = 7140.0 / 21600.0 iteration: 120 / 360 -- time = 7200.0 / 21600.0 iteration: 121 / 360 -- time = 7260.0 / 21600.0 iteration: 122 / 360 -- time = 7320.0 / 21600.0 iteration: 123 / 360 -- time = 7380.0 / 21600.0 iteration: 124 / 360 -- time = 7440.0 / 21600.0 iteration: 125 / 360 -- time = 7500.0 / 21600.0 iteration: 126 / 360 -- time = 7560.0 / 21600.0 iteration: 127 / 360 -- time = 7620.0 / 21600.0 iteration: 128 / 360 -- time = 7680.0 / 21600.0 iteration: 129 / 360 -- time = 7740.0 / 21600.0 iteration: 130 / 360 -- time = 7800.0 / 21600.0 iteration: 131 / 360 -- time = 7860.0 / 21600.0 iteration: 132 / 360 -- time = 7920.0 / 21600.0 iteration: 133 / 360 -- time = 7980.0 / 21600.0 iteration: 134 / 360 -- time = 8040.0 / 21600.0 iteration: 135 / 360 -- time = 8100.0 / 21600.0 iteration: 136 / 360 -- time = 8160.0 / 21600.0 iteration: 137 / 360 -- time = 8220.0 / 21600.0 iteration: 138 / 360 -- time = 8280.0 / 21600.0 iteration: 139 / 360 -- time = 8340.0 / 21600.0 iteration: 140 / 360 -- time = 8400.0 / 21600.0 iteration: 141 / 360 -- time = 8460.0 / 21600.0 iteration: 142 / 360 -- time = 8520.0 / 21600.0 iteration: 143 / 360 -- time = 8580.0 / 21600.0 iteration: 144 / 360 -- time = 8640.0 / 21600.0 iteration: 145 / 360 -- time = 8700.0 / 21600.0 iteration: 146 / 360 -- time = 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iteration: 351 / 360 -- time = 21060.0 / 21600.0 iteration: 352 / 360 -- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.0584 CLUBB-TIMER time_clubb_advance = 2.5290 CLUBB-TIMER time_clubb_pdf = 0.0004 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 2.7382 Program exited normally [PASS] bs4_tout300_window5400_16200: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/bomex/bs4_tout300_window5400_16200/bomex_stats.nc ======================== Batch-Size Checks ======================== [PASS] bs2_tout60_vs_bs4_tout60: checked 800 variables exactly [PASS] bs1_tout60_vs_bs4_tout60: checked 800 variables exactly ======================== Tout Averaging Checks ======================== [PASS] bs4_tout300_manual_average_vs_bs4_tout60: checked 791 time-dependent variables, max_abs=2.980232e-08, max_rel=1.000000e+00 [PASS] bs4_tout600_manual_average_vs_bs4_tout60: checked 791 time-dependent variables, max_abs=2.980232e-08, max_rel=1.000000e+00 ======================== Windowing Checks ======================== [PASS] bs4_tout60_window5400_16200_selected_window_vs_bs4_tout60: checked 800 variables against window (5400, 16200) [PASS] bs4_tout300_window5400_16200_manual_average_vs_bs4_tout60: checked 791 time-dependent variables, max_abs=2.980232e-08, max_rel=4.286657e-09 ======================== Summary ======================== All stats consistency checks passed. [Pipeline] sh + python run_scripts/run_stats_output_consistency.py -stats input/stats/standard_stats.in atex ======================== Test Setup ======================== Case: atex Stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in Multicol spec: C8/0.2:0.8/4 Reference batch size: 4 Batch sizes checked: 2, 1 Fine tout: 60 Coarse touts: 300, 600 Window checks stats_tstart/stats_tend: 7200, 21600 Output root: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex Planned runs: - bs4_tout60: batch_size=4, tout=60, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60 - bs2_tout60: batch_size=2, tout=60, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs2_tout60 - bs1_tout60: batch_size=1, tout=60, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs1_tout60 - bs4_tout300: batch_size=4, tout=300, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300 - bs4_tout600: batch_size=4, tout=600, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout600 - bs4_tout60_window7200_21600: batch_size=4, tout=60, stats_tstart=7200, stats_tend=21600, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60_window7200_21600 - bs4_tout300_window7200_21600: batch_size=4, tout=300, stats_tstart=7200, stats_tend=21600, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300_window7200_21600 ======================== Run Phase ======================== Running bs4_tout60 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 60 atex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60/atex_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60/atex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running atex =================== 2026/06/23 17:12:47 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = atex nzmax = 150 grid_type = 1 deltaz = 20.000000000000000 20.000000000000000 20.000000000000000 20.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 3960.0000000000000 3960.0000000000000 3960.0000000000000 3960.0000000000000 zt_grid_fname = zm_grid_fname = day = 7 month = 2 year = 1969 lat_vals = 14.940600000000000 lon_vals = -35.000000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 28800.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7499999999999997E-005 3.7499999999999997E-005 3.7499999999999997E-005 3.7499999999999997E-005 fcor_y = 1.4090967921319143E-004 1.4090967921319143E-004 1.4090967921319143E-004 1.4090967921319143E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = F l_modify_bc_for_cnvg_test = F l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/atex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60/ fname_prefix = atex stats_output_filename = atex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 0.0000000000000000 stats_tend = 28800.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/atex_corr_array_cloud.in and/or ../input/case_setups/atex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 74.000000000000000 F1 = 0.0000000000000000 kappa = 130.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: atex_sounding.in File exists? T Path to sclr_sounding: atex_sclr_sounding.in File exists? T Path to edsclr_sounding: atex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 150.00000000000000 700.00000000000000 750.00000000000000 1400.0000000000000 1650.0000000000000 4000.0000000000000 u = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 v = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 ug = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 vg = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 theta = 295.75000000000000 295.75000000000000 295.75000000000000 296.12500000000000 297.75000000000000 306.75000000000000 314.97500000000002 rt = 1.2999999999999999E-002 1.2500000000000001E-002 1.2500000000000001E-002 1.1500000000000000E-002 1.0250000000000000E-002 4.4999999999999997E-003 4.4999999999999997E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 480 -- time = 60.0 / 28800.0 iteration: 2 / 480 -- time = 120.0 / 28800.0 iteration: 3 / 480 -- time = 180.0 / 28800.0 iteration: 4 / 480 -- time = 240.0 / 28800.0 iteration: 5 / 480 -- time = 300.0 / 28800.0 iteration: 6 / 480 -- time = 360.0 / 28800.0 iteration: 7 / 480 -- time = 420.0 / 28800.0 iteration: 8 / 480 -- time = 480.0 / 28800.0 iteration: 9 / 480 -- time = 540.0 / 28800.0 iteration: 10 / 480 -- time = 600.0 / 28800.0 iteration: 11 / 480 -- time = 660.0 / 28800.0 iteration: 12 / 480 -- time = 720.0 / 28800.0 iteration: 13 / 480 -- time = 780.0 / 28800.0 iteration: 14 / 480 -- time = 840.0 / 28800.0 iteration: 15 / 480 -- time = 900.0 / 28800.0 iteration: 16 / 480 -- time = 960.0 / 28800.0 iteration: 17 / 480 -- time = 1020.0 / 28800.0 iteration: 18 / 480 -- time = 1080.0 / 28800.0 iteration: 19 / 480 -- time = 1140.0 / 28800.0 iteration: 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-- time = 28140.0 / 28800.0 iteration: 470 / 480 -- time = 28200.0 / 28800.0 iteration: 471 / 480 -- time = 28260.0 / 28800.0 iteration: 472 / 480 -- time = 28320.0 / 28800.0 iteration: 473 / 480 -- time = 28380.0 / 28800.0 iteration: 474 / 480 -- time = 28440.0 / 28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.6512 CLUBB-TIMER time_clubb_advance = 8.1784 CLUBB-TIMER time_clubb_pdf = 0.0009 CLUBB-TIMER time_SILHS = 0.0003 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 12.5546 Program exited normally [PASS] bs4_tout60: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60/atex_stats.nc Running bs2_tout60 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs2_tout60 -multicol C8/0.2:0.8/4 -batch_size 2 -tout 60 atex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs2_tout60/atex_multicol_params.in': - ngrdcol = 4 - batch_size = 2 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs2_tout60/atex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running atex =================== 2026/06/23 17:13:00 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = atex nzmax = 150 grid_type = 1 deltaz = 20.000000000000000 20.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 zm_top = 3960.0000000000000 3960.0000000000000 zt_grid_fname = zm_grid_fname = day = 7 month = 2 year = 1969 lat_vals = 14.940600000000000 lon_vals = -35.000000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 28800.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7499999999999997E-005 3.7499999999999997E-005 fcor_y = 1.4090967921319143E-004 1.4090967921319143E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = F l_modify_bc_for_cnvg_test = F l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/atex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs2_tout60/ fname_prefix = atex stats_output_filename = atex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 0.0000000000000000 stats_tend = 28800.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/atex_corr_array_cloud.in and/or ../input/case_setups/atex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 74.000000000000000 F1 = 0.0000000000000000 kappa = 130.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: atex_sounding.in File exists? T Path to sclr_sounding: atex_sclr_sounding.in File exists? T Path to edsclr_sounding: atex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 150.00000000000000 700.00000000000000 750.00000000000000 1400.0000000000000 1650.0000000000000 4000.0000000000000 u = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 v = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 ug = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 vg = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 theta = 295.75000000000000 295.75000000000000 295.75000000000000 296.12500000000000 297.75000000000000 306.75000000000000 314.97500000000002 rt = 1.2999999999999999E-002 1.2500000000000001E-002 1.2500000000000001E-002 1.1500000000000000E-002 1.0250000000000000E-002 4.4999999999999997E-003 4.4999999999999997E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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-- time = 28200.0 / 28800.0 iteration: 471 / 480 -- time = 28260.0 / 28800.0 iteration: 472 / 480 -- time = 28320.0 / 28800.0 iteration: 473 / 480 -- time = 28380.0 / 28800.0 iteration: 474 / 480 -- time = 28440.0 / 28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.4070 CLUBB-TIMER time_clubb_advance = 4.9252 CLUBB-TIMER time_clubb_pdf = 0.0009 CLUBB-TIMER time_SILHS = 0.0003 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 10.1812 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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-- time = 28440.0 / 28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.3836 CLUBB-TIMER time_clubb_advance = 4.8392 CLUBB-TIMER time_clubb_pdf = 0.0007 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 8.1487 Program exited normally [PASS] bs2_tout60: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs2_tout60/atex_stats.nc Running bs1_tout60 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs1_tout60 -multicol C8/0.2:0.8/4 -batch_size 1 -tout 60 atex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs1_tout60/atex_multicol_params.in': - ngrdcol = 4 - batch_size = 1 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs1_tout60/atex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running atex =================== 2026/06/23 17:13:20 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = atex nzmax = 150 grid_type = 1 deltaz = 20.000000000000000 zm_init = 0.0000000000000000 zm_top = 3960.0000000000000 zt_grid_fname = zm_grid_fname = day = 7 month = 2 year = 1969 lat_vals = 14.940600000000000 lon_vals = -35.000000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 28800.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 p_sfc = 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7499999999999997E-005 fcor_y = 1.4090967921319143E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = F l_modify_bc_for_cnvg_test = F l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/atex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs1_tout60/ fname_prefix = atex stats_output_filename = atex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 0.0000000000000000 stats_tend = 28800.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/atex_corr_array_cloud.in and/or ../input/case_setups/atex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 74.000000000000000 F1 = 0.0000000000000000 kappa = 130.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: atex_sounding.in File exists? T Path to sclr_sounding: atex_sclr_sounding.in File exists? T Path to edsclr_sounding: atex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 150.00000000000000 700.00000000000000 750.00000000000000 1400.0000000000000 1650.0000000000000 4000.0000000000000 u = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 v = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 ug = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 vg = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 theta = 295.75000000000000 295.75000000000000 295.75000000000000 296.12500000000000 297.75000000000000 306.75000000000000 314.97500000000002 rt = 1.2999999999999999E-002 1.2500000000000001E-002 1.2500000000000001E-002 1.1500000000000000E-002 1.0250000000000000E-002 4.4999999999999997E-003 4.4999999999999997E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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28800.0 iteration: 471 / 480 -- time = 28260.0 / 28800.0 iteration: 472 / 480 -- time = 28320.0 / 28800.0 iteration: 473 / 480 -- time = 28380.0 / 28800.0 iteration: 474 / 480 -- time = 28440.0 / 28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.3005 CLUBB-TIMER time_clubb_advance = 3.5509 CLUBB-TIMER time_clubb_pdf = 0.0008 CLUBB-TIMER time_SILHS = 0.0003 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 8.6018 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.2807 CLUBB-TIMER time_clubb_advance = 3.3966 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 6.4666 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 480 -- time = 60.0 / 28800.0 iteration: 2 / 480 -- time = 120.0 / 28800.0 iteration: 3 / 480 -- time = 180.0 / 28800.0 iteration: 4 / 480 -- time = 240.0 / 28800.0 iteration: 5 / 480 -- time = 300.0 / 28800.0 iteration: 6 / 480 -- time = 360.0 / 28800.0 iteration: 7 / 480 -- time = 420.0 / 28800.0 iteration: 8 / 480 -- time = 480.0 / 28800.0 iteration: 9 / 480 -- time = 540.0 / 28800.0 iteration: 10 / 480 -- time = 600.0 / 28800.0 iteration: 11 / 480 -- time = 660.0 / 28800.0 iteration: 12 / 480 -- time = 720.0 / 28800.0 iteration: 13 / 480 -- time = 780.0 / 28800.0 iteration: 14 / 480 -- time = 840.0 / 28800.0 iteration: 15 / 480 -- time = 900.0 / 28800.0 iteration: 16 / 480 -- time = 960.0 / 28800.0 iteration: 17 / 480 -- time = 1020.0 / 28800.0 iteration: 18 / 480 -- time = 1080.0 / 28800.0 iteration: 19 / 480 -- time = 1140.0 / 28800.0 iteration: 20 / 480 -- time = 1200.0 / 28800.0 iteration: 21 / 480 -- 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/ 28800.0 iteration: 43 / 480 -- time = 2580.0 / 28800.0 iteration: 44 / 480 -- time = 2640.0 / 28800.0 iteration: 45 / 480 -- time = 2700.0 / 28800.0 iteration: 46 / 480 -- time = 2760.0 / 28800.0 iteration: 47 / 480 -- time = 2820.0 / 28800.0 iteration: 48 / 480 -- time = 2880.0 / 28800.0 iteration: 49 / 480 -- time = 2940.0 / 28800.0 iteration: 50 / 480 -- time = 3000.0 / 28800.0 iteration: 51 / 480 -- time = 3060.0 / 28800.0 iteration: 52 / 480 -- time = 3120.0 / 28800.0 iteration: 53 / 480 -- time = 3180.0 / 28800.0 iteration: 54 / 480 -- time = 3240.0 / 28800.0 iteration: 55 / 480 -- time = 3300.0 / 28800.0 iteration: 56 / 480 -- time = 3360.0 / 28800.0 iteration: 57 / 480 -- time = 3420.0 / 28800.0 iteration: 58 / 480 -- time = 3480.0 / 28800.0 iteration: 59 / 480 -- time = 3540.0 / 28800.0 iteration: 60 / 480 -- time = 3600.0 / 28800.0 iteration: 61 / 480 -- time = 3660.0 / 28800.0 iteration: 62 / 480 -- time = 3720.0 / 28800.0 iteration: 63 / 480 -- time = 3780.0 / 28800.0 iteration: 64 / 480 -- time = 3840.0 / 28800.0 iteration: 65 / 480 -- time = 3900.0 / 28800.0 iteration: 66 / 480 -- time = 3960.0 / 28800.0 iteration: 67 / 480 -- time = 4020.0 / 28800.0 iteration: 68 / 480 -- time = 4080.0 / 28800.0 iteration: 69 / 480 -- time = 4140.0 / 28800.0 iteration: 70 / 480 -- time = 4200.0 / 28800.0 iteration: 71 / 480 -- time = 4260.0 / 28800.0 iteration: 72 / 480 -- time = 4320.0 / 28800.0 iteration: 73 / 480 -- time = 4380.0 / 28800.0 