GEOS-Chem 13.3.0: Difference between revisions
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== 1-month benchmarks == | |||
TBD | === 1-month fullchem: Model setup === | ||
The following table describes the GEOS-Chem setup for both GEOS-Chem Classic and GCHP 1-month benchmark simulations. | |||
{| border=1 cellspacing=0 cellpadding=5 | |||
|-valign="top" | |||
|width="250px"|Git tag(s): | |||
|width="400px"| | |||
*GEOS-Chem Classic: [https://github.com/geoschem/GCClassic/releases/tag/13.3.0-rc.0 13.3.0-rc.0] | |||
*GCHP: TBD | |||
|-valign="top" | |||
|Compared to previous benchmark: | |||
|[[GEOS-Chem_13.2.0|13.2.0]] | |||
|-valign="top" | |||
|Software environment: | |||
|gcc 10.2.0<br>OpenMPI 4.1.0<br>netcdf-fortran 4.5.3<br>CMake 3.17.3<br>ESMF 8.0.1 | |||
|-valign="top" | |||
|Model resolution: | |||
| | |||
*GEOS-Chem Classic: 4° x 5° | |||
*GCHP: c48 | |||
|-valign="top" | |||
|Meteorology fields: | |||
|[[MERRA-2]] | |||
*GEOS-Chem Classic: 4° x 5° | |||
*GCHP: 0.5° x 0.625° | |||
|-valign="top" | |||
|Initial conditions: | |||
|[http://ftp.as.harvard.edu/gcgrid/data/ExtData/GEOSCHEM_RESTARTS/v2021-09/ July 1, 2019] | |||
*NOTE: GCHP c48 restart file regridded from GEOS-Chem Classic 4° x 5° | |||
|-valign="top" | |||
|Benchmark month: | |||
|July 2019 | |||
|-valign="top" | |||
|Emissions setup: | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/HEMCO_Config.rc HEMCO_Config.rc] | |||
|-valign="top" | |||
|Chemistry mechanism: | |||
|[https://github.com/geoschem/geos-chem/blob/release/KPP/fullchem/fullchem.eqn fullchem.eqn] | |||
|-valign="top" | |||
|This version will impact:<br>(select all that apply with '''boldface''') | |||
| | |||
*Advection | |||
*BL Mixing | |||
*Convection | |||
*Meteorology Fields | |||
*'''Dry Deposition''' | |||
*Wet Deposition | |||
*'''Emissions''' | |||
*'''Photolysis''' | |||
*'''Chemistry''' | |||
*Other (please specify): | |||
|} | |||
=== Benchmark Plots and Tables === | |||
NOTES: | |||
*Enable PDF bookmarks in the file links to navigate between species. See the [[Species in GEOS-Chem]] wiki page for species definitions and details. If you do not see bookmarks in your browser try using a different browser (not Safari) or installing an Adobe Acrobat plug-in. | |||
* [http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/benchmark_categories.yml Species categories] and [http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/lumped_species.yml lumped species] are defined in YAML files within the GEOS-Chem post-processing software [https://github.com/geoschem/gcpy GCPy]. | |||
==== 1-month fullchem: GEOS-Chem Classic 13.3.0 vs 13.2.0 ==== | |||
Below are links to plots and tables comparing 1-month simulations for GEOS-Chem Classic 13.3.0 (Dev) and GEOS-Chem Classic 13.2.0 (Ref). | |||
{| border=1 cellspacing=0 cellpadding=5 | |||
|- | |||
!colspan="1" bgcolor="#CCFFFF" width="325px"|Species Category | |||
!colspan="5" bgcolor="#CCFFFF"|Plots | |||
!colspan="1" bgcolor="#CCFFFF"|Additional Information | |||
|- | |||
!colspan="1"| | |||
!colspan="2"|Level Map | |||
!colspan="2"|Zonal Mean | |||
!colspan="1"|Emissions | |||
!colspan="1"| | |||
|-valign="top" | |||
|'''Oxidants''' | |||
O3, CO, OH, NOx | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Oxidants/Oxidants_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Oxidants/Oxidants_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Oxidants/Oxidants_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Oxidants/Oxidants_Strat_ZonalMean.pdf stratosphere] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Oxidants/Oxidants_Emissions.pdf sfc] | |||
| | |||
|-valign="top" | |||
|'''Aerosols''' | |||
DST1, DST2, DST3, DST4, NH4, NIT, SO4, BCPI, BCPO, OCPI, OCPO, AERI, BrSALA, BrSALC, ISALA, ISALC, NITs, SALA, SALC, SO4s, Simple_SOA, Complex_SOA. pFe | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Aerosols/Aerosols_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Aerosols/Aerosols_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Aerosols/Aerosols_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Aerosols/Aerosols_Strat_ZonalMean.pdf stratosphere] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Aerosols/Aerosols_Emissions.pdf column total] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Aerosols/Aerosols_ColumnOptDepth.pdf AOD] | |||