iteration: 74 / 480 -- time = 4440.0 / 28800.0 iteration: 75 / 480 -- time = 4500.0 / 28800.0 iteration: 76 / 480 -- time = 4560.0 / 28800.0 iteration: 77 / 480 -- time = 4620.0 / 28800.0 iteration: 78 / 480 -- time = 4680.0 / 28800.0 iteration: 79 / 480 -- time = 4740.0 / 28800.0 iteration: 80 / 480 -- time = 4800.0 / 28800.0 iteration: 81 / 480 -- time = 4860.0 / 28800.0 iteration: 82 / 480 -- time = 4920.0 / 28800.0 iteration: 83 / 480 -- time = 4980.0 / 28800.0 iteration: 84 / 480 -- time = 5040.0 / 28800.0 iteration: 85 / 480 -- time = 5100.0 / 28800.0 iteration: 86 / 480 -- time = 5160.0 / 28800.0 iteration: 87 / 480 -- time = 5220.0 / 28800.0 iteration: 88 / 480 -- time = 5280.0 / 28800.0 iteration: 89 / 480 -- time = 5340.0 / 28800.0 iteration: 90 / 480 -- time = 5400.0 / 28800.0 iteration: 91 / 480 -- time = 5460.0 / 28800.0 iteration: 92 / 480 -- time = 5520.0 / 28800.0 iteration: 93 / 480 -- time = 5580.0 / 28800.0 iteration: 94 / 480 -- time = 5640.0 / 28800.0 iteration: 95 / 480 -- time = 5700.0 / 28800.0 iteration: 96 / 480 -- time = 5760.0 / 28800.0 iteration: 97 / 480 -- time = 5820.0 / 28800.0 iteration: 98 / 480 -- time = 5880.0 / 28800.0 iteration: 99 / 480 -- time = 5940.0 / 28800.0 iteration: 100 / 480 -- time = 6000.0 / 28800.0 iteration: 101 / 480 -- time = 6060.0 / 28800.0 iteration: 102 / 480 -- time = 6120.0 / 28800.0 iteration: 103 / 480 -- time = 6180.0 / 28800.0 iteration: 104 / 480 -- time = 6240.0 / 28800.0 iteration: 105 / 480 -- time = 6300.0 / 28800.0 iteration: 106 / 480 -- time = 6360.0 / 28800.0 iteration: 107 / 480 -- time = 6420.0 / 28800.0 iteration: 108 / 480 -- time = 6480.0 / 28800.0 iteration: 109 / 480 -- time = 6540.0 / 28800.0 iteration: 110 / 480 -- time = 6600.0 / 28800.0 iteration: 111 / 480 -- time = 6660.0 / 28800.0 iteration: 112 / 480 -- time = 6720.0 / 28800.0 iteration: 113 / 480 -- time = 6780.0 / 28800.0 iteration: 114 / 480 -- time = 6840.0 / 28800.0 iteration: 115 / 480 -- time = 6900.0 / 28800.0 iteration: 116 / 480 -- time = 6960.0 / 28800.0 iteration: 117 / 480 -- time = 7020.0 / 28800.0 iteration: 118 / 480 -- time = 7080.0 / 28800.0 iteration: 119 / 480 -- time = 7140.0 / 28800.0 iteration: 120 / 480 -- time = 7200.0 / 28800.0 iteration: 121 / 480 -- time = 7260.0 / 28800.0 iteration: 122 / 480 -- time = 7320.0 / 28800.0 iteration: 123 / 480 -- time = 7380.0 / 28800.0 iteration: 124 / 480 -- time = 7440.0 / 28800.0 iteration: 125 / 480 -- time = 7500.0 / 28800.0 iteration: 126 / 480 -- time = 7560.0 / 28800.0 iteration: 127 / 480 -- time = 7620.0 / 28800.0 iteration: 128 / 480 -- time = 7680.0 / 28800.0 iteration: 129 / 480 -- time = 7740.0 / 28800.0 iteration: 130 / 480 -- time = 7800.0 / 28800.0 iteration: 131 / 480 -- time = 7860.0 / 28800.0 iteration: 132 / 480 -- time = 7920.0 / 28800.0 iteration: 133 / 480 -- time = 7980.0 / 28800.0 iteration: 134 / 480 -- time = 8040.0 / 28800.0 iteration: 135 / 480 -- time = 8100.0 / 28800.0 iteration: 136 / 480 -- time = 8160.0 / 28800.0 iteration: 137 / 480 -- time = 8220.0 / 28800.0 iteration: 138 / 480 -- time = 8280.0 / 28800.0 iteration: 139 / 480 -- time = 8340.0 / 28800.0 iteration: 140 / 480 -- time = 8400.0 / 28800.0 iteration: 141 / 480 -- time = 8460.0 / 28800.0 iteration: 142 / 480 -- time = 8520.0 / 28800.0 iteration: 143 / 480 -- time = 8580.0 / 28800.0 iteration: 144 / 480 -- time = 8640.0 / 28800.0 iteration: 145 / 480 -- time = 8700.0 / 28800.0 iteration: 146 / 480 -- time = 8760.0 / 28800.0 iteration: 147 / 480 -- time = 8820.0 / 28800.0 iteration: 148 / 480 -- time = 8880.0 / 28800.0 iteration: 149 / 480 -- time = 8940.0 / 28800.0 iteration: 150 / 480 -- time = 9000.0 / 28800.0 iteration: 151 / 480 -- time = 9060.0 / 28800.0 iteration: 152 / 480 -- time = 9120.0 / 28800.0 iteration: 153 / 480 -- time = 9180.0 / 28800.0 iteration: 154 / 480 -- time = 9240.0 / 28800.0 iteration: 155 / 480 -- time = 9300.0 / 28800.0 iteration: 156 / 480 -- time = 9360.0 / 28800.0 iteration: 157 / 480 -- time = 9420.0 / 28800.0 iteration: 158 / 480 -- time = 9480.0 / 28800.0 iteration: 159 / 480 -- time = 9540.0 / 28800.0 iteration: 160 / 480 -- time = 9600.0 / 28800.0 iteration: 161 / 480 -- time = 9660.0 / 28800.0 iteration: 162 / 480 -- time = 9720.0 / 28800.0 iteration: 163 / 480 -- time = 9780.0 / 28800.0 iteration: 164 / 480 -- time = 9840.0 / 28800.0 iteration: 165 / 480 -- time = 9900.0 / 28800.0 iteration: 166 / 480 -- time = 9960.0 / 28800.0 iteration: 167 / 480 -- time = 10020.0 / 28800.0 iteration: 168 / 480 -- time = 10080.0 / 28800.0 iteration: 169 / 480 -- time = 10140.0 / 28800.0 iteration: 170 / 480 -- time = 10200.0 / 28800.0 iteration: 171 / 480 -- time = 10260.0 / 28800.0 iteration: 172 / 480 -- time = 10320.0 / 28800.0 iteration: 173 / 480 -- time = 10380.0 / 28800.0 iteration: 174 / 480 -- time = 10440.0 / 28800.0 iteration: 175 / 480 -- time = 10500.0 / 28800.0 iteration: 176 / 480 -- time = 10560.0 / 28800.0 iteration: 177 / 480 -- time = 10620.0 / 28800.0 iteration: 178 / 480 -- time = 10680.0 / 28800.0 iteration: 179 / 480 -- time = 10740.0 / 28800.0 iteration: 180 / 480 -- time = 10800.0 / 28800.0 iteration: 181 / 480 -- time = 10860.0 / 28800.0 iteration: 182 / 480 -- time = 10920.0 / 28800.0 iteration: 183 / 480 -- time = 10980.0 / 28800.0 iteration: 184 / 480 -- time = 11040.0 / 28800.0 iteration: 185 / 480 -- time = 11100.0 / 28800.0 iteration: 186 / 480 -- time = 11160.0 / 28800.0 iteration: 187 / 480 -- time = 11220.0 / 28800.0 iteration: 188 / 480 -- time = 11280.0 / 28800.0 iteration: 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12540.0 / 28800.0 iteration: 210 / 480 -- time = 12600.0 / 28800.0 iteration: 211 / 480 -- time = 12660.0 / 28800.0 iteration: 212 / 480 -- time = 12720.0 / 28800.0 iteration: 213 / 480 -- time = 12780.0 / 28800.0 iteration: 214 / 480 -- time = 12840.0 / 28800.0 iteration: 215 / 480 -- time = 12900.0 / 28800.0 iteration: 216 / 480 -- time = 12960.0 / 28800.0 iteration: 217 / 480 -- time = 13020.0 / 28800.0 iteration: 218 / 480 -- time = 13080.0 / 28800.0 iteration: 219 / 480 -- time = 13140.0 / 28800.0 iteration: 220 / 480 -- time = 13200.0 / 28800.0 iteration: 221 / 480 -- time = 13260.0 / 28800.0 iteration: 222 / 480 -- time = 13320.0 / 28800.0 iteration: 223 / 480 -- time = 13380.0 / 28800.0 iteration: 224 / 480 -- time = 13440.0 / 28800.0 iteration: 225 / 480 -- time = 13500.0 / 28800.0 iteration: 226 / 480 -- time = 13560.0 / 28800.0 iteration: 227 / 480 -- time = 13620.0 / 28800.0 iteration: 228 / 480 -- time = 13680.0 / 28800.0 iteration: 229 / 480 -- time = 13740.0 / 28800.0 iteration: 230 / 480 -- time = 13800.0 / 28800.0 iteration: 231 / 480 -- time = 13860.0 / 28800.0 iteration: 232 / 480 -- time = 13920.0 / 28800.0 iteration: 233 / 480 -- time = 13980.0 / 28800.0 iteration: 234 / 480 -- time = 14040.0 / 28800.0 iteration: 235 / 480 -- time = 14100.0 / 28800.0 iteration: 236 / 480 -- time = 14160.0 / 28800.0 iteration: 237 / 480 -- time = 14220.0 / 28800.0 iteration: 238 / 480 -- time = 14280.0 / 28800.0 iteration: 239 / 480 -- time = 14340.0 / 28800.0 iteration: 240 / 480 -- time = 14400.0 / 28800.0 iteration: 241 / 480 -- time = 14460.0 / 28800.0 iteration: 242 / 480 -- time = 14520.0 / 28800.0 iteration: 243 / 480 -- time = 14580.0 / 28800.0 iteration: 244 / 480 -- time = 14640.0 / 28800.0 iteration: 245 / 480 -- time = 14700.0 / 28800.0 iteration: 246 / 480 -- time = 14760.0 / 28800.0 iteration: 247 / 480 -- time = 14820.0 / 28800.0 iteration: 248 / 480 -- time = 14880.0 / 28800.0 iteration: 249 / 480 -- time = 14940.0 / 28800.0 iteration: 250 / 480 -- time = 15000.0 / 28800.0 iteration: 251 / 480 -- time = 15060.0 / 28800.0 iteration: 252 / 480 -- time = 15120.0 / 28800.0 iteration: 253 / 480 -- time = 15180.0 / 28800.0 iteration: 254 / 480 -- time = 15240.0 / 28800.0 iteration: 255 / 480 -- time = 15300.0 / 28800.0 iteration: 256 / 480 -- time = 15360.0 / 28800.0 iteration: 257 / 480 -- time = 15420.0 / 28800.0 iteration: 258 / 480 -- time = 15480.0 / 28800.0 iteration: 259 / 480 -- time = 15540.0 / 28800.0 iteration: 260 / 480 -- time = 15600.0 / 28800.0 iteration: 261 / 480 -- time = 15660.0 / 28800.0 iteration: 262 / 480 -- time = 15720.0 / 28800.0 iteration: 263 / 480 -- time = 15780.0 / 28800.0 iteration: 264 / 480 -- time = 15840.0 / 28800.0 iteration: 265 / 480 -- time = 15900.0 / 28800.0 iteration: 266 / 480 -- time = 15960.0 / 28800.0 iteration: 267 / 480 -- time = 16020.0 / 28800.0 iteration: 268 / 480 -- time = 16080.0 / 28800.0 iteration: 269 / 480 -- time = 16140.0 / 28800.0 iteration: 270 / 480 -- time = 16200.0 / 28800.0 iteration: 271 / 480 -- time = 16260.0 / 28800.0 iteration: 272 / 480 -- time = 16320.0 / 28800.0 iteration: 273 / 480 -- time = 16380.0 / 28800.0 iteration: 274 / 480 -- time = 16440.0 / 28800.0 iteration: 275 / 480 -- time = 16500.0 / 28800.0 iteration: 276 / 480 -- time = 16560.0 / 28800.0 iteration: 277 / 480 -- time = 16620.0 / 28800.0 iteration: 278 / 480 -- time = 16680.0 / 28800.0 iteration: 279 / 480 -- time = 16740.0 / 28800.0 iteration: 280 / 480 -- time = 16800.0 / 28800.0 iteration: 281 / 480 -- time = 16860.0 / 28800.0 iteration: 282 / 480 -- time = 16920.0 / 28800.0 iteration: 283 / 480 -- time = 16980.0 / 28800.0 iteration: 284 / 480 -- time = 17040.0 / 28800.0 iteration: 285 / 480 -- time = 17100.0 / 28800.0 iteration: 286 / 480 -- time = 17160.0 / 28800.0 iteration: 287 / 480 -- time = 17220.0 / 28800.0 iteration: 288 / 480 -- time = 17280.0 / 28800.0 iteration: 289 / 480 -- time = 17340.0 / 28800.0 iteration: 290 / 480 -- time = 17400.0 / 28800.0 iteration: 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18660.0 / 28800.0 iteration: 312 / 480 -- time = 18720.0 / 28800.0 iteration: 313 / 480 -- time = 18780.0 / 28800.0 iteration: 314 / 480 -- time = 18840.0 / 28800.0 iteration: 315 / 480 -- time = 18900.0 / 28800.0 iteration: 316 / 480 -- time = 18960.0 / 28800.0 iteration: 317 / 480 -- time = 19020.0 / 28800.0 iteration: 318 / 480 -- time = 19080.0 / 28800.0 iteration: 319 / 480 -- time = 19140.0 / 28800.0 iteration: 320 / 480 -- time = 19200.0 / 28800.0 iteration: 321 / 480 -- time = 19260.0 / 28800.0 iteration: 322 / 480 -- time = 19320.0 / 28800.0 iteration: 323 / 480 -- time = 19380.0 / 28800.0 iteration: 324 / 480 -- time = 19440.0 / 28800.0 iteration: 325 / 480 -- time = 19500.0 / 28800.0 iteration: 326 / 480 -- time = 19560.0 / 28800.0 iteration: 327 / 480 -- time = 19620.0 / 28800.0 iteration: 328 / 480 -- time = 19680.0 / 28800.0 iteration: 329 / 480 -- time = 19740.0 / 28800.0 iteration: 330 / 480 -- time = 19800.0 / 28800.0 iteration: 331 / 480 -- time = 19860.0 / 28800.0 iteration: 332 / 480 -- time = 19920.0 / 28800.0 iteration: 333 / 480 -- time = 19980.0 / 28800.0 iteration: 334 / 480 -- time = 20040.0 / 28800.0 iteration: 335 / 480 -- time = 20100.0 / 28800.0 iteration: 336 / 480 -- time = 20160.0 / 28800.0 iteration: 337 / 480 -- time = 20220.0 / 28800.0 iteration: 338 / 480 -- time = 20280.0 / 28800.0 iteration: 339 / 480 -- time = 20340.0 / 28800.0 iteration: 340 / 480 -- time = 20400.0 / 28800.0 iteration: 341 / 480 -- time = 20460.0 / 28800.0 iteration: 342 / 480 -- time = 20520.0 / 28800.0 iteration: 343 / 480 -- time = 20580.0 / 28800.0 iteration: 344 / 480 -- time = 20640.0 / 28800.0 iteration: 345 / 480 -- time = 20700.0 / 28800.0 iteration: 346 / 480 -- time = 20760.0 / 28800.0 iteration: 347 / 480 -- time = 20820.0 / 28800.0 iteration: 348 / 480 -- time = 20880.0 / 28800.0 iteration: 349 / 480 -- time = 20940.0 / 28800.0 iteration: 350 / 480 -- time = 21000.0 / 28800.0 iteration: 351 / 480 -- time = 21060.0 / 28800.0 iteration: 352 / 480 -- time = 21120.0 / 28800.0 iteration: 353 / 480 -- time = 21180.0 / 28800.0 iteration: 354 / 480 -- time = 21240.0 / 28800.0 iteration: 355 / 480 -- time = 21300.0 / 28800.0 iteration: 356 / 480 -- time = 21360.0 / 28800.0 iteration: 357 / 480 -- time = 21420.0 / 28800.0 iteration: 358 / 480 -- time = 21480.0 / 28800.0 iteration: 359 / 480 -- time = 21540.0 / 28800.0 iteration: 360 / 480 -- time = 21600.0 / 28800.0 iteration: 361 / 480 -- time = 21660.0 / 28800.0 iteration: 362 / 480 -- time = 21720.0 / 28800.0 iteration: 363 / 480 -- time = 21780.0 / 28800.0 iteration: 364 / 480 -- time = 21840.0 / 28800.0 iteration: 365 / 480 -- time = 21900.0 / 28800.0 iteration: 366 / 480 -- time = 21960.0 / 28800.0 iteration: 367 / 480 -- time = 22020.0 / 28800.0 iteration: 368 / 480 -- time = 22080.0 / 28800.0 iteration: 369 / 480 -- time = 22140.0 / 28800.0 iteration: 370 / 480 -- time = 22200.0 / 28800.0 iteration: 371 / 480 -- time = 22260.0 / 28800.0 iteration: 372 / 480 -- time = 22320.0 / 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iteration: 434 / 480 -- time = 26040.0 / 28800.0 iteration: 435 / 480 -- time = 26100.0 / 28800.0 iteration: 436 / 480 -- time = 26160.0 / 28800.0 iteration: 437 / 480 -- time = 26220.0 / 28800.0 iteration: 438 / 480 -- time = 26280.0 / 28800.0 iteration: 439 / 480 -- time = 26340.0 / 28800.0 iteration: 440 / 480 -- time = 26400.0 / 28800.0 iteration: 441 / 480 -- time = 26460.0 / 28800.0 iteration: 442 / 480 -- time = 26520.0 / 28800.0 iteration: 443 / 480 -- time = 26580.0 / 28800.0 iteration: 444 / 480 -- time = 26640.0 / 28800.0 iteration: 445 / 480 -- time = 26700.0 / 28800.0 iteration: 446 / 480 -- time = 26760.0 / 28800.0 iteration: 447 / 480 -- time = 26820.0 / 28800.0 iteration: 448 / 480 -- time = 26880.0 / 28800.0 iteration: 449 / 480 -- time = 26940.0 / 28800.0 iteration: 450 / 480 -- time = 27000.0 / 28800.0 iteration: 451 / 480 -- time = 27060.0 / 28800.0 iteration: 452 / 480 -- time = 27120.0 / 28800.0 iteration: 453 / 480 -- time = 27180.0 / 28800.0 iteration: 454 / 480 -- time = 27240.0 / 28800.0 iteration: 455 / 480 -- time = 27300.0 / 28800.0 iteration: 456 / 480 -- time = 27360.0 / 28800.0 iteration: 457 / 480 -- time = 27420.0 / 28800.0 iteration: 458 / 480 -- time = 27480.0 / 28800.0 iteration: 459 / 480 -- time = 27540.0 / 28800.0 iteration: 460 / 480 -- time = 27600.0 / 28800.0 iteration: 461 / 480 -- time = 27660.0 / 28800.0 iteration: 462 / 480 -- time = 27720.0 / 28800.0 iteration: 463 / 480 -- time = 27780.0 / 28800.0 iteration: 464 / 480 -- time = 27840.0 / 28800.0 iteration: 465 / 480 -- time = 27900.0 / 28800.0 iteration: 466 / 480 -- time = 27960.0 / 28800.0 iteration: 467 / 480 -- time = 28020.0 / 28800.0 iteration: 468 / 480 -- time = 28080.0 / 28800.0 iteration: 469 / 480 -- time = 28140.0 / 28800.0 iteration: 470 / 480 -- time = 28200.0 / 28800.0 iteration: 471 / 480 -- time = 28260.0 / 28800.0 iteration: 472 / 480 -- time = 28320.0 / 28800.0 iteration: 473 / 480 -- time = 28380.0 / 28800.0 iteration: 474 / 480 -- time = 28440.0 / 28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.2942 CLUBB-TIMER time_clubb_advance = 3.5272 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 6.7230 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.2896 CLUBB-TIMER time_clubb_advance = 3.5084 CLUBB-TIMER time_clubb_pdf = 0.0006 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 6.6998 Program exited normally [PASS] bs1_tout60: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs1_tout60/atex_stats.nc Running bs4_tout300 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 300 atex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300/atex_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300/atex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running atex =================== 2026/06/23 17:13:50 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = atex nzmax = 150 grid_type = 1 deltaz = 20.000000000000000 20.000000000000000 20.000000000000000 20.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 3960.0000000000000 3960.0000000000000 3960.0000000000000 3960.0000000000000 zt_grid_fname = zm_grid_fname = day = 7 month = 2 year = 1969 lat_vals = 14.940600000000000 lon_vals = -35.000000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 28800.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7499999999999997E-005 3.7499999999999997E-005 3.7499999999999997E-005 3.7499999999999997E-005 fcor_y = 1.4090967921319143E-004 1.4090967921319143E-004 1.4090967921319143E-004 1.4090967921319143E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = F l_modify_bc_for_cnvg_test = F l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/atex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300/ fname_prefix = atex stats_output_filename = atex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 300.00000000000000 stats_tstart = 0.0000000000000000 stats_tend = 28800.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/atex_corr_array_cloud.in and/or ../input/case_setups/atex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 74.000000000000000 F1 = 0.0000000000000000 kappa = 130.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: atex_sounding.in File exists? T Path to sclr_sounding: atex_sclr_sounding.in File exists? T Path to edsclr_sounding: atex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 150.00000000000000 700.00000000000000 750.00000000000000 1400.0000000000000 1650.0000000000000 4000.0000000000000 u = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 v = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 ug = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 vg = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 theta = 295.75000000000000 295.75000000000000 295.75000000000000 296.12500000000000 297.75000000000000 306.75000000000000 314.97500000000002 rt = 1.2999999999999999E-002 1.2500000000000001E-002 1.2500000000000001E-002 1.1500000000000000E-002 1.0250000000000000E-002 4.4999999999999997E-003 4.4999999999999997E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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iteration: 449 / 480 -- time = 26940.0 / 28800.0 iteration: 450 / 480 -- time = 27000.0 / 28800.0 iteration: 451 / 480 -- time = 27060.0 / 28800.0 iteration: 452 / 480 -- time = 27120.0 / 28800.0 iteration: 453 / 480 -- time = 27180.0 / 28800.0 iteration: 454 / 480 -- time = 27240.0 / 28800.0 iteration: 455 / 480 -- time = 27300.0 / 28800.0 iteration: 456 / 480 -- time = 27360.0 / 28800.0 iteration: 457 / 480 -- time = 27420.0 / 28800.0 iteration: 458 / 480 -- time = 27480.0 / 28800.0 iteration: 459 / 480 -- time = 27540.0 / 28800.0 iteration: 460 / 480 -- time = 27600.0 / 28800.0 iteration: 461 / 480 -- time = 27660.0 / 28800.0 iteration: 462 / 480 -- time = 27720.0 / 28800.0 iteration: 463 / 480 -- time = 27780.0 / 28800.0 iteration: 464 / 480 -- time = 27840.0 / 28800.0 iteration: 465 / 480 -- time = 27900.0 / 28800.0 iteration: 466 / 480 -- time = 27960.0 / 28800.0 iteration: 467 / 480 -- time = 28020.0 / 28800.0 iteration: 468 / 480 -- time = 28080.0 / 28800.0 iteration: 469 / 480 -- time = 28140.0 / 28800.0 iteration: 470 / 480 -- time = 28200.0 / 28800.0 iteration: 471 / 480 -- time = 28260.0 / 28800.0 iteration: 472 / 480 -- time = 28320.0 / 28800.0 iteration: 473 / 480 -- time = 28380.0 / 28800.0 iteration: 474 / 480 -- time = 28440.0 / 28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.2154 CLUBB-TIMER time_clubb_advance = 8.0852 CLUBB-TIMER time_clubb_pdf = 0.0008 CLUBB-TIMER time_SILHS = 0.0003 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 9.1505 Program exited normally [PASS] bs4_tout300: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300/atex_stats.nc Running bs4_tout600 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout600 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 600 atex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout600/atex_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout600/atex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running atex =================== 2026/06/23 17:14:00 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = atex nzmax = 150 grid_type = 1 deltaz = 20.000000000000000 20.000000000000000 20.000000000000000 20.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 3960.0000000000000 3960.0000000000000 3960.0000000000000 3960.0000000000000 zt_grid_fname = zm_grid_fname = day = 7 month = 2 year = 1969 lat_vals = 14.940600000000000 lon_vals = -35.000000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 28800.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7499999999999997E-005 3.7499999999999997E-005 3.7499999999999997E-005 3.7499999999999997E-005 fcor_y = 1.4090967921319143E-004 1.4090967921319143E-004 1.4090967921319143E-004 1.4090967921319143E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = F l_modify_bc_for_cnvg_test = F l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/atex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout600/ fname_prefix = atex stats_output_filename = atex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 600.00000000000000 stats_tstart = 0.0000000000000000 stats_tend = 28800.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/atex_corr_array_cloud.in and/or ../input/case_setups/atex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 74.000000000000000 F1 = 0.0000000000000000 kappa = 130.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: atex_sounding.in File exists? T Path to sclr_sounding: atex_sclr_sounding.in File exists? T Path to edsclr_sounding: atex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 150.00000000000000 700.00000000000000 750.00000000000000 1400.0000000000000 1650.0000000000000 4000.0000000000000 u = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 v = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 ug = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 vg = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 theta = 295.75000000000000 295.75000000000000 295.75000000000000 296.12500000000000 297.75000000000000 306.75000000000000 314.97500000000002 rt = 1.2999999999999999E-002 1.2500000000000001E-002 1.2500000000000001E-002 1.1500000000000000E-002 1.0250000000000000E-002 4.4999999999999997E-003 4.4999999999999997E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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iteration: 449 / 480 -- time = 26940.0 / 28800.0 iteration: 450 / 480 -- time = 27000.0 / 28800.0 iteration: 451 / 480 -- time = 27060.0 / 28800.0 iteration: 452 / 480 -- time = 27120.0 / 28800.0 iteration: 453 / 480 -- time = 27180.0 / 28800.0 iteration: 454 / 480 -- time = 27240.0 / 28800.0 iteration: 455 / 480 -- time = 27300.0 / 28800.0 iteration: 456 / 480 -- time = 27360.0 / 28800.0 iteration: 457 / 480 -- time = 27420.0 / 28800.0 iteration: 458 / 480 -- time = 27480.0 / 28800.0 iteration: 459 / 480 -- time = 27540.0 / 28800.0 iteration: 460 / 480 -- time = 27600.0 / 28800.0 iteration: 461 / 480 -- time = 27660.0 / 28800.0 iteration: 462 / 480 -- time = 27720.0 / 28800.0 iteration: 463 / 480 -- time = 27780.0 / 28800.0 iteration: 464 / 480 -- time = 27840.0 / 28800.0 iteration: 465 / 480 -- time = 27900.0 / 28800.0 iteration: 466 / 480 -- time = 27960.0 / 28800.0 iteration: 467 / 480 -- time = 28020.0 / 28800.0 iteration: 468 / 480 -- time = 28080.0 / 28800.0 iteration: 469 / 480 -- time = 28140.0 / 28800.0 iteration: 470 / 480 -- time = 28200.0 / 28800.0 iteration: 471 / 480 -- time = 28260.0 / 28800.0 iteration: 472 / 480 -- time = 28320.0 / 28800.0 iteration: 473 / 480 -- time = 28380.0 / 28800.0 iteration: 474 / 480 -- time = 28440.0 / 28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.1532 CLUBB-TIMER time_clubb_advance = 8.1340 CLUBB-TIMER time_clubb_pdf = 0.0008 CLUBB-TIMER time_SILHS = 0.0003 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 8.7471 Program exited normally [PASS] bs4_tout600: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout600/atex_stats.nc Running bs4_tout60_window7200_21600 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60_window7200_21600 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 60 -stats_tstart 7200 -stats_tend 21600 atex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60_window7200_21600/atex_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60_window7200_21600/atex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running atex =================== 2026/06/23 17:14:09 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = atex nzmax = 150 grid_type = 1 deltaz = 20.000000000000000 20.000000000000000 20.000000000000000 20.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 3960.0000000000000 3960.0000000000000 3960.0000000000000 3960.0000000000000 zt_grid_fname = zm_grid_fname = day = 7 month = 2 year = 1969 lat_vals = 14.940600000000000 lon_vals = -35.000000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 28800.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7499999999999997E-005 3.7499999999999997E-005 3.7499999999999997E-005 3.7499999999999997E-005 fcor_y = 1.4090967921319143E-004 1.4090967921319143E-004 1.4090967921319143E-004 1.4090967921319143E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = F l_modify_bc_for_cnvg_test = F l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/atex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60_window7200_21600/ fname_prefix = atex stats_output_filename = atex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 7200.0000000000000 stats_tend = 21600.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/atex_corr_array_cloud.in and/or ../input/case_setups/atex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 74.000000000000000 F1 = 0.0000000000000000 kappa = 130.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: atex_sounding.in File exists? T Path to sclr_sounding: atex_sclr_sounding.in File exists? T Path to edsclr_sounding: atex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 150.00000000000000 700.00000000000000 750.00000000000000 1400.0000000000000 1650.0000000000000 4000.0000000000000 u = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 v = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 ug = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 vg = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 theta = 295.75000000000000 295.75000000000000 295.75000000000000 296.12500000000000 297.75000000000000 306.75000000000000 314.97500000000002 rt = 1.2999999999999999E-002 1.2500000000000001E-002 1.2500000000000001E-002 1.1500000000000000E-002 1.0250000000000000E-002 4.4999999999999997E-003 4.4999999999999997E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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iteration: 449 / 480 -- time = 26940.0 / 28800.0 iteration: 450 / 480 -- time = 27000.0 / 28800.0 iteration: 451 / 480 -- time = 27060.0 / 28800.0 iteration: 452 / 480 -- time = 27120.0 / 28800.0 iteration: 453 / 480 -- time = 27180.0 / 28800.0 iteration: 454 / 480 -- time = 27240.0 / 28800.0 iteration: 455 / 480 -- time = 27300.0 / 28800.0 iteration: 456 / 480 -- time = 27360.0 / 28800.0 iteration: 457 / 480 -- time = 27420.0 / 28800.0 iteration: 458 / 480 -- time = 27480.0 / 28800.0 iteration: 459 / 480 -- time = 27540.0 / 28800.0 iteration: 460 / 480 -- time = 27600.0 / 28800.0 iteration: 461 / 480 -- time = 27660.0 / 28800.0 iteration: 462 / 480 -- time = 27720.0 / 28800.0 iteration: 463 / 480 -- time = 27780.0 / 28800.0 iteration: 464 / 480 -- time = 27840.0 / 28800.0 iteration: 465 / 480 -- time = 27900.0 / 28800.0 iteration: 466 / 480 -- time = 27960.0 / 28800.0 iteration: 467 / 480 -- time = 28020.0 / 28800.0 iteration: 468 / 480 -- time = 28080.0 / 28800.0 iteration: 469 / 480 -- time = 28140.0 / 28800.0 iteration: 470 / 480 -- time = 28200.0 / 28800.0 iteration: 471 / 480 -- time = 28260.0 / 28800.0 iteration: 472 / 480 -- time = 28320.0 / 28800.0 iteration: 473 / 480 -- time = 28380.0 / 28800.0 iteration: 474 / 480 -- time = 28440.0 / 28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.3867 CLUBB-TIMER time_clubb_advance = 6.6127 CLUBB-TIMER time_clubb_pdf = 0.0008 CLUBB-TIMER time_SILHS = 0.0003 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 8.9063 Program exited normally [PASS] bs4_tout60_window7200_21600: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout60_window7200_21600/atex_stats.nc Running bs4_tout300_window7200_21600 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300_window7200_21600 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 300 -stats_tstart 7200 -stats_tend 21600 atex Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300_window7200_21600/atex_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300_window7200_21600/atex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running atex =================== 2026/06/23 17:14:19 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = atex nzmax = 150 grid_type = 1 deltaz = 20.000000000000000 20.000000000000000 20.000000000000000 20.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 3960.0000000000000 3960.0000000000000 3960.0000000000000 3960.0000000000000 zt_grid_fname = zm_grid_fname = day = 7 month = 2 year = 1969 lat_vals = 14.940600000000000 lon_vals = -35.000000000000000 sfc_elevation = 0.0000000000000000 time_initial = 0.0000000000000000 time_final = 28800.000000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 101500.00000000000 101500.00000000000 101500.00000000000 101500.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = 3.7499999999999997E-005 3.7499999999999997E-005 3.7499999999999997E-005 3.7499999999999997E-005 fcor_y = 1.4090967921319143E-004 1.4090967921319143E-004 1.4090967921319143E-004 1.4090967921319143E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = F l_modify_bc_for_cnvg_test = F l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/atex time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300_window7200_21600/ fname_prefix = atex stats_output_filename = atex_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 300.00000000000000 stats_tstart = 7200.0000000000000 stats_tend = 21600.000000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/atex_corr_array_cloud.in and/or ../input/case_setups/atex_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = simplified sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 74.000000000000000 F1 = 0.0000000000000000 kappa = 130.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = T l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: atex_sounding.in File exists? T Path to sclr_sounding: atex_sclr_sounding.in File exists? T Path to edsclr_sounding: atex_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 150.00000000000000 700.00000000000000 750.00000000000000 1400.0000000000000 1650.0000000000000 4000.0000000000000 u = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 v = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 ug = -11.000000000000000 -10.550000000000001 -8.9000000000000004 -8.7500000000000000 -6.7999999999999998 -5.7500000000000000 1.0000000000000000 vg = -2.0000000000000000 -1.8999999999999999 -1.1000000000000001 -1.0000000000000000 -0.14000000000000001 0.17999999999999999 2.7500000000000000 theta = 295.75000000000000 295.75000000000000 295.75000000000000 296.12500000000000 297.75000000000000 306.75000000000000 314.97500000000002 rt = 1.2999999999999999E-002 1.2500000000000001E-002 1.2500000000000001E-002 1.1500000000000000E-002 1.0250000000000000E-002 4.4999999999999997E-003 4.4999999999999997E-003 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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-- time = 28140.0 / 28800.0 iteration: 470 / 480 -- time = 28200.0 / 28800.0 iteration: 471 / 480 -- time = 28260.0 / 28800.0 iteration: 472 / 480 -- time = 28320.0 / 28800.0 iteration: 473 / 480 -- time = 28380.0 / 28800.0 iteration: 474 / 480 -- time = 28440.0 / 28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.1500 CLUBB-TIMER time_clubb_advance = 6.6368 CLUBB-TIMER time_clubb_pdf = 0.0006 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 7.2147 Program exited normally [PASS] bs4_tout300_window7200_21600: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/atex/bs4_tout300_window7200_21600/atex_stats.nc ======================== Batch-Size Checks ======================== [PASS] bs2_tout60_vs_bs4_tout60: checked 800 variables exactly [PASS] bs1_tout60_vs_bs4_tout60: checked 800 variables exactly ======================== Tout Averaging Checks ======================== [PASS] bs4_tout300_manual_average_vs_bs4_tout60: checked 791 time-dependent variables, max_abs=2.980232e-08, max_rel=3.000000e+00 [PASS] bs4_tout600_manual_average_vs_bs4_tout60: checked 791 time-dependent variables, max_abs=4.470348e-08, max_rel=1.694066e+08 ======================== Windowing Checks ======================== [PASS] bs4_tout60_window7200_21600_selected_window_vs_bs4_tout60: checked 800 variables against window (7200, 21600) [PASS] bs4_tout300_window7200_21600_manual_average_vs_bs4_tout60: checked 791 time-dependent variables, max_abs=2.980232e-08, max_rel=1.000000e+00 ======================== Summary ======================== All stats consistency checks passed. [Pipeline] sh + python run_scripts/run_stats_output_consistency.py -stats input/stats/standard_stats.in wangara ======================== Test Setup ======================== Case: wangara Stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in Multicol spec: C8/0.2:0.8/4 Reference batch size: 4 Batch sizes checked: 2, 1 Fine tout: 60 Coarse touts: 300, 600 Window checks stats_tstart/stats_tend: 90000, 104400 Output root: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara Planned runs: - bs4_tout60: batch_size=4, tout=60, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60 - bs2_tout60: batch_size=2, tout=60, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs2_tout60 - bs1_tout60: batch_size=1, tout=60, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs1_tout60 - bs4_tout300: batch_size=4, tout=300, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300 - bs4_tout600: batch_size=4, tout=600, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout600 - bs4_tout60_window90000_104400: batch_size=4, tout=60, stats_tstart=90000, stats_tend=104400, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60_window90000_104400 - bs4_tout300_window90000_104400: batch_size=4, tout=300, stats_tstart=90000, stats_tend=104400, output_dir=/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300_window90000_104400 ======================== Run Phase ======================== Running bs4_tout60 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 60 wangara Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60/wangara_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60/wangara.