|-valign="top" | |||
|'''Bromine''' | |||
Bry, BrOx, Br, Br2, BrCl, BrNO2, BrNO3, BrO, CH3Br, CH2Br2, CHBr3, HOBr, HBr | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Bromine/Bromine_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Bromine/Bromine_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Bromine/Bromine_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Bromine/Bromine_Strat_ZonalMean.pdf stratosphere] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Bromine/Bromine_Emissions.pdf column total] | |||
| | |||
|-valign="top" | |||
|'''Chlorine''' | |||
Cly, ClOx, Cl, ClO, Cl2, Cl2O2, ClOO, ClNO2, ClNO3, CCl4, CFCs, CH3Cl, CH2Cl2, CH3CCl3, CHCl3, HOCl, HCl, Halons, HCFCs, OClO | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Chlorine/Chlorine_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Chlorine/Chlorine_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Chlorine/Chlorine_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Chlorine/Chlorine_Strat_ZonalMean.pdf stratosphere] | |||
| -- | |||
| | |||
|-valign="top" | |||
|'''Iodine''' | |||
Iy, IxOy, I, I2, IBr, ICl, IO, IONO, IONO2, CH3I, CH2I2, CH2ICl, CH2IBr, HI, HOI, OIO | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Iodine/Iodine_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Iodine/Iodine_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Iodine/Iodine_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Iodine/Iodine_Strat_ZonalMean.pdf stratosphere] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Iodine/Iodine_Emissions.pdf column total] | |||
| | |||
|-valign="top" | |||
|'''Nitrogen''' | |||
NOy, NOx, HNO2, HNO3, HNO4, MPAN, NIT, NO, NO2, NO3, N2O5, MPN, PAN, PPN, N2O, NHx, NH3, NH4, MENO3, ETNO3, IPRNO3, NPRNO3 | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Nitrogen/Nitrogen_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Nitrogen/Nitrogen_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Nitrogen/Nitrogen_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Nitrogen/Nitrogen_Strat_ZonalMean.pdf stratosphere] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Nitrogen/Nitrogen_Emissions.pdf column total] | |||
| | |||
|-valign="top" | |||
|'''Primary Organics''' | |||
EOH, MOH, ISOP, MTPA, MTPO, LIMO, ALK4, BENZ, CH4, C2H6, C3H8, PRPE, TOLU, XYLE | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Primary_Organics/Primary_Organics_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Primary_Organics/Primary_Organics_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Primary_Organics/Primary_Organics_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Primary_Organics/Primary_Organics_Strat_ZonalMean.pdf stratosphere] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Primary_Organics/Primary_Organics_Emissions.pdf column total] | |||
| | |||
|-valign="top" | |||
|'''Secondary Organics''' | |||
ACTA, ALD2, CH2O, HPALDs, MACR, IEPOX, ACET, HAC, MEK, MVK, ISOPN, GLYC, GLYX, HCOOH, MAP, RCHO, MP | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Secondary_Organics/Secondary_Organics_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Secondary_Organics/Secondary_Organics_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Secondary_Organics/Secondary_Organics_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Secondary_Organics/Secondary_Organics_Strat_ZonalMean.pdf stratosphere] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Secondary_Organics/Secondary_Organics_Emissions.pdf column total] | |||
| | |||
|-valign="top" | |||
|'''Secondary Organic Aerosols''' | |||
TSOA0, TSOA1, TSOA2, TSOA3, ASOA1, ASOA2, ASOA3, ASOAN, TSOG0, TSOG1, TSOG2, TSOG3, ASOG1, ASOG2, ASOG3, INDIOL, LVOCOA, SOAIE, SOAGX, SOAP, SOAS | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Secondary_Organic_Aerosols/Secondary_Organic_Aerosols_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Secondary_Organic_Aerosols/Secondary_Organic_Aerosols_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Secondary_Organic_Aerosols/Secondary_Organic_Aerosols_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Secondary_Organic_Aerosols/Secondary_Organic_Aerosols_Strat_ZonalMean.pdf stratosphere] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Secondary_Organic_Aerosols/Secondary_Organic_Aerosols_Emissions.pdf column total] | |||