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running wangara =================== 2026/06/23 17:30:31 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = wangara nzmax = 50 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 2300.0000000000000 2300.0000000000000 2300.0000000000000 2300.0000000000000 zt_grid_fname = zm_grid_fname = day = 15 month = 8 year = 1967 lat_vals = -34.600000000000001 lon_vals = 145.07222200000001 sfc_elevation = 0.0000000000000000 time_initial = 82800.000000000000 time_final = 111600.00000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 102300.00000000000 102300.00000000000 102300.00000000000 102300.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = -8.2100000000000003E-005 -8.2100000000000003E-005 -8.2100000000000003E-005 -8.2100000000000003E-005 fcor_y = 1.2004620798053302E-004 1.2004620798053302E-004 1.2004620798053302E-004 1.2004620798053302E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/wangara time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60/ fname_prefix = wangara stats_output_filename = wangara_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 82800.000000000000 stats_tend = 111600.00000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/wangara_corr_array_cloud.in and/or ../input/case_setups/wangara_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = none sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = F l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: wangara_sounding.in File exists? T Path to sclr_sounding: wangara_sclr_sounding.in File exists? T Path to edsclr_sounding: wangara_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 50.000000000000000 100.00000000000000 150.00000000000000 200.00000000000000 250.00000000000000 300.00000000000000 350.00000000000000 400.00000000000000 500.00000000000000 550.00000000000000 600.00000000000000 700.00000000000000 750.00000000000000 800.00000000000000 850.00000000000000 900.00000000000000 950.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2100.0000000000000 2200.0000000000000 2300.0000000000000 u = 0.0000000000000000 -2.8399999999999999 -2.9199999999999999 -2.8999999999999999 -2.7900000000000000 -2.7900000000000000 -3.1200000000000001 -3.3900000000000001 -3.0900000000000003 -2.4900000000000002 -2.6600000000000001 -2.5833333333333335 -2.4300000000000002 -2.4199999999999999 -2.4500000000000002 -2.4100000000000001 -2.2799999999999998 -2.2900000000000000 -2.5499999999999998 -2.2900000000000000 -1.9299999999999999 -2.1000000000000001 -1.4500000000000000 -1.2000000000000000 -1.1899999999999999 -1.4900000000000000 -0.69999999999999996 5.0000000000000044E-002 0.50000000000000000 0.50000000000000000 0.50000000000000000 0.50000000000000000 v = 0.0000000000000000 2.9999999999999999E-002 -0.38000000000000000 -0.62000000000000000 -0.56999999999999995 -0.51000000000000001 -0.51000000000000001 -0.53000000000000003 -0.47666666666666668 -0.37000000000000000 -0.29999999999999999 -0.31666666666666665 -0.34999999999999998 -0.44000000000000000 -0.47999999999999998 -0.62000000000000000 -0.76000000000000001 -0.91000000000000003 -1.1599999999999999 -1.4099999999999999 -0.90000000000000002 -0.28000000000000003 7.0000000000000007E-002 8.9999999999999997E-002 0.26000000000000001 1.1499999999999999 1.7200000000000000 1.4700000000000000 1.1000000000000001 1.1000000000000001 1.1000000000000001 1.1000000000000001 ug = -5.5000000000000000 -5.3600000000000003 -5.2100000000000000 -5.0700000000000003 -4.9199999999999999 -4.7800000000000002 -4.6299999999999999 -4.4900000000000002 -4.3433333333333337 -4.0499999999999998 -3.8999999999999999 -3.7566666666666668 -3.4700000000000002 -3.3199999999999998 -3.1800000000000002 -3.0299999999999998 -2.8900000000000001 -2.7400000000000002 -2.6000000000000001 -2.4600000000000000 -2.3199999999999998 -2.1800000000000002 -2.0400000000000000 -1.8999999999999999 -1.7600000000000000 -1.6200000000000001 -1.4800000000000000 -1.3400000000000001 -1.2000000000000000 -1.2000000000000000 -1.2000000000000000 -1.2000000000000000 vg = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 276.85000000000002 276.91000000000003 277.68000000000001 279.82999999999998 280.81000000000000 281.39999999999998 281.68000000000001 281.97000000000003 281.97000000000003 281.97000000000003 281.97000000000003 281.97333333333336 281.98000000000002 282.29000000000002 282.62000000000000 282.83999999999997 283.06000000000000 283.19000000000000 283.62000000000000 284.72000000000003 285.42000000000002 285.92000000000002 287.17000000000002 288.33999999999997 288.88999999999999 289.56000000000000 290.56999999999999 290.94999999999999 291.01999999999998 291.08999999999997 291.16000000000003 291.23000000000002 rt = 4.1999999999999997E-003 3.7000000000000002E-003 3.5000000000000001E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.7000000000000002E-003 3.5999999999999999E-003 3.5000000000000001E-003 3.3000000000000000E-003 3.2000000000000002E-003 3.0999999999999999E-003 2.8999999999999998E-003 2.7000000000000001E-003 2.5000000000000001E-003 2.3000000000000000E-003 2.2000000000000001E-003 2.0999999999999999E-003 2.0000000000000000E-003 1.8000000000000000E-003 1.5000000000000000E-003 1.1999999999999999E-003 8.0000000000000004E-004 1.0000000000000000E-003 8.0000000000000004E-004 6.9999999999999999E-004 6.9999999999999999E-004 6.9999999999999999E-004 5.9999999999999995E-004 5.0000000000000001E-004 5.0000000000000001E-004 4.0000000000000002E-004 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 480 -- time = 82860.0 / 111600.0 iteration: 2 / 480 -- time = 82920.0 / 111600.0 iteration: 3 / 480 -- time = 82980.0 / 111600.0 iteration: 4 / 480 -- time = 83040.0 / 111600.0 iteration: 5 / 480 -- time = 83100.0 / 111600.0 iteration: 6 / 480 -- time = 83160.0 / 111600.0 iteration: 7 / 480 -- time = 83220.0 / 111600.0 iteration: 8 / 480 -- time = 83280.0 / 111600.0 iteration: 9 / 480 -- time = 83340.0 / 111600.0 iteration: 10 / 480 -- time = 83400.0 / 111600.0 iteration: 11 / 480 -- time = 83460.0 / 111600.0 iteration: 12 / 480 -- time = 83520.0 / 111600.0 iteration: 13 / 480 -- time = 83580.0 / 111600.0 iteration: 14 / 480 -- time = 83640.0 / 111600.0 iteration: 15 / 480 -- time = 83700.0 / 111600.0 iteration: 16 / 480 -- time = 83760.0 / 111600.0 iteration: 17 / 480 -- time = 83820.0 / 111600.0 iteration: 18 / 480 -- time = 83880.0 / 111600.0 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iteration: 457 / 480 -- time = 110220.0 / 111600.0 iteration: 458 / 480 -- time = 110280.0 / 111600.0 iteration: 459 / 480 -- time = 110340.0 / 111600.0 iteration: 460 / 480 -- time = 110400.0 / 111600.0 iteration: 461 / 480 -- time = 110460.0 / 111600.0 iteration: 462 / 480 -- time = 110520.0 / 111600.0 iteration: 463 / 480 -- time = 110580.0 / 111600.0 iteration: 464 / 480 -- time = 110640.0 / 111600.0 iteration: 465 / 480 -- time = 110700.0 / 111600.0 iteration: 466 / 480 -- time = 110760.0 / 111600.0 iteration: 467 / 480 -- time = 110820.0 / 111600.0 iteration: 468 / 480 -- time = 110880.0 / 111600.0 iteration: 469 / 480 -- time = 110940.0 / 111600.0 iteration: 470 / 480 -- time = 111000.0 / 111600.0 iteration: 471 / 480 -- time = 111060.0 / 111600.0 iteration: 472 / 480 -- time = 111120.0 / 111600.0 iteration: 473 / 480 -- time = 111180.0 / 111600.0 iteration: 474 / 480 -- time = 111240.0 / 111600.0 iteration: 475 / 480 -- time = 111300.0 / 111600.0 iteration: 476 / 480 -- time = 111360.0 / 111600.0 iteration: 477 / 480 -- time = 111420.0 / 111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.2103 CLUBB-TIMER time_clubb_advance = 3.6155 CLUBB-TIMER time_clubb_pdf = 0.0007 CLUBB-TIMER time_SILHS = 0.0003 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 5.1214 Program exited normally [PASS] bs4_tout60: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60/wangara_stats.nc Running bs2_tout60 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs2_tout60 -multicol C8/0.2:0.8/4 -batch_size 2 -tout 60 wangara Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs2_tout60/wangara_multicol_params.in': - ngrdcol = 4 - batch_size = 2 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs2_tout60/wangara.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running wangara =================== 2026/06/23 17:30:37 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = wangara nzmax = 50 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 zm_top = 2300.0000000000000 2300.0000000000000 zt_grid_fname = zm_grid_fname = day = 15 month = 8 year = 1967 lat_vals = -34.600000000000001 lon_vals = 145.07222200000001 sfc_elevation = 0.0000000000000000 time_initial = 82800.000000000000 time_final = 111600.00000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 p_sfc = 102300.00000000000 102300.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = -8.2100000000000003E-005 -8.2100000000000003E-005 fcor_y = 1.2004620798053302E-004 1.2004620798053302E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/wangara time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs2_tout60/ fname_prefix = wangara stats_output_filename = wangara_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 82800.000000000000 stats_tend = 111600.00000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/wangara_corr_array_cloud.in and/or ../input/case_setups/wangara_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = none sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = F l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: wangara_sounding.in File exists? T Path to sclr_sounding: wangara_sclr_sounding.in File exists? T Path to edsclr_sounding: wangara_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 50.000000000000000 100.00000000000000 150.00000000000000 200.00000000000000 250.00000000000000 300.00000000000000 350.00000000000000 400.00000000000000 500.00000000000000 550.00000000000000 600.00000000000000 700.00000000000000 750.00000000000000 800.00000000000000 850.00000000000000 900.00000000000000 950.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2100.0000000000000 2200.0000000000000 2300.0000000000000 u = 0.0000000000000000 -2.8399999999999999 -2.9199999999999999 -2.8999999999999999 -2.7900000000000000 -2.7900000000000000 -3.1200000000000001 -3.3900000000000001 -3.0900000000000003 -2.4900000000000002 -2.6600000000000001 -2.5833333333333335 -2.4300000000000002 -2.4199999999999999 -2.4500000000000002 -2.4100000000000001 -2.2799999999999998 -2.2900000000000000 -2.5499999999999998 -2.2900000000000000 -1.9299999999999999 -2.1000000000000001 -1.4500000000000000 -1.2000000000000000 -1.1899999999999999 -1.4900000000000000 -0.69999999999999996 5.0000000000000044E-002 0.50000000000000000 0.50000000000000000 0.50000000000000000 0.50000000000000000 v = 0.0000000000000000 2.9999999999999999E-002 -0.38000000000000000 -0.62000000000000000 -0.56999999999999995 -0.51000000000000001 -0.51000000000000001 -0.53000000000000003 -0.47666666666666668 -0.37000000000000000 -0.29999999999999999 -0.31666666666666665 -0.34999999999999998 -0.44000000000000000 -0.47999999999999998 -0.62000000000000000 -0.76000000000000001 -0.91000000000000003 -1.1599999999999999 -1.4099999999999999 -0.90000000000000002 -0.28000000000000003 7.0000000000000007E-002 8.9999999999999997E-002 0.26000000000000001 1.1499999999999999 1.7200000000000000 1.4700000000000000 1.1000000000000001 1.1000000000000001 1.1000000000000001 1.1000000000000001 ug = -5.5000000000000000 -5.3600000000000003 -5.2100000000000000 -5.0700000000000003 -4.9199999999999999 -4.7800000000000002 -4.6299999999999999 -4.4900000000000002 -4.3433333333333337 -4.0499999999999998 -3.8999999999999999 -3.7566666666666668 -3.4700000000000002 -3.3199999999999998 -3.1800000000000002 -3.0299999999999998 -2.8900000000000001 -2.7400000000000002 -2.6000000000000001 -2.4600000000000000 -2.3199999999999998 -2.1800000000000002 -2.0400000000000000 -1.8999999999999999 -1.7600000000000000 -1.6200000000000001 -1.4800000000000000 -1.3400000000000001 -1.2000000000000000 -1.2000000000000000 -1.2000000000000000 -1.2000000000000000 vg = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 276.85000000000002 276.91000000000003 277.68000000000001 279.82999999999998 280.81000000000000 281.39999999999998 281.68000000000001 281.97000000000003 281.97000000000003 281.97000000000003 281.97000000000003 281.97333333333336 281.98000000000002 282.29000000000002 282.62000000000000 282.83999999999997 283.06000000000000 283.19000000000000 283.62000000000000 284.72000000000003 285.42000000000002 285.92000000000002 287.17000000000002 288.33999999999997 288.88999999999999 289.56000000000000 290.56999999999999 290.94999999999999 291.01999999999998 291.08999999999997 291.16000000000003 291.23000000000002 rt = 4.1999999999999997E-003 3.7000000000000002E-003 3.5000000000000001E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.7000000000000002E-003 3.5999999999999999E-003 3.5000000000000001E-003 3.3000000000000000E-003 3.2000000000000002E-003 3.0999999999999999E-003 2.8999999999999998E-003 2.7000000000000001E-003 2.5000000000000001E-003 2.3000000000000000E-003 2.2000000000000001E-003 2.0999999999999999E-003 2.0000000000000000E-003 1.8000000000000000E-003 1.5000000000000000E-003 1.1999999999999999E-003 8.0000000000000004E-004 1.0000000000000000E-003 8.0000000000000004E-004 6.9999999999999999E-004 6.9999999999999999E-004 6.9999999999999999E-004 5.9999999999999995E-004 5.0000000000000001E-004 5.0000000000000001E-004 4.0000000000000002E-004 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 480 -- time = 82860.0 / 111600.0 iteration: 2 / 480 -- time = 82920.0 / 111600.0 iteration: 3 / 480 -- time = 82980.0 / 111600.0 iteration: 4 / 480 -- time = 83040.0 / 111600.0 iteration: 5 / 480 -- time = 83100.0 / 111600.0 iteration: 6 / 480 -- time = 83160.0 / 111600.0 iteration: 7 / 480 -- time = 83220.0 / 111600.0 iteration: 8 / 480 -- time = 83280.0 / 111600.0 iteration: 9 / 480 -- time = 83340.0 / 111600.0 iteration: 10 / 480 -- time = 83400.0 / 111600.0 iteration: 11 / 480 -- time = 83460.0 / 111600.0 iteration: 12 / 480 -- time = 83520.0 / 111600.0 iteration: 13 / 480 -- time = 83580.0 / 111600.0 iteration: 14 / 480 -- time = 83640.0 / 111600.0 iteration: 15 / 480 -- time = 83700.0 / 111600.0 iteration: 16 / 480 -- time = 83760.0 / 111600.0 iteration: 17 / 480 -- time = 83820.0 / 111600.0 iteration: 18 / 480 -- time = 83880.0 / 111600.0 iteration: 19 / 480 -- time = 83940.0 / 111600.0 iteration: 20 / 480 -- time = 84000.0 / 111600.0 iteration: 21 / 480 -- time = 84060.0 / 111600.0 iteration: 22 / 480 -- time = 84120.0 / 111600.0 iteration: 23 / 480 -- time = 84180.0 / 111600.0 iteration: 24 / 480 -- time = 84240.0 / 111600.0 iteration: 25 / 480 -- time = 84300.0 / 111600.0 iteration: 26 / 480 -- time = 84360.0 / 111600.0 iteration: 27 / 480 -- time = 84420.0 / 111600.0 iteration: 28 / 480 -- time = 84480.0 / 111600.0 iteration: 29 / 480 -- time = 84540.0 / 111600.0 iteration: 30 / 480 -- time = 84600.0 / 111600.0 iteration: 31 / 480 -- time = 84660.0 / 111600.0 iteration: 32 / 480 -- time = 84720.0 / 111600.0 iteration: 33 / 480 -- time = 84780.0 / 111600.0 iteration: 34 / 480 -- time = 84840.0 / 111600.0 iteration: 35 / 480 -- time = 84900.0 / 111600.0 iteration: 36 / 480 -- time = 84960.0 / 111600.0 iteration: 37 / 480 -- time = 85020.0 / 111600.0 iteration: 38 / 480 -- time = 85080.0 / 111600.0 iteration: 39 / 480 -- time = 85140.0 / 111600.0 iteration: 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iteration: 81 / 480 -- time = 87660.0 / 111600.0 iteration: 82 / 480 -- time = 87720.0 / 111600.0 iteration: 83 / 480 -- time = 87780.0 / 111600.0 iteration: 84 / 480 -- time = 87840.0 / 111600.0 iteration: 85 / 480 -- time = 87900.0 / 111600.0 iteration: 86 / 480 -- time = 87960.0 / 111600.0 iteration: 87 / 480 -- time = 88020.0 / 111600.0 iteration: 88 / 480 -- time = 88080.0 / 111600.0 iteration: 89 / 480 -- time = 88140.0 / 111600.0 iteration: 90 / 480 -- time = 88200.0 / 111600.0 iteration: 91 / 480 -- time = 88260.0 / 111600.0 iteration: 92 / 480 -- time = 88320.0 / 111600.0 iteration: 93 / 480 -- time = 88380.0 / 111600.0 iteration: 94 / 480 -- time = 88440.0 / 111600.0 iteration: 95 / 480 -- time = 88500.0 / 111600.0 iteration: 96 / 480 -- time = 88560.0 / 111600.0 iteration: 97 / 480 -- time = 88620.0 / 111600.0 iteration: 98 / 480 -- time = 88680.0 / 111600.0 iteration: 99 / 480 -- time = 88740.0 / 111600.0 iteration: 100 / 480 -- time = 88800.0 / 111600.0 iteration: 101 / 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-- time = 111420.0 / 111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.1310 CLUBB-TIMER time_clubb_advance = 2.5823 CLUBB-TIMER time_clubb_pdf = 0.0006 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 4.3503 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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-- time = 111420.0 / 111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.1314 CLUBB-TIMER time_clubb_advance = 2.5626 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.6604 Program exited normally [PASS] bs2_tout60: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs2_tout60/wangara_stats.nc Running bs1_tout60 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs1_tout60 -multicol C8/0.2:0.8/4 -batch_size 1 -tout 60 wangara Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs1_tout60/wangara_multicol_params.in': - ngrdcol = 4 - batch_size = 1 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs1_tout60/wangara.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running wangara =================== 2026/06/23 17:30:46 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = wangara nzmax = 50 grid_type = 1 deltaz = 40.000000000000000 zm_init = 0.0000000000000000 zm_top = 2300.0000000000000 zt_grid_fname = zm_grid_fname = day = 15 month = 8 year = 1967 lat_vals = -34.600000000000001 lon_vals = 145.07222200000001 sfc_elevation = 0.0000000000000000 time_initial = 82800.000000000000 time_final = 111600.00000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 p_sfc = 102300.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = -8.2100000000000003E-005 fcor_y = 1.2004620798053302E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/wangara time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs1_tout60/ fname_prefix = wangara stats_output_filename = wangara_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 82800.000000000000 stats_tend = 111600.00000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/wangara_corr_array_cloud.in and/or ../input/case_setups/wangara_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = none sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = F l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: wangara_sounding.in File exists? T Path to sclr_sounding: wangara_sclr_sounding.in File exists? T Path to edsclr_sounding: wangara_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 50.000000000000000 100.00000000000000 150.00000000000000 200.00000000000000 250.00000000000000 300.00000000000000 350.00000000000000 400.00000000000000 500.00000000000000 550.00000000000000 600.00000000000000 700.00000000000000 750.00000000000000 800.00000000000000 850.00000000000000 900.00000000000000 950.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2100.0000000000000 2200.0000000000000 2300.0000000000000 u = 0.0000000000000000 -2.8399999999999999 -2.9199999999999999 -2.8999999999999999 -2.7900000000000000 -2.7900000000000000 -3.1200000000000001 -3.3900000000000001 -3.0900000000000003 -2.4900000000000002 -2.6600000000000001 -2.5833333333333335 -2.4300000000000002 -2.4199999999999999 -2.4500000000000002 -2.4100000000000001 -2.2799999999999998 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0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 276.85000000000002 276.91000000000003 277.68000000000001 279.82999999999998 280.81000000000000 281.39999999999998 281.68000000000001 281.97000000000003 281.97000000000003 281.97000000000003 281.97000000000003 281.97333333333336 281.98000000000002 282.29000000000002 282.62000000000000 282.83999999999997 283.06000000000000 283.19000000000000 283.62000000000000 284.72000000000003 285.42000000000002 285.92000000000002 287.17000000000002 288.33999999999997 288.88999999999999 289.56000000000000 290.56999999999999 290.94999999999999 291.01999999999998 291.08999999999997 291.16000000000003 291.23000000000002 rt = 4.1999999999999997E-003 3.7000000000000002E-003 3.5000000000000001E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.7000000000000002E-003 3.5999999999999999E-003 3.5000000000000001E-003 3.3000000000000000E-003 3.2000000000000002E-003 3.0999999999999999E-003 2.8999999999999998E-003 2.7000000000000001E-003 2.5000000000000001E-003 2.3000000000000000E-003 2.2000000000000001E-003 2.0999999999999999E-003 2.0000000000000000E-003 1.8000000000000000E-003 1.5000000000000000E-003 1.1999999999999999E-003 8.0000000000000004E-004 1.0000000000000000E-003 8.0000000000000004E-004 6.9999999999999999E-004 6.9999999999999999E-004 6.9999999999999999E-004 5.9999999999999995E-004 5.0000000000000001E-004 5.0000000000000001E-004 4.0000000000000002E-004 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.1002 CLUBB-TIMER time_clubb_advance = 2.1204 CLUBB-TIMER time_clubb_pdf = 0.0007 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.8634 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.0997 CLUBB-TIMER time_clubb_advance = 2.0896 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.1259 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.0962 CLUBB-TIMER time_clubb_advance = 2.0667 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.0853 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.0947 CLUBB-TIMER time_clubb_advance = 2.0103 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.0055 Program exited normally [PASS] bs1_tout60: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs1_tout60/wangara_stats.nc Running bs4_tout300 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 300 wangara Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300/wangara_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300/wangara.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running wangara =================== 2026/06/23 17:31:00 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = wangara nzmax = 50 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 2300.0000000000000 2300.0000000000000 2300.0000000000000 2300.0000000000000 zt_grid_fname = zm_grid_fname = day = 15 month = 8 year = 1967 lat_vals = -34.600000000000001 lon_vals = 145.07222200000001 sfc_elevation = 0.0000000000000000 time_initial = 82800.000000000000 time_final = 111600.00000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 102300.00000000000 102300.00000000000 102300.00000000000 102300.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = -8.2100000000000003E-005 -8.2100000000000003E-005 -8.2100000000000003E-005 -8.2100000000000003E-005 fcor_y = 1.2004620798053302E-004 1.2004620798053302E-004 1.2004620798053302E-004 1.2004620798053302E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/wangara time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300/ fname_prefix = wangara stats_output_filename = wangara_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 300.00000000000000 stats_tstart = 82800.000000000000 stats_tend = 111600.00000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/wangara_corr_array_cloud.in and/or ../input/case_setups/wangara_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = none sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = F l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: wangara_sounding.in File exists? T Path to sclr_sounding: wangara_sclr_sounding.in File exists? T Path to edsclr_sounding: wangara_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 50.000000000000000 100.00000000000000 150.00000000000000 200.00000000000000 250.00000000000000 300.00000000000000 350.00000000000000 400.00000000000000 500.00000000000000 550.00000000000000 600.00000000000000 700.00000000000000 750.00000000000000 800.00000000000000 850.00000000000000 900.00000000000000 950.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2100.0000000000000 2200.0000000000000 2300.0000000000000 u = 0.0000000000000000 -2.8399999999999999 -2.9199999999999999 -2.8999999999999999 -2.7900000000000000 -2.7900000000000000 -3.1200000000000001 -3.3900000000000001 -3.0900000000000003 -2.4900000000000002 -2.6600000000000001 -2.5833333333333335 -2.4300000000000002 -2.4199999999999999 -2.4500000000000002 -2.4100000000000001 -2.2799999999999998 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0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 276.85000000000002 276.91000000000003 277.68000000000001 279.82999999999998 280.81000000000000 281.39999999999998 281.68000000000001 281.97000000000003 281.97000000000003 281.97000000000003 281.97000000000003 281.97333333333336 281.98000000000002 282.29000000000002 282.62000000000000 282.83999999999997 283.06000000000000 283.19000000000000 283.62000000000000 284.72000000000003 285.42000000000002 285.92000000000002 287.17000000000002 288.33999999999997 288.88999999999999 289.56000000000000 290.56999999999999 290.94999999999999 291.01999999999998 291.08999999999997 291.16000000000003 291.23000000000002 rt = 4.1999999999999997E-003 3.7000000000000002E-003 3.5000000000000001E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.7000000000000002E-003 3.5999999999999999E-003 3.5000000000000001E-003 3.3000000000000000E-003 3.2000000000000002E-003 3.0999999999999999E-003 2.8999999999999998E-003 2.7000000000000001E-003 2.5000000000000001E-003 2.3000000000000000E-003 2.2000000000000001E-003 2.0999999999999999E-003 2.0000000000000000E-003 1.8000000000000000E-003 1.5000000000000000E-003 1.1999999999999999E-003 8.0000000000000004E-004 1.0000000000000000E-003 8.0000000000000004E-004 6.9999999999999999E-004 6.9999999999999999E-004 6.9999999999999999E-004 5.9999999999999995E-004 5.0000000000000001E-004 5.0000000000000001E-004 4.0000000000000002E-004 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. 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iteration: 457 / 480 -- time = 110220.0 / 111600.0 iteration: 458 / 480 -- time = 110280.0 / 111600.0 iteration: 459 / 480 -- time = 110340.0 / 111600.0 iteration: 460 / 480 -- time = 110400.0 / 111600.0 iteration: 461 / 480 -- time = 110460.0 / 111600.0 iteration: 462 / 480 -- time = 110520.0 / 111600.0 iteration: 463 / 480 -- time = 110580.0 / 111600.0 iteration: 464 / 480 -- time = 110640.0 / 111600.0 iteration: 465 / 480 -- time = 110700.0 / 111600.0 iteration: 466 / 480 -- time = 110760.0 / 111600.0 iteration: 467 / 480 -- time = 110820.0 / 111600.0 iteration: 468 / 480 -- time = 110880.0 / 111600.0 iteration: 469 / 480 -- time = 110940.0 / 111600.0 iteration: 470 / 480 -- time = 111000.0 / 111600.0 iteration: 471 / 480 -- time = 111060.0 / 111600.0 iteration: 472 / 480 -- time = 111120.0 / 111600.0 iteration: 473 / 480 -- time = 111180.0 / 111600.0 iteration: 474 / 480 -- time = 111240.0 / 111600.0 iteration: 475 / 480 -- time = 111300.0 / 111600.0 iteration: 476 / 480 -- time = 111360.0 / 111600.0 iteration: 477 / 480 -- time = 111420.0 / 111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.0701 CLUBB-TIMER time_clubb_advance = 3.4760 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.8214 Program exited normally [PASS] bs4_tout300: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300/wangara_stats.nc Running bs4_tout600 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout600 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 600 wangara Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout600/wangara_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout600/wangara.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running wangara =================== 2026/06/23 17:31:05 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = wangara nzmax = 50 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 2300.0000000000000 2300.0000000000000 2300.0000000000000 2300.0000000000000 zt_grid_fname = zm_grid_fname = day = 15 month = 8 year = 1967 lat_vals = -34.600000000000001 lon_vals = 145.07222200000001 sfc_elevation = 0.0000000000000000 time_initial = 82800.000000000000 time_final = 111600.00000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 102300.00000000000 102300.00000000000 102300.00000000000 102300.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = -8.2100000000000003E-005 -8.2100000000000003E-005 -8.2100000000000003E-005 -8.2100000000000003E-005 fcor_y = 1.2004620798053302E-004 1.2004620798053302E-004 1.2004620798053302E-004 1.2004620798053302E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/wangara time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout600/ fname_prefix = wangara stats_output_filename = wangara_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 600.00000000000000 stats_tstart = 82800.000000000000 stats_tend = 111600.00000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/wangara_corr_array_cloud.in and/or ../input/case_setups/wangara_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = none sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = F l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: wangara_sounding.in File exists? T Path to sclr_sounding: wangara_sclr_sounding.in File exists? T Path to edsclr_sounding: wangara_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 50.000000000000000 100.00000000000000 150.00000000000000 200.00000000000000 250.00000000000000 300.00000000000000 350.00000000000000 400.00000000000000 500.00000000000000 550.00000000000000 600.00000000000000 700.00000000000000 750.00000000000000 800.00000000000000 850.00000000000000 900.00000000000000 950.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2100.0000000000000 2200.0000000000000 2300.0000000000000 u = 0.0000000000000000 -2.8399999999999999 -2.9199999999999999 -2.8999999999999999 -2.7900000000000000 -2.7900000000000000 -3.1200000000000001 -3.3900000000000001 -3.0900000000000003 -2.4900000000000002 -2.6600000000000001 -2.5833333333333335 -2.4300000000000002 -2.4199999999999999 -2.4500000000000002 -2.4100000000000001 -2.2799999999999998 -2.2900000000000000 -2.5499999999999998 -2.2900000000000000 -1.9299999999999999 -2.1000000000000001 -1.4500000000000000 -1.2000000000000000 -1.1899999999999999 -1.4900000000000000 -0.69999999999999996 5.0000000000000044E-002 0.50000000000000000 0.50000000000000000 0.50000000000000000 0.50000000000000000 v = 0.0000000000000000 2.9999999999999999E-002 -0.38000000000000000 -0.62000000000000000 -0.56999999999999995 -0.51000000000000001 -0.51000000000000001 -0.53000000000000003 -0.47666666666666668 -0.37000000000000000 -0.29999999999999999 -0.31666666666666665 -0.34999999999999998 -0.44000000000000000 -0.47999999999999998 -0.62000000000000000 -0.76000000000000001 -0.91000000000000003 -1.1599999999999999 -1.4099999999999999 -0.90000000000000002 -0.28000000000000003 7.0000000000000007E-002 8.9999999999999997E-002 0.26000000000000001 1.1499999999999999 1.7200000000000000 1.4700000000000000 1.1000000000000001 1.1000000000000001 1.1000000000000001 1.1000000000000001 ug = -5.5000000000000000 -5.3600000000000003 -5.2100000000000000 -5.0700000000000003 -4.9199999999999999 -4.7800000000000002 -4.6299999999999999 -4.4900000000000002 -4.3433333333333337 -4.0499999999999998 -3.8999999999999999 -3.7566666666666668 -3.4700000000000002 -3.3199999999999998 -3.1800000000000002 -3.0299999999999998 -2.8900000000000001 -2.7400000000000002 -2.6000000000000001 -2.4600000000000000 -2.3199999999999998 -2.1800000000000002 -2.0400000000000000 -1.8999999999999999 -1.7600000000000000 -1.6200000000000001 -1.4800000000000000 -1.3400000000000001 -1.2000000000000000 -1.2000000000000000 -1.2000000000000000 -1.2000000000000000 vg = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 276.85000000000002 276.91000000000003 277.68000000000001 279.82999999999998 280.81000000000000 281.39999999999998 281.68000000000001 281.97000000000003 281.97000000000003 281.97000000000003 281.97000000000003 281.97333333333336 281.98000000000002 282.29000000000002 282.62000000000000 282.83999999999997 283.06000000000000 283.19000000000000 283.62000000000000 284.72000000000003 285.42000000000002 285.92000000000002 287.17000000000002 288.33999999999997 288.88999999999999 289.56000000000000 290.56999999999999 290.94999999999999 291.01999999999998 291.08999999999997 291.16000000000003 291.23000000000002 rt = 4.1999999999999997E-003 3.7000000000000002E-003 3.5000000000000001E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.7000000000000002E-003 3.5999999999999999E-003 3.5000000000000001E-003 3.3000000000000000E-003 3.2000000000000002E-003 3.0999999999999999E-003 2.8999999999999998E-003 2.7000000000000001E-003 2.5000000000000001E-003 2.3000000000000000E-003 2.2000000000000001E-003 2.0999999999999999E-003 2.0000000000000000E-003 1.8000000000000000E-003 1.5000000000000000E-003 1.1999999999999999E-003 8.0000000000000004E-004 1.0000000000000000E-003 8.0000000000000004E-004 6.9999999999999999E-004 6.9999999999999999E-004 6.9999999999999999E-004 5.9999999999999995E-004 5.0000000000000001E-004 5.0000000000000001E-004 4.0000000000000002E-004 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 480 -- time = 82860.0 / 111600.0 iteration: 2 / 480 -- time = 82920.0 / 111600.0 iteration: 3 / 480 -- time = 82980.0 / 111600.0 iteration: 4 / 480 -- time = 83040.0 / 111600.0 iteration: 5 / 480 -- time = 83100.0 / 111600.0 iteration: 6 / 480 -- time = 83160.0 / 111600.0 iteration: 7 / 480 -- time = 83220.0 / 111600.0 iteration: 8 / 480 -- time = 83280.0 / 111600.0 iteration: 9 / 480 -- time = 83340.0 / 111600.0 iteration: 10 / 480 -- time = 83400.0 / 111600.0 iteration: 11 / 480 -- time = 83460.0 / 111600.0 iteration: 12 / 480 -- time = 83520.0 / 111600.0 iteration: 13 / 480 -- time = 83580.0 / 111600.0 iteration: 14 / 480 -- time = 83640.0 / 111600.0 iteration: 15 / 480 -- time = 83700.0 / 111600.0 iteration: 16 / 480 -- time = 83760.0 / 111600.0 iteration: 17 / 480 -- time = 83820.0 / 111600.0 iteration: 18 / 480 -- time = 83880.0 / 111600.0 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iteration: 457 / 480 -- time = 110220.0 / 111600.0 iteration: 458 / 480 -- time = 110280.0 / 111600.0 iteration: 459 / 480 -- time = 110340.0 / 111600.0 iteration: 460 / 480 -- time = 110400.0 / 111600.0 iteration: 461 / 480 -- time = 110460.0 / 111600.0 iteration: 462 / 480 -- time = 110520.0 / 111600.0 iteration: 463 / 480 -- time = 110580.0 / 111600.0 iteration: 464 / 480 -- time = 110640.0 / 111600.0 iteration: 465 / 480 -- time = 110700.0 / 111600.0 iteration: 466 / 480 -- time = 110760.0 / 111600.0 iteration: 467 / 480 -- time = 110820.0 / 111600.0 iteration: 468 / 480 -- time = 110880.0 / 111600.0 iteration: 469 / 480 -- time = 110940.0 / 111600.0 iteration: 470 / 480 -- time = 111000.0 / 111600.0 iteration: 471 / 480 -- time = 111060.0 / 111600.0 iteration: 472 / 480 -- time = 111120.0 / 111600.0 iteration: 473 / 480 -- time = 111180.0 / 111600.0 iteration: 474 / 480 -- time = 111240.0 / 111600.0 iteration: 475 / 480 -- time = 111300.0 / 111600.0 iteration: 476 / 480 -- time = 111360.0 / 111600.0 iteration: 477 / 480 -- time = 111420.0 / 111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.0508 CLUBB-TIMER time_clubb_advance = 3.4140 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.6078 Program exited normally [PASS] bs4_tout600: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout600/wangara_stats.nc Running bs4_tout60_window90000_104400 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60_window90000_104400 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 60 -stats_tstart 90000 -stats_tend 104400 wangara Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60_window90000_104400/wangara_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60_window90000_104400/wangara.