| | |||
|-valign="top" | |||
|'''Sulfur''' | |||
SOx, DMS, OCS, SO2, SO4 | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Sulfur/Sulfur_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Sulfur/Sulfur_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Sulfur/Sulfur_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Sulfur/Sulfur_Strat_ZonalMean.pdf stratosphere] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Sulfur/Sulfur_Emissions.pdf column total] | |||
| | |||
|-valign="top" | |||
|'''ROy''' | |||
H2O2, H, H2, H2O, HO2, O1D, OH, RO2 | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/ROy/ROy_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/ROy/ROy_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/ROy/ROy_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/ROy/ROy_Strat_ZonalMean.pdf stratosphere] | |||
| -- | |||
| | |||
|-valign="top" | |||
|'''J-values''' | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/JValues/Jval_Surface.pdf sfc] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/JValues/Jval_500hPa.pdf 500hPa] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/JValues/Jval_FullColumn_ZonalMean.pdf full column] | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/JValues/Jval_Strat_ZonalMean.pdf stratosphere] | |||
| -- | |||
| -- | |||
|-valign="top" | |||
!colspan="7" bgcolor="#CCCCCC"| | |||
|-valign="top" | |||
|'''Emissions by HEMCO category''' | |||
|colspan="6"|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/Total_Emissions.pdf Total] | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/Aircraft_Emissions.pdf Aircraft], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/Anthro_Emissions.pdf Anthropogenic], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/BioBurn_Emissions.pdf Biomass Burning], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/Biogenic_Emissions.pdf Biogenic], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/Lightning_Emissions.pdf Lightning], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/Natural_Emissions.pdf Natural], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/Ocean_Emissions.pdf Ocean], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/Seabirds_Emissions.pdf Seabirds], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/PlantDecay_Emissions.pdf Decaying Plants], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/Ship_Emissions.pdf Ship], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/Soil_Emissions.pdf Soil], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/VolcDegas_Emissions.pdf Degassing Volcanoes], | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Emissions/VolcErupt_Emissions.pdf Erupting Volcanoes] | |||
|-valign="top" | |||
|'''Emission totals''' | |||
|colspan="6"|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Tables/Emission_totals.txt Tables by species] | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Tables/Inventory_totals.txt Tables by inventory] | |||
|-valign="top" | |||
|'''Global mass''' | |||
|colspan="6"|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Tables/GlobalMass_TropStrat.txt Entire atmosphere] | |||
[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Tables/GlobalMass_Trop.txt Troposphere only] | |||
|-valign="top" | |||
|'''Metrics''' | |||
|colspan="6"|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/Tables/OH_metrics.txt OH concentration, MCF lifetime, CH4 lifetime] | |||
|} | |||
=== Benchmark assessment form === | |||
{| border=1 cellspacing=0 cellpadding=5 | |||
|-bgcolor="#CCCCCC" | |||
!width="325px"|Performance | |||
!width="250px"|GEOS-Chem Classic | |||
!width="250px"|GCHP | |||
|-valign="top" | |||
|Grid resolution: | |||
|4° x 5° | |||
|C48 | |||
|-valign="top" | |||
|# CPUs, nodes: | |||
|48 CPUs<br>1 node (Intel Cascade Lake) | |||
|48 CPUs<br>2 nodes (Intel Cascade Lake) | |||
|-valign="top" | |||
|Wall time: | |||
|03:30:53 | |||
|TBD | |||