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running wangara =================== 2026/06/23 17:31:09 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = wangara nzmax = 50 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 2300.0000000000000 2300.0000000000000 2300.0000000000000 2300.0000000000000 zt_grid_fname = zm_grid_fname = day = 15 month = 8 year = 1967 lat_vals = -34.600000000000001 lon_vals = 145.07222200000001 sfc_elevation = 0.0000000000000000 time_initial = 82800.000000000000 time_final = 111600.00000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 102300.00000000000 102300.00000000000 102300.00000000000 102300.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = -8.2100000000000003E-005 -8.2100000000000003E-005 -8.2100000000000003E-005 -8.2100000000000003E-005 fcor_y = 1.2004620798053302E-004 1.2004620798053302E-004 1.2004620798053302E-004 1.2004620798053302E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/wangara time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60_window90000_104400/ fname_prefix = wangara stats_output_filename = wangara_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 60.000000000000000 stats_tstart = 90000.000000000000 stats_tend = 104400.00000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/wangara_corr_array_cloud.in and/or ../input/case_setups/wangara_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = none sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = F l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: wangara_sounding.in File exists? T Path to sclr_sounding: wangara_sclr_sounding.in File exists? T Path to edsclr_sounding: wangara_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 50.000000000000000 100.00000000000000 150.00000000000000 200.00000000000000 250.00000000000000 300.00000000000000 350.00000000000000 400.00000000000000 500.00000000000000 550.00000000000000 600.00000000000000 700.00000000000000 750.00000000000000 800.00000000000000 850.00000000000000 900.00000000000000 950.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2100.0000000000000 2200.0000000000000 2300.0000000000000 u = 0.0000000000000000 -2.8399999999999999 -2.9199999999999999 -2.8999999999999999 -2.7900000000000000 -2.7900000000000000 -3.1200000000000001 -3.3900000000000001 -3.0900000000000003 -2.4900000000000002 -2.6600000000000001 -2.5833333333333335 -2.4300000000000002 -2.4199999999999999 -2.4500000000000002 -2.4100000000000001 -2.2799999999999998 -2.2900000000000000 -2.5499999999999998 -2.2900000000000000 -1.9299999999999999 -2.1000000000000001 -1.4500000000000000 -1.2000000000000000 -1.1899999999999999 -1.4900000000000000 -0.69999999999999996 5.0000000000000044E-002 0.50000000000000000 0.50000000000000000 0.50000000000000000 0.50000000000000000 v = 0.0000000000000000 2.9999999999999999E-002 -0.38000000000000000 -0.62000000000000000 -0.56999999999999995 -0.51000000000000001 -0.51000000000000001 -0.53000000000000003 -0.47666666666666668 -0.37000000000000000 -0.29999999999999999 -0.31666666666666665 -0.34999999999999998 -0.44000000000000000 -0.47999999999999998 -0.62000000000000000 -0.76000000000000001 -0.91000000000000003 -1.1599999999999999 -1.4099999999999999 -0.90000000000000002 -0.28000000000000003 7.0000000000000007E-002 8.9999999999999997E-002 0.26000000000000001 1.1499999999999999 1.7200000000000000 1.4700000000000000 1.1000000000000001 1.1000000000000001 1.1000000000000001 1.1000000000000001 ug = -5.5000000000000000 -5.3600000000000003 -5.2100000000000000 -5.0700000000000003 -4.9199999999999999 -4.7800000000000002 -4.6299999999999999 -4.4900000000000002 -4.3433333333333337 -4.0499999999999998 -3.8999999999999999 -3.7566666666666668 -3.4700000000000002 -3.3199999999999998 -3.1800000000000002 -3.0299999999999998 -2.8900000000000001 -2.7400000000000002 -2.6000000000000001 -2.4600000000000000 -2.3199999999999998 -2.1800000000000002 -2.0400000000000000 -1.8999999999999999 -1.7600000000000000 -1.6200000000000001 -1.4800000000000000 -1.3400000000000001 -1.2000000000000000 -1.2000000000000000 -1.2000000000000000 -1.2000000000000000 vg = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 276.85000000000002 276.91000000000003 277.68000000000001 279.82999999999998 280.81000000000000 281.39999999999998 281.68000000000001 281.97000000000003 281.97000000000003 281.97000000000003 281.97000000000003 281.97333333333336 281.98000000000002 282.29000000000002 282.62000000000000 282.83999999999997 283.06000000000000 283.19000000000000 283.62000000000000 284.72000000000003 285.42000000000002 285.92000000000002 287.17000000000002 288.33999999999997 288.88999999999999 289.56000000000000 290.56999999999999 290.94999999999999 291.01999999999998 291.08999999999997 291.16000000000003 291.23000000000002 rt = 4.1999999999999997E-003 3.7000000000000002E-003 3.5000000000000001E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.7000000000000002E-003 3.5999999999999999E-003 3.5000000000000001E-003 3.3000000000000000E-003 3.2000000000000002E-003 3.0999999999999999E-003 2.8999999999999998E-003 2.7000000000000001E-003 2.5000000000000001E-003 2.3000000000000000E-003 2.2000000000000001E-003 2.0999999999999999E-003 2.0000000000000000E-003 1.8000000000000000E-003 1.5000000000000000E-003 1.1999999999999999E-003 8.0000000000000004E-004 1.0000000000000000E-003 8.0000000000000004E-004 6.9999999999999999E-004 6.9999999999999999E-004 6.9999999999999999E-004 5.9999999999999995E-004 5.0000000000000001E-004 5.0000000000000001E-004 4.0000000000000002E-004 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 480 -- time = 82860.0 / 111600.0 iteration: 2 / 480 -- time = 82920.0 / 111600.0 iteration: 3 / 480 -- time = 82980.0 / 111600.0 iteration: 4 / 480 -- time = 83040.0 / 111600.0 iteration: 5 / 480 -- time = 83100.0 / 111600.0 iteration: 6 / 480 -- time = 83160.0 / 111600.0 iteration: 7 / 480 -- time = 83220.0 / 111600.0 iteration: 8 / 480 -- time = 83280.0 / 111600.0 iteration: 9 / 480 -- time = 83340.0 / 111600.0 iteration: 10 / 480 -- time = 83400.0 / 111600.0 iteration: 11 / 480 -- time = 83460.0 / 111600.0 iteration: 12 / 480 -- time = 83520.0 / 111600.0 iteration: 13 / 480 -- time = 83580.0 / 111600.0 iteration: 14 / 480 -- time = 83640.0 / 111600.0 iteration: 15 / 480 -- time = 83700.0 / 111600.0 iteration: 16 / 480 -- time = 83760.0 / 111600.0 iteration: 17 / 480 -- time = 83820.0 / 111600.0 iteration: 18 / 480 -- time = 83880.0 / 111600.0 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iteration: 457 / 480 -- time = 110220.0 / 111600.0 iteration: 458 / 480 -- time = 110280.0 / 111600.0 iteration: 459 / 480 -- time = 110340.0 / 111600.0 iteration: 460 / 480 -- time = 110400.0 / 111600.0 iteration: 461 / 480 -- time = 110460.0 / 111600.0 iteration: 462 / 480 -- time = 110520.0 / 111600.0 iteration: 463 / 480 -- time = 110580.0 / 111600.0 iteration: 464 / 480 -- time = 110640.0 / 111600.0 iteration: 465 / 480 -- time = 110700.0 / 111600.0 iteration: 466 / 480 -- time = 110760.0 / 111600.0 iteration: 467 / 480 -- time = 110820.0 / 111600.0 iteration: 468 / 480 -- time = 110880.0 / 111600.0 iteration: 469 / 480 -- time = 110940.0 / 111600.0 iteration: 470 / 480 -- time = 111000.0 / 111600.0 iteration: 471 / 480 -- time = 111060.0 / 111600.0 iteration: 472 / 480 -- time = 111120.0 / 111600.0 iteration: 473 / 480 -- time = 111180.0 / 111600.0 iteration: 474 / 480 -- time = 111240.0 / 111600.0 iteration: 475 / 480 -- time = 111300.0 / 111600.0 iteration: 476 / 480 -- time = 111360.0 / 111600.0 iteration: 477 / 480 -- time = 111420.0 / 111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.1215 CLUBB-TIMER time_clubb_advance = 2.7773 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 3.5569 Program exited normally [PASS] bs4_tout60_window90000_104400: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout60_window90000_104400/wangara_stats.nc Running bs4_tout300_window90000_104400 + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/standard_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300_window90000_104400 -multicol C8/0.2:0.8/4 -batch_size 4 -tout 300 -stats_tstart 90000 -stats_tend 104400 wangara Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300_window90000_104400/wangara_multicol_params.in': - ngrdcol = 4 - batch_size = 4 /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300_window90000_104400/wangara.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running wangara =================== 2026/06/23 17:31:13 -------------------------------------------------- Latest git log entry -------------------------------------------------- A detailed git diff can be found at the end of this file -------------------------------------------------- Tunable Parameters: -------------------------------------------------- -------------------------------------------------- Preprocessing Directives: -------------------------------------------------- -DNETCDF enabled -DCOAMPS_MICRO enabled -DTUNER disabled -DSILHS enabled -Dnooverlap enabled -Draoffline enabled -DUSE_BUGSrad_ocast_random disabled -------------------------------------------------- &model_setting -------------------------------------------------- runtype = wangara nzmax = 50 grid_type = 1 deltaz = 40.000000000000000 40.000000000000000 40.000000000000000 40.000000000000000 zm_init = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 zm_top = 2300.0000000000000 2300.0000000000000 2300.0000000000000 2300.0000000000000 zt_grid_fname = zm_grid_fname = day = 15 month = 8 year = 1967 lat_vals = -34.600000000000001 lon_vals = 145.07222200000001 sfc_elevation = 0.0000000000000000 time_initial = 82800.000000000000 time_final = 111600.00000000000 dt_main = 60.000000000000000 dt_rad = 60.000000000000000 sfctype = 1 T_sfc = 288.00000000000000 288.00000000000000 288.00000000000000 288.00000000000000 p_sfc = 102300.00000000000 102300.00000000000 102300.00000000000 102300.00000000000 sens_ht = 0.0000000000000000 latent_ht = 0.0000000000000000 fcor = -8.2100000000000003E-005 -8.2100000000000003E-005 -8.2100000000000003E-005 -8.2100000000000003E-005 fcor_y = 1.2004620798053302E-004 1.2004620798053302E-004 1.2004620798053302E-004 1.2004620798053302E-004 T0 = 300.00000000000000 ts_nudge = 86400.000000000000 forcings_file_path = l_t_dependent = T l_ignore_forcings = T l_modify_ic_with_cubic_int = T l_modify_bc_for_cnvg_test = T l_input_xpwp_sfc = F saturation_formula = 3 thlm_sponge_damp_settings%l_sponge_damping = F rtm_sponge_damp_settings%l_sponge_damping = F uv_sponge_damp_settings%l_sponge_damping = F wp2_sponge_damp_settings%l_sponge_damping = F wp3_sponge_damp_settings%l_sponge_damping = F up2_vp2_sponge_damp_settings%l_sponge_damping = F thlm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 thlm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 thlm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 rtm_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 rtm_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 uv_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 uv_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 uv_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 wp3_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 wp3_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_min = 60.000000000000000 up2_vp2_sponge_damp_settings%tau_sponge_damp_max = 1800.0000000000000 up2_vp2_sponge_damp_settings%sponge_damp_depth = 0.25000000000000000 l_soil_veg = F l_restart = F l_input_fields = F restart_path_case = restart/wangara time_restart = 0.0000000000000000 debug_level = 2 sclr_dim = 0 edsclr_dim = 0 iisclr_thl = -2 iisclr_rt = -1 iisclr_CO2 = -1 sclr_tol = -------------------------------------------------- &stats_setting -------------------------------------------------- l_stats = T output_dir = /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300_window90000_104400/ fname_prefix = wangara stats_output_filename = wangara_stats.nc stats_tsamp = 60.000000000000000 stats_tout = 300.00000000000000 stats_tstart = 90000.000000000000 stats_tend = 104400.00000000000 l_allow_small_stats_tout = F Constant flags: l_pos_def = F l_gamma_Skw = T Constant tolerances [units] rt_tol [kg/kg] = 1.0000000000000000E-008 thl_tol [K] = 1.0000000000000000E-002 w_tol [m/s] = 2.0000000000000000E-002 Parameter Value --------- ----- C1 = 1.00000000000000000000 C1b = 1.00000000000000000000 C1c = 1.00000000000000000000 C2rt = 2.00000000000000000000 C2thl = 2.00000000000000000000 C2rtthl = 2.00000000000000000000 C4 = 2.00000000000000000000 C_uu_shr = 0.40000000000000002220 C_uu_buoy = 0.29999999999999998890 C6rt = 2.00000000000000000000 C6rtb = 2.00000000000000000000 C6rtc = 1.00000000000000000000 C6thl = 2.00000000000000000000 C6thlb = 2.00000000000000000000 C6thlc = 1.00000000000000000000 C7 = 0.50000000000000000000 C7b = 0.50000000000000000000 C7c = 0.50000000000000000000 C8 = 0.20000000000000001110 C8b = 0.02000000000000000042 C10 = 3.29999999999999982236 C11 = 0.40000000000000002220 C11b = 0.40000000000000002220 C11c = 0.50000000000000000000 C12 = 1.00000000000000000000 C13 = 0.10000000000000000555 C14 = 1.00000000000000000000 C_wp2_pr_dfsn = 0.00000000000000000000 C_wp3_pr_tp = 0.00000000000000000000 C_wp3_pr_turb = 1.00000000000000000000 C_wp3_pr_dfsn = 0.00000000000000000000 C_wp2_splat = 0.00000000000000000000 C6rt_Lscale0 = 14.00000000000000000000 C6thl_Lscale0 = 14.00000000000000000000 C7_Lscale0 = 0.84999999999999997780 wpxp_L_thresh = 60.00000000000000000000 c_K = 0.20000000000000001110 c_K1 = 0.20000000000000001110 nu1 = 20.00000000000000000000 c_K2 = 0.02500000000000000139 nu2 = 1.00000000000000000000 c_K6 = 0.37500000000000000000 nu6 = 5.00000000000000000000 c_K8 = 5.00000000000000000000 nu8 = 20.00000000000000000000 c_K9 = 0.10000000000000000555 nu9 = 10.00000000000000000000 nu10 = 0.00000000000000000000 c_K_hm = 0.75000000000000000000 c_K_hmb = 0.75000000000000000000 K_hm_min_coef = 0.10000000000000000555 nu_hm = 1.50000000000000000000 slope_coef_spread_DG_means_w = 21.00000000000000000000 pdf_component_stdev_factor_w = 1.00000000000000000000 coef_spread_DG_means_rt = 0.80000000000000004441 coef_spread_DG_means_thl = 0.80000000000000004441 gamma_coef = 0.25000000000000000000 gamma_coefb = 0.25000000000000000000 gamma_coefc = 5.00000000000000000000 mu = 0.00100000000000000002 beta = 1.00000000000000000000 lmin_coef = 0.50000000000000000000 omicron = 0.50000000000000000000 zeta_vrnce_rat = 0.00000000000000000000 upsilon_precip_frac_rat = 0.55000000000000004441 lambda0_stability_coef = 0.02999999999999999889 mult_coef = 0.50000000000000000000 taumin = 90.00000000000000000000 taumax = 3600.00000000000000000000 Lscale_mu_coef = 2.00000000000000000000 Lscale_pert_coef = 0.10000000000000000555 alpha_corr = 0.14999999999999999445 Skw_denom_coef = 4.00000000000000000000 c_K10 = 1.00000000000000000000 c_K10h = 1.00000000000000000000 thlp2_rad_coef = 1.00000000000000000000 thlp2_rad_cloud_frac_thresh = 0.10000000000000000555 up2_sfc_coef = 4.00000000000000000000 Skw_max_mag = 10.00000000000000000000 C_invrs_tau_bkgnd = 1.10000000000000008882 C_invrs_tau_sfc = 0.10000000000000000555 C_invrs_tau_shear = 0.14999999999999999445 C_invrs_tau_N2 = 0.40000000000000002220 C_invrs_tau_N2_wp2 = 0.20000000000000001110 C_invrs_tau_N2_xp2 = 0.05000000000000000278 C_invrs_tau_N2_wpxp = 0.00000000000000000000 C_invrs_tau_N2_clear_wp3 = 1.00000000000000000000 C_invrs_tau_wpxp_Ri = 0.34999999999999997780 C_invrs_tau_wpxp_N2_thresh = 0.00033000000000000000 xp3_coef_base = 0.25000000000000000000 xp3_coef_slope = 0.01000000000000000021 altitude_threshold = 100.00000000000000000000 rtp2_clip_coef = 0.50000000000000000000 Cx_min = 0.33000000000000001554 Cx_max = 0.94999999999999995559 Richardson_num_min = 0.25000000000000000000 Richardson_num_max = 400.00000000000000000000 a3_coef_min = 1.00000000000000000000 a_const = 1.80000000000000004441 bv_efold = 5.00000000000000000000 wpxp_Ri_exp = 0.50000000000000000000 z_displace = 25.00000000000000000000 -------------------------------------------------- µphysics_setting -------------------------------------------------- microphys_scheme = none l_cloud_sed = F sigma_g = 1.5000000000000000 l_graupel = F l_hail = F l_seifert_beheng = F l_predict_Nc = F l_const_Nc_in_cloud = F specify_aerosol = morrison_lognormal l_subgrid_w = T l_arctic_nucl = F l_cloud_edge_activation = F l_fix_pgam = F l_in_cloud_Nc_diff = T l_var_covar_src = F l_upwind_diff_sed = F lh_microphys_type = disabled lh_num_samples = 2 lh_sequence_length = 1 lh_seed = 5489 l_fix_w_chi_eta_correlations = T l_silhs_KK_convergence_adj_mean = F importance_prob_thresh = 1.0000000000000000E-008 host_dx = 1000000.0000000000 host_dy = 1000000.0000000000 hmp2_ip_on_hmm2_ip_slope%rr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%ri = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rs = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%rg = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Nr = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ni = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_slope%Ng = 2.1200000000000000E-005 hmp2_ip_on_hmm2_ip_intrcpt%rr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%ri = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rs = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%rg = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Nr = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ni = 0.54000000000000004 hmp2_ip_on_hmm2_ip_intrcpt%Ng = 0.54000000000000004 Ncnp2_on_Ncnm2 = 1.0000000000000000 C_evap = 0.85999999999999999 r_0 = 2.5000000000000001E-005 microphys_start_time = 0.0000000000000000 Nc0_in_cloud = 100000000.00000000 ccnconst = 120.00000000000000 ccnexpnt = 0.40000000596046448 aer_rm1 = 1.1000000021965661E-008 aer_rm2 = 5.9999997858994902E-008 aer_n1 = 125000000.00000000 aer_n2 = 65000000.000000000 aer_sig1 = 1.2000000476837158 aer_sig2 = 1.7000000476837158 pgam_fixed = 5.0000000000000000 precip_frac_calc_type = 2 -------------------------------------------------- &SILHS_setting -------------------------------------------------- Warning: missing correlation input file(s): ../input/case_setups/wangara_corr_array_cloud.in and/or ../input/case_setups/wangara_corr_array_below.in The default correlation arrays will be used. -------------------------------------------------- &radiation_setting -------------------------------------------------- rad_scheme = none sol_const = 1367.0000000000000 alvdr = 0.10000000000000001 alvdf = 0.10000000000000001 alndr = 0.10000000000000001 alndf = 0.10000000000000001 radiation_top = 50000.000000000000 F0 = 100.00000000000000 F1 = 20.000000000000000 kappa = 119.00000000000000 gc = 0.85999999999999999 omega = 0.99650000000000005 slr = 1.0000000000000000 l_rad_above_cloud = F l_sw_radiation = F l_fix_cos_solar_zen = F l_use_default_std_atmosphere = T Fs_values = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 cos_solar_zen_values = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 cos_solar_zen_times = -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 -999.00000000000000 eff_drop_radius = 1.0000000000000001E-005 -------------------------------------------------- &configurable_clubb_flags_nl -------------------------------------------------- iiPDF_type = 1 ipdf_call_placement = 2 penta_solve_method = 2 tridiag_solve_method = 2 grid_remap_method = 1 grid_adapt_in_time_method = 0 l_use_precip_frac = T l_predict_upwp_vpwp = T l_ho_nontrad_coriolis = F l_ho_trad_coriolis = F l_min_wp2_from_corr_wx = F l_min_xp2_from_corr_wx = T l_C2_cloud_frac = F l_diffuse_rtm_and_thlm = F l_stability_correct_Kh_N2_zm = F l_calc_thlp2_rad = F l_upwind_xpyp_ta = T l_upwind_xm_ma = T l_uv_nudge = F l_rtm_nudge = F l_tke_aniso = T l_vert_avg_closure = F l_trapezoidal_rule_zt = F l_trapezoidal_rule_zm = F l_call_pdf_closure_twice = F l_standard_term_ta = F l_partial_upwind_wp3 = F l_godunov_upwind_wpxp_ta = F l_godunov_upwind_xpyp_ta = F l_use_cloud_cover = F l_diagnose_correlations = F l_calc_w_corr = F l_const_Nc_in_cloud = F l_fix_w_chi_eta_correlations = T l_stability_correct_tau_zm = F l_damp_wp2_using_em = T l_do_expldiff_rtm_thlm = F l_Lscale_plume_centered = F l_diag_Lscale_from_tau = T l_use_C7_Richardson = T l_use_C11_Richardson = F l_use_shear_Richardson = F l_brunt_vaisala_freq_moist = F l_use_thvm_in_bv_freq = F l_rcm_supersat_adj = T l_damp_wp3_Skw_squared = T l_prescribed_avg_deltaz = F l_lmm_stepping = F l_e3sm_config = F l_vary_convect_depth = F l_use_tke_in_wp3_pr_turb_term = T l_use_tke_in_wp2_wp3_K_dfsn = F l_use_wp3_lim_with_smth_Heaviside = F l_smooth_Heaviside_tau_wpxp = T l_modify_limiters_for_cnvg_test = F l_enable_relaxed_clipping = F l_linearize_pbl_winds = F l_mono_flux_lim_thlm = T l_mono_flux_lim_rtm = T l_mono_flux_lim_um = T l_mono_flux_lim_vm = T l_mono_flux_lim_spikefix = T l_host_applies_sfc_fluxes = F l_wp2_fill_holes_tke = T l_add_dycore_grid = F -------------------------------------------------- git diff src/ -------------------------------------------------- See *setup.txt file in output folder Path to sounding: wangara_sounding.in File exists? T Path to sclr_sounding: wangara_sclr_sounding.in File exists? T Path to edsclr_sounding: wangara_edsclr_sounding.in File exists? T Reading in sounding information z = 0.0000000000000000 50.000000000000000 100.00000000000000 150.00000000000000 200.00000000000000 250.00000000000000 300.00000000000000 350.00000000000000 400.00000000000000 500.00000000000000 550.00000000000000 600.00000000000000 700.00000000000000 750.00000000000000 800.00000000000000 850.00000000000000 900.00000000000000 950.00000000000000 1000.0000000000000 1100.0000000000000 1200.0000000000000 1300.0000000000000 1400.0000000000000 1500.0000000000000 1600.0000000000000 1700.0000000000000 1800.0000000000000 1900.0000000000000 2000.0000000000000 2100.0000000000000 2200.0000000000000 2300.0000000000000 u = 0.0000000000000000 -2.8399999999999999 -2.9199999999999999 -2.8999999999999999 -2.7900000000000000 -2.7900000000000000 -3.1200000000000001 -3.3900000000000001 -3.0900000000000003 -2.4900000000000002 -2.6600000000000001 -2.5833333333333335 -2.4300000000000002 -2.4199999999999999 -2.4500000000000002 -2.4100000000000001 -2.2799999999999998 -2.2900000000000000 -2.5499999999999998 -2.2900000000000000 -1.9299999999999999 -2.1000000000000001 -1.4500000000000000 -1.2000000000000000 -1.1899999999999999 -1.4900000000000000 -0.69999999999999996 5.0000000000000044E-002 0.50000000000000000 0.50000000000000000 0.50000000000000000 0.50000000000000000 v = 0.0000000000000000 2.9999999999999999E-002 -0.38000000000000000 -0.62000000000000000 -0.56999999999999995 -0.51000000000000001 -0.51000000000000001 -0.53000000000000003 -0.47666666666666668 -0.37000000000000000 -0.29999999999999999 -0.31666666666666665 -0.34999999999999998 -0.44000000000000000 -0.47999999999999998 -0.62000000000000000 -0.76000000000000001 -0.91000000000000003 -1.1599999999999999 -1.4099999999999999 -0.90000000000000002 -0.28000000000000003 7.0000000000000007E-002 8.9999999999999997E-002 0.26000000000000001 1.1499999999999999 1.7200000000000000 1.4700000000000000 1.1000000000000001 1.1000000000000001 1.1000000000000001 1.1000000000000001 ug = -5.5000000000000000 -5.3600000000000003 -5.2100000000000000 -5.0700000000000003 -4.9199999999999999 -4.7800000000000002 -4.6299999999999999 -4.4900000000000002 -4.3433333333333337 -4.0499999999999998 -3.8999999999999999 -3.7566666666666668 -3.4700000000000002 -3.3199999999999998 -3.1800000000000002 -3.0299999999999998 -2.8900000000000001 -2.7400000000000002 -2.6000000000000001 -2.4600000000000000 -2.3199999999999998 -2.1800000000000002 -2.0400000000000000 -1.8999999999999999 -1.7600000000000000 -1.6200000000000001 -1.4800000000000000 -1.3400000000000001 -1.2000000000000000 -1.2000000000000000 -1.2000000000000000 -1.2000000000000000 vg = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 theta = 276.85000000000002 276.91000000000003 277.68000000000001 279.82999999999998 280.81000000000000 281.39999999999998 281.68000000000001 281.97000000000003 281.97000000000003 281.97000000000003 281.97000000000003 281.97333333333336 281.98000000000002 282.29000000000002 282.62000000000000 282.83999999999997 283.06000000000000 283.19000000000000 283.62000000000000 284.72000000000003 285.42000000000002 285.92000000000002 287.17000000000002 288.33999999999997 288.88999999999999 289.56000000000000 290.56999999999999 290.94999999999999 291.01999999999998 291.08999999999997 291.16000000000003 291.23000000000002 rt = 4.1999999999999997E-003 3.7000000000000002E-003 3.5000000000000001E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.8000000000000000E-003 3.7000000000000002E-003 3.5999999999999999E-003 3.5000000000000001E-003 3.3000000000000000E-003 3.2000000000000002E-003 3.0999999999999999E-003 2.8999999999999998E-003 2.7000000000000001E-003 2.5000000000000001E-003 2.3000000000000000E-003 2.2000000000000001E-003 2.0999999999999999E-003 2.0000000000000000E-003 1.8000000000000000E-003 1.5000000000000000E-003 1.1999999999999999E-003 8.0000000000000004E-004 1.0000000000000000E-003 8.0000000000000004E-004 6.9999999999999999E-004 6.9999999999999999E-004 6.9999999999999999E-004 5.9999999999999995E-004 5.0000000000000001E-004 5.0000000000000001E-004 4.0000000000000002E-004 p_in_Pa = -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 -999.89999999999998 subs = 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 0.0000000000000000 When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rt must have a value of 1. C2rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2thl must have a value of 1. C2thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C2rtthl must have a value of 1. C2rtthl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rt must have a value of 1. C6rt = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6rtb must have a value of 1. C6rtb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thl must have a value of 1. C6thl = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api When the l_diag_Lscale_from_tau flag is enabled, C6thlb must have a value of 1. C6thlb = 2.0000000000000000 2.0000000000000000 2.0000000000000000 2.0000000000000000 Warning in check_clubb_settings_api iteration: 1 / 480 -- time = 82860.0 / 111600.0 iteration: 2 / 480 -- time = 82920.0 / 111600.0 iteration: 3 / 480 -- time = 82980.0 / 111600.0 iteration: 4 / 480 -- time = 83040.0 / 111600.0 iteration: 5 / 480 -- time = 83100.0 / 111600.0 iteration: 6 / 480 -- time = 83160.0 / 111600.0 iteration: 7 / 480 -- time = 83220.0 / 111600.0 iteration: 8 / 480 -- time = 83280.0 / 111600.0 iteration: 9 / 480 -- time = 83340.0 / 111600.0 iteration: 10 / 480 -- time = 83400.0 / 111600.0 iteration: 11 / 480 -- time = 83460.0 / 111600.0 iteration: 12 / 480 -- time = 83520.0 / 111600.0 iteration: 13 / 480 -- time = 83580.0 / 111600.0 iteration: 14 / 480 -- time = 83640.0 / 111600.0 iteration: 15 / 480 -- time = 83700.0 / 111600.0 iteration: 16 / 480 -- time = 83760.0 / 111600.0 iteration: 17 / 480 -- time = 83820.0 / 111600.0 iteration: 18 / 480 -- time = 83880.0 / 111600.0 iteration: 19 / 480 -- time = 83940.0 / 111600.0 iteration: 20 / 480 -- time = 84000.0 / 111600.0 iteration: 21 / 480 -- time = 84060.0 / 111600.0 iteration: 22 / 480 -- time = 84120.0 / 111600.0 iteration: 23 / 480 -- time = 84180.0 / 111600.0 iteration: 24 / 480 -- time = 84240.0 / 111600.0 iteration: 25 / 480 -- time = 84300.0 / 111600.0 iteration: 26 / 480 -- time = 84360.0 / 111600.0 iteration: 27 / 480 -- time = 84420.0 / 111600.0 iteration: 28 / 480 -- time = 84480.0 / 111600.0 iteration: 29 / 480 -- time = 84540.0 / 111600.0 iteration: 30 / 480 -- time = 84600.0 / 111600.0 iteration: 31 / 480 -- time = 84660.0 / 111600.0 iteration: 32 / 480 -- time = 84720.0 / 111600.0 iteration: 33 / 480 -- time = 84780.0 / 111600.0 iteration: 34 / 480 -- time = 84840.0 / 111600.0 iteration: 35 / 480 -- time = 84900.0 / 111600.0 iteration: 36 / 480 -- time = 84960.0 / 111600.0 iteration: 37 / 480 -- time = 85020.0 / 111600.0 iteration: 38 / 480 -- time = 85080.0 / 111600.0 iteration: 39 / 480 -- time = 85140.0 / 111600.0 iteration: 40 / 480 -- time = 85200.0 / 111600.0 iteration: 41 / 480 -- time = 85260.0 / 111600.0 iteration: 42 / 480 -- time = 85320.0 / 111600.0 iteration: 43 / 480 -- time = 85380.0 / 111600.0 iteration: 44 / 480 -- time = 85440.0 / 111600.0 iteration: 45 / 480 -- time = 85500.0 / 111600.0 iteration: 46 / 480 -- time = 85560.0 / 111600.0 iteration: 47 / 480 -- time = 85620.0 / 111600.0 iteration: 48 / 480 -- time = 85680.0 / 111600.0 iteration: 49 / 480 -- time = 85740.0 / 111600.0 iteration: 50 / 480 -- time = 85800.0 / 111600.0 iteration: 51 / 480 -- time = 85860.0 / 111600.0 iteration: 52 / 480 -- time = 85920.0 / 111600.0 iteration: 53 / 480 -- time = 85980.0 / 111600.0 iteration: 54 / 480 -- time = 86040.0 / 111600.0 iteration: 55 / 480 -- time = 86100.0 / 111600.0 iteration: 56 / 480 -- time = 86160.0 / 111600.0 iteration: 57 / 480 -- time = 86220.0 / 111600.0 iteration: 58 / 480 -- time = 86280.0 / 111600.0 iteration: 59 / 480 -- time = 86340.0 / 111600.0 iteration: 60 / 480 -- time = 86400.0 / 111600.0 iteration: 61 / 480 -- time = 86460.0 / 111600.0 iteration: 62 / 480 -- time = 86520.0 / 111600.0 iteration: 63 / 480 -- time = 86580.0 / 111600.0 iteration: 64 / 480 -- time = 86640.0 / 111600.0 iteration: 65 / 480 -- time = 86700.0 / 111600.0 iteration: 66 / 480 -- time = 86760.0 / 111600.0 iteration: 67 / 480 -- time = 86820.0 / 111600.0 iteration: 68 / 480 -- time = 86880.0 / 111600.0 iteration: 69 / 480 -- time = 86940.0 / 111600.0 iteration: 70 / 480 -- time = 87000.0 / 111600.0 iteration: 71 / 480 -- time = 87060.0 / 111600.0 iteration: 72 / 480 -- time = 87120.0 / 111600.0 iteration: 73 / 480 -- time = 87180.0 / 111600.0 iteration: 74 / 480 -- time = 87240.0 / 111600.0 iteration: 75 / 480 -- time = 87300.0 / 111600.0 iteration: 76 / 480 -- time = 87360.0 / 111600.0 iteration: 77 / 480 -- time = 87420.0 / 111600.0 iteration: 78 / 480 -- time = 87480.0 / 111600.0 iteration: 79 / 480 -- time = 87540.0 / 111600.0 iteration: 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111360.0 / 111600.0 iteration: 477 / 480 -- time = 111420.0 / 111600.0 iteration: 478 / 480 -- time = 111480.0 / 111600.0 iteration: 479 / 480 -- time = 111540.0 / 111600.0 iteration: 480 / 480 -- time = 111600.0 / 111600.0 CLUBB-TIMER time_loop_init = 0.0522 CLUBB-TIMER time_clubb_advance = 2.7415 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 2.9447 Program exited normally [PASS] bs4_tout300_window90000_104400: stats file: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/stats_output_consistency/wangara/bs4_tout300_window90000_104400/wangara_stats.nc ======================== Batch-Size Checks ======================== [PASS] bs2_tout60_vs_bs4_tout60: checked 800 variables exactly [PASS] bs1_tout60_vs_bs4_tout60: checked 800 variables exactly ======================== Tout Averaging Checks ======================== [PASS] bs4_tout300_manual_average_vs_bs4_tout60: checked 791 time-dependent variables, max_abs=1.490116e-08, max_rel=1.000000e+00 [PASS] bs4_tout600_manual_average_vs_bs4_tout60: checked 791 time-dependent variables, max_abs=2.980232e-08, max_rel=1.000000e+00 ======================== Windowing Checks ======================== [PASS] bs4_tout60_window90000_104400_selected_window_vs_bs4_tout60: checked 800 variables against window (90000, 104400) [PASS] bs4_tout300_window90000_104400_manual_average_vs_bs4_tout60: checked 791 time-dependent variables, max_abs=1.490116e-08, max_rel=5.015443e-09 ======================== Summary ======================== All stats consistency checks passed. [Pipeline] } [Pipeline] // stage [Pipeline] stage [Pipeline] { (Run loss output consistency tests) [Pipeline] sh + python run_scripts/run_loss_output_consistency.py bomex + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/create_multi_col_params.py -param_file /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/tunable_parameters/tunable_parameters.in -out_file /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/bomex_shared_multicol_params.in -hr C8/0.2:0.8/4 -batch_size 4 Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/bomex_shared_multicol_params.in': - ngrdcol = 4 - batch_size = 4 ======================== Test Setup ======================== Case: bomex Fields: cloud_frac Loss window: [10800.0, 21600.0] Shared params: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/bomex_shared_multicol_params.in Output root: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex ======================== Run Phase ======================== Running normal CLUBB + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -params /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/bomex_shared_multicol_params.in -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/tuning_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/normal -tout 10800 -stats_tstart 10800.0 -stats_tend 21600.0 -override stats_tsamp=60.0,time_final=21600.0,debug_level=-1 bomex /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/normal/bomex.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running bomex =================== iteration: 1 / 360 -- time = 60.0 / 21600.0 iteration: 2 / 360 -- time = 120.0 / 21600.0 iteration: 3 / 360 -- time = 180.0 / 21600.0 iteration: 4 / 360 -- time = 240.0 / 21600.0 iteration: 5 / 360 -- time = 300.0 / 21600.0 iteration: 6 / 360 -- time = 360.0 / 21600.0 iteration: 7 / 360 -- time = 420.0 / 21600.0 iteration: 8 / 360 -- time = 480.0 / 21600.0 iteration: 9 / 360 -- time = 540.0 / 21600.0 iteration: 10 / 360 -- time = 600.0 / 21600.0 iteration: 11 / 360 -- time = 660.0 / 21600.0 iteration: 12 / 360 -- time = 720.0 / 21600.0 iteration: 13 / 360 -- time = 780.0 / 21600.0 iteration: 14 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345 / 360 -- time = 20700.0 / 21600.0 iteration: 346 / 360 -- time = 20760.0 / 21600.0 iteration: 347 / 360 -- time = 20820.0 / 21600.0 iteration: 348 / 360 -- time = 20880.0 / 21600.0 iteration: 349 / 360 -- time = 20940.0 / 21600.0 iteration: 350 / 360 -- time = 21000.0 / 21600.0 iteration: 351 / 360 -- time = 21060.0 / 21600.0 iteration: 352 / 360 -- time = 21120.0 / 21600.0 iteration: 353 / 360 -- time = 21180.0 / 21600.0 iteration: 354 / 360 -- time = 21240.0 / 21600.0 iteration: 355 / 360 -- time = 21300.0 / 21600.0 iteration: 356 / 360 -- time = 21360.0 / 21600.0 iteration: 357 / 360 -- time = 21420.0 / 21600.0 iteration: 358 / 360 -- time = 21480.0 / 21600.0 iteration: 359 / 360 -- time = 21540.0 / 21600.0 iteration: 360 / 360 -- time = 21600.0 / 21600.0 CLUBB-TIMER time_loop_init = 0.0333 CLUBB-TIMER time_clubb_advance = 1.7498 CLUBB-TIMER time_clubb_pdf = 0.0003 CLUBB-TIMER time_SILHS = 0.0001 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 1.7947 Program exited normally [PASS] normal_run: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/normal/bomex_stats.nc Running loss driver + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm_loss.py -params /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/bomex_shared_multicol_params.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/loss -fields cloud_frac bomex - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone_loss - normalized benchmark: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/loss/bomex_normalized_benchmark.nc - loss timing: absolute_window=[10800, 21600] s, model_time_initial=0 s, model_time_final=21600 s, stats_tstart=10800 s, stats_tend=21600 s, stats_tsamp=60 s, stats_tout=10800 s, num_time_windows=1 =================== Running bomex loss =================== benchmark timing:window 1 records 181 360 absolute_window 10800 21600 benchmark_window 10800.000000000000 21600.000000000000 matched_window 10860.000000000000 21600.000000000000 closing 131072 CLUBB-TIMER time_loop_init = 0.0298 CLUBB-TIMER time_clubb_advance = 1.7055 CLUBB-TIMER time_clubb_pdf = 0.0003 CLUBB-TIMER time_SILHS = 0.0001 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 1.7429 variable scaled_rmse_col1 scaled_rmse_col2 scaled_rmse_col3 scaled_rmse_col4 corr_col1 corr_col2 corr_col3 corr_col4 std_ratio_col1 std_ratio_col2 std_ratio_col3 std_ratio_col4 crmse_norm_col1 crmse_norm_col2 crmse_norm_col3 crmse_norm_col4 bias_norm_col1 bias_norm_col2 bias_norm_col3 bias_norm_col4 best_col cloud_frac 2.49055369E+00 2.08000959E+00 1.57965946E+00 1.06938087E+00 9.23274637E-01 9.37761424E-01 9.41572742E-01 9.29902062E-01 4.36703716E-01 4.96866653E-01 5.87526982E-01 7.28899724E-01 6.19931613E-01 5.61241223E-01 4.88660589E-01 4.19146866E-01 -4.58085654E-01 -4.25704964E-01 -3.71566256E-01 -2.81837200E-01 col4 [PASS] loss_run: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/bomex/loss/bomex_stats.nc ======================== Comparison ======================== [PASS] loss_vs_equivalent_normal: cloud_frac(max_abs=0.000000e+00, max_rel=0.000000e+00) [PASS] reported_loss_metrics_vs_netcdf: cloud_frac(scaled_rmse(max_abs=4.045551e-09, max_rel=1.944967e-09); corr(max_abs=4.295486e-10, max_rel=4.652447e-10); std_ratio(max_abs=4.652371e-10, max_rel=1.065338e-09); crmse_norm(max_abs=4.074638e-10, max_rel=9.721265e-10); bias_norm(max_abs=2.853958e-10, max_rel=6.704075e-10)) ======================== Summary ======================== Loss-driver stats output and reported metrics are internally consistent. [Pipeline] sh + python run_scripts/run_loss_output_consistency.py atex + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/create_multi_col_params.py -param_file /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/tunable_parameters/tunable_parameters.in -out_file /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex/atex_shared_multicol_params.in -hr C8/0.2:0.8/4 -batch_size 4 Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex/atex_shared_multicol_params.in': - ngrdcol = 4 - batch_size = 4 ======================== Test Setup ======================== Case: atex Fields: cloud_frac Loss window: [21600.0, 28800.0] Shared params: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex/atex_shared_multicol_params.in Output root: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex ======================== Run Phase ======================== Running normal CLUBB + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -params /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex/atex_shared_multicol_params.in -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/tuning_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex/normal -tout 7200 -stats_tstart 21600.0 -stats_tend 28800.0 -override stats_tsamp=60.0,time_final=28800.0,debug_level=-1 atex 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28140.0 / 28800.0 iteration: 470 / 480 -- time = 28200.0 / 28800.0 iteration: 471 / 480 -- time = 28260.0 / 28800.0 iteration: 472 / 480 -- time = 28320.0 / 28800.0 iteration: 473 / 480 -- time = 28380.0 / 28800.0 iteration: 474 / 480 -- time = 28440.0 / 28800.0 iteration: 475 / 480 -- time = 28500.0 / 28800.0 iteration: 476 / 480 -- time = 28560.0 / 28800.0 iteration: 477 / 480 -- time = 28620.0 / 28800.0 iteration: 478 / 480 -- time = 28680.0 / 28800.0 iteration: 479 / 480 -- time = 28740.0 / 28800.0 iteration: 480 / 480 -- time = 28800.0 / 28800.0 CLUBB-TIMER time_loop_init = 0.0721 CLUBB-TIMER time_clubb_advance = 4.5495 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 4.6620 Program exited normally [PASS] normal_run: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex/normal/atex_stats.nc Running loss driver + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm_loss.py -params /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex/atex_shared_multicol_params.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex/loss -fields cloud_frac atex - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone_loss - normalized benchmark: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex/loss/atex_normalized_benchmark.nc - loss timing: absolute_window=[21600, 28800] s, model_time_initial=0 s, model_time_final=28800 s, stats_tstart=21600 s, stats_tend=28800 s, stats_tsamp=60 s, stats_tout=7200 s, num_time_windows=1 =================== Running atex loss =================== benchmark timing:window 1 records 361 480 absolute_window 21600 28800 benchmark_window 21600.000000000000 28800.000000000000 matched_window 21660.000000000000 28800.000000000000 closing 131072 CLUBB-TIMER time_loop_init = 0.0660 CLUBB-TIMER time_clubb_advance = 4.4316 CLUBB-TIMER time_clubb_pdf = 0.0005 CLUBB-TIMER time_SILHS = 0.0002 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 4.5308 variable scaled_rmse_col1 scaled_rmse_col2 scaled_rmse_col3 scaled_rmse_col4 corr_col1 corr_col2 corr_col3 corr_col4 std_ratio_col1 std_ratio_col2 std_ratio_col3 std_ratio_col4 crmse_norm_col1 crmse_norm_col2 crmse_norm_col3 crmse_norm_col4 bias_norm_col1 bias_norm_col2 bias_norm_col3 bias_norm_col4 best_col cloud_frac 1.13312929E+01 4.54342357E+00 6.12240940E+00 6.15015306E+00 7.85016335E-01 9.63582268E-01 9.67602377E-01 9.44037369E-01 1.99138367E+00 1.76779679E+00 1.95542534E+00 1.91374511E+00 1.35612370E+00 8.47508236E-01 1.01957827E+00 1.02426878E+00 4.48215643E-01 3.15722617E-01 2.50350558E-01 2.41004973E-01 col2 [PASS] loss_run: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/atex/loss/atex_stats.nc ======================== Comparison ======================== [PASS] loss_vs_equivalent_normal: cloud_frac(max_abs=0.000000e+00, max_rel=0.000000e+00) [PASS] reported_loss_metrics_vs_netcdf: cloud_frac(scaled_rmse(max_abs=4.475612e-09, max_rel=9.066588e-10); corr(max_abs=4.119810e-10, max_rel=4.275515e-10); std_ratio(max_abs=4.532003e-09, max_rel=2.317656e-09); crmse_norm(max_abs=4.627862e-09, max_rel=4.518211e-09); bias_norm(max_abs=4.064959e-10, max_rel=1.514367e-09)) ======================== Summary ======================== Loss-driver stats output and reported metrics are internally consistent. [Pipeline] sh + python run_scripts/run_loss_output_consistency.py wangara + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/create_multi_col_params.py -param_file /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/tunable_parameters/tunable_parameters.in -out_file /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/wangara_shared_multicol_params.in -hr C8/0.2:0.8/4 -batch_size 4 Creating a custom hypergrid of parameters - Initial values file: '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/tunable_parameters/tunable_parameters.in' - Spec: C8/0.2:0.8/4 Writing to '/home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/wangara_shared_multicol_params.in': - ngrdcol = 4 - batch_size = 4 ======================== Test Setup ======================== Case: wangara Fields: cloud_frac Loss window: [86400.0, 88620.0] Shared params: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/wangara_shared_multicol_params.in Output root: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara ======================== Run Phase ======================== Running normal CLUBB + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm.py -params /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/wangara_shared_multicol_params.in -stats /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/input/stats/tuning_stats.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/normal -tout 2220 -stats_tstart 86400.0 -stats_tend 88620.0 -override stats_tsamp=60.0,time_final=88620.0,debug_level=-1 wangara /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/normal/wangara.in - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone =================== Running wangara =================== iteration: 1 / 97 -- time = 82860.0 / 88620.0 iteration: 2 / 97 -- time = 82920.0 / 88620.0 iteration: 3 / 97 -- time = 82980.0 / 88620.0 iteration: 4 / 97 -- time = 83040.0 / 88620.0 iteration: 5 / 97 -- time = 83100.0 / 88620.0 iteration: 6 / 97 -- time = 83160.0 / 88620.0 iteration: 7 / 97 -- time = 83220.0 / 88620.0 iteration: 8 / 97 -- time = 83280.0 / 88620.0 iteration: 9 / 97 -- time = 83340.0 / 88620.0 iteration: 10 / 97 -- time = 83400.0 / 88620.0 iteration: 11 / 97 -- time = 83460.0 / 88620.0 iteration: 12 / 97 -- time = 83520.0 / 88620.0 iteration: 13 / 97 -- time = 83580.0 / 88620.0 iteration: 14 / 97 -- time = 83640.0 / 88620.0 iteration: 15 / 97 -- time = 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iteration: 58 / 97 -- time = 86280.0 / 88620.0 iteration: 59 / 97 -- time = 86340.0 / 88620.0 iteration: 60 / 97 -- time = 86400.0 / 88620.0 iteration: 61 / 97 -- time = 86460.0 / 88620.0 iteration: 62 / 97 -- time = 86520.0 / 88620.0 iteration: 63 / 97 -- time = 86580.0 / 88620.0 iteration: 64 / 97 -- time = 86640.0 / 88620.0 iteration: 65 / 97 -- time = 86700.0 / 88620.0 iteration: 66 / 97 -- time = 86760.0 / 88620.0 iteration: 67 / 97 -- time = 86820.0 / 88620.0 iteration: 68 / 97 -- time = 86880.0 / 88620.0 iteration: 69 / 97 -- time = 86940.0 / 88620.0 iteration: 70 / 97 -- time = 87000.0 / 88620.0 iteration: 71 / 97 -- time = 87060.0 / 88620.0 iteration: 72 / 97 -- time = 87120.0 / 88620.0 iteration: 73 / 97 -- time = 87180.0 / 88620.0 iteration: 74 / 97 -- time = 87240.0 / 88620.0 iteration: 75 / 97 -- time = 87300.0 / 88620.0 iteration: 76 / 97 -- time = 87360.0 / 88620.0 iteration: 77 / 97 -- time = 87420.0 / 88620.0 iteration: 78 / 97 -- time = 87480.0 / 88620.0 iteration: 79 / 97 -- time = 87540.0 / 88620.0 iteration: 80 / 97 -- time = 87600.0 / 88620.0 iteration: 81 / 97 -- time = 87660.0 / 88620.0 iteration: 82 / 97 -- time = 87720.0 / 88620.0 iteration: 83 / 97 -- time = 87780.0 / 88620.0 iteration: 84 / 97 -- time = 87840.0 / 88620.0 iteration: 85 / 97 -- time = 87900.0 / 88620.0 iteration: 86 / 97 -- time = 87960.0 / 88620.0 iteration: 87 / 97 -- time = 88020.0 / 88620.0 iteration: 88 / 97 -- time = 88080.0 / 88620.0 iteration: 89 / 97 -- time = 88140.0 / 88620.0 iteration: 90 / 97 -- time = 88200.0 / 88620.0 iteration: 91 / 97 -- time = 88260.0 / 88620.0 iteration: 92 / 97 -- time = 88320.0 / 88620.0 iteration: 93 / 97 -- time = 88380.0 / 88620.0 iteration: 94 / 97 -- time = 88440.0 / 88620.0 iteration: 95 / 97 -- time = 88500.0 / 88620.0 iteration: 96 / 97 -- time = 88560.0 / 88620.0 iteration: 97 / 97 -- time = 88620.0 / 88620.0 CLUBB-TIMER time_loop_init = 0.0053 CLUBB-TIMER time_clubb_advance = 0.3229 CLUBB-TIMER time_clubb_pdf = 0.0001 CLUBB-TIMER time_SILHS = 0.0000 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 0.3301 Program exited normally [PASS] normal_run: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/normal/wangara_stats.nc Running loss driver + /usr/bin/python /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/run_scm_loss.py -params /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/wangara_shared_multicol_params.in -out_dir /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/loss -fields cloud_frac wangara - using executable: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/run_scripts/../install/latest/clubb_standalone_loss - normalized benchmark: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/loss/wangara_normalized_benchmark.nc - loss timing: absolute_window=[86400, 88620] s, model_time_initial=82800 s, model_time_final=88620 s, stats_tstart=86400 s, stats_tend=88620 s, stats_tsamp=60 s, stats_tout=2220 s, num_time_windows=1 =================== Running wangara loss =================== benchmark timing:window 1 records 14 20 absolute_window 86400 88620 benchmark_window 86400.000000000000 88620.000000000000 matched_window 86700.000000000000 88500.000000000000 closing 131072 CLUBB-TIMER time_loop_init = 0.0045 CLUBB-TIMER time_clubb_advance = 0.3148 CLUBB-TIMER time_clubb_pdf = 0.0001 CLUBB-TIMER time_SILHS = 0.0000 CLUBB-TIMER time_microphys_scheme = 0.0000 CLUBB-TIMER time_microphys_advance = 0.0000 CLUBB-TIMER time_loop_end = 0.0000 CLUBB-TIMER time_adapt_grid = 0.0000 CLUBB-TIMER time_total = 0.3201 variable scaled_rmse_col1 scaled_rmse_col2 scaled_rmse_col3 scaled_rmse_col4 corr_col1 corr_col2 corr_col3 corr_col4 std_ratio_col1 std_ratio_col2 std_ratio_col3 std_ratio_col4 crmse_norm_col1 crmse_norm_col2 crmse_norm_col3 crmse_norm_col4 bias_norm_col1 bias_norm_col2 bias_norm_col3 bias_norm_col4 best_col cloud_frac 1.66750133E-11 1.82018260E-14 2.62406835E-20 0.00000000E+00 0.00000000E+00 0.00000000E+00 0.00000000E+00 0.00000000E+00 0.00000000E+00 0.00000000E+00 0.00000000E+00 0.00000000E+00 5.60358588E-07 1.86345806E-08 2.29040409E-11 0.00000000E+00 1.62187075E-07 4.92120334E-09 3.30591354E-12 0.00000000E+00 col4 [PASS] loss_run: /home/jenkins/workspace/clubb_stats_output_consistency_gfortran_test/output/loss_output_consistency/wangara/loss/wangara_stats.nc ======================== Comparison ======================== [PASS] loss_vs_equivalent_normal: cloud_frac(max_abs=0.000000e+00, max_rel=0.000000e+00) [PASS] reported_loss_metrics_vs_netcdf: cloud_frac(scaled_rmse(max_abs=8.713385e-21, max_rel=1.006496e-09); corr(max_abs=0.000000e+00, max_rel=0.000000e+00); std_ratio(max_abs=0.000000e+00, max_rel=0.000000e+00); crmse_norm(max_abs=2.700826e-16, max_rel=1.093311e-09); bias_norm(max_abs=2.600326e-16, max_rel=1.603288e-09)) ======================== Summary ======================== Loss-driver stats output and reported metrics are internally consistent. [Pipeline] } [Pipeline] // stage [Pipeline] } [Pipeline] // withEnv [Pipeline] } [Pipeline] // node [Pipeline] End of Pipeline Finished: SUCCESS