|-valign="top" | |||
|[[Scalability|CPU time / wall time]]: | |||
|31.5510 | |||
|TBD | |||
|-valign="top" | |||
|% of ideal performance: | |||
|65.73% | |||
|TBD | |||
|-valign="top" | |||
|Memory: | |||
|12.097 GB | |||
|TBD | |||
|-valign="top" | |||
|Global mean OH:<br>(% change from previous version) | |||
|11.74989868895 x 10<sup>5</sup> molec/cm<sup>3</sup><br>(+4.68) | |||
|TBD | |||
|-valign="top" | |||
|Methyl chloroform lifetime:<br>(% change from previous version) | |||
|5.263415 years<br>(-4.47%) | |||
|TBD | |||
|-valign="top" | |||
|Methane lifetime:<br>(% change from previous version) | |||
|8.868914 years<br>(-4.34%) | |||
|TBD | |||
|-valign="top" bgcolor="#cccccc" | |||
!colspan="3"|Details | |||
|-valign="top" | |||
|Species, J-Values, and COLUMN AOD values that changed by 10% or more at the '''surface''': | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/GCC_13.1.0-beta.1_vs_GCC_13.3.0-rc.0_sig_diffs_sfc.txt GEOS-Chem Classic 13.3.0 vs 13.1.0] | |||
|TBD | |||
|-valign="top" | |||
|Species and J-Values that changed by 10% or more at '''500 hPa''': | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/GCC_13.1.0-beta.1_vs_GCC_13.3.0-rc.0_sig_diffs_500hpa.txt GEOS-Chem Classic 13.3.0 vs 13.1.0] | |||
|TBD | |||
|-valign="top" | |||
|Species and J-Values that changed by 10% or more in '''zonal mean''': | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/GCC_13.1.0-beta.1_vs_GCC_13.3.0-rc.0_sig_diffs_zonalmean.txt GEOS-Chem Classic 13.3.0 vs 13.1.0] | |||
|TBD | |||
|-valign="top" | |||
|'''Emissions''' that changed by 10% or more: | |||
|[http://ftp.as.harvard.edu/gcgrid/geos-chem/1mo_benchmarks/GC_13/13.3.0-rc.0/GCClassic/BenchmarkResults/GCC_13.1.0-beta.1_vs_GCC_13.3.0-rc.0_sig_diffs_emissions.txt GEOS-Chem Classic 13.3.0 vs 13.1.0] | |||
|TBD | |||
|-valign="top" bgcolor="#cccccc" | |||
!colspan="3"|Overview | |||
|-valign="top" | |||
|colspan="3"|'''''Below we summarize the notable changes caused by specific updates. Supplementary plots may be viewed at http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/.''''' | |||
'''1. [https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2020JD032706 HMS chemistry (via sulfate_mod.F90)]''' | |||
:This update introduces new advected species hydroxymethanesulfonate (HMS) in GEOS-Chem. This new chemistry has a relatively small impact on [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.2/Tables/GlobalMass_Trop.txt other species' concentrations] and on [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.2/Tables/OH_metrics.txt global mean OH]. Complete results from a 1-month benchmark evaluating the impact of this chemistry update may be viewed at [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.2/ this link]. | |||
'''2. [https://doi.org/10.1525/elementa.2021.00109 C2H2 and C2H4 chemistry]''' | |||
:This update introduces new advected species C2H2, C2H4, ETHN, and ETHP and adds one photolysis reaction. The new chemistry has a large (>10% impact) on GLYC, GLYX, H2O2, HCOOH, HMHP, MO2, MOH, MP, SOAGX (see [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.3/Tables/GlobalMass_Trop.txt this table]). [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.3/Tables/OH_metrics.txt Global mean OH] is reduced by -1.49%. Complete results from a 1-month benchmark evaluating the impact of this chemistry update may be viewed at [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.3/ this link]. | |||
'''3. [https://github.com/geoschem/geos-chem/issues/906 Fixed typo in CloudHet]''' | |||
:This fix has a large impact on [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.4/Tables/GlobalMass_Trop.txt many halogen species] and changed [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.4/Tables/OH_metrics.txt global mean OH] by +6.65%. See [https://github.com/geoschem/geos-chem/issues/906 this Github issue] for further discussion on the changes from this fix. | |||
'''4. [https://github.com/geoschem/geos-chem/issues/907 Revise gamma(N2O5) computation; cap A at 3.2e-8]''' | |||
:This update has a relatively small (<10%) impact on [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.5/Tables/GlobalMass_Trop.txt most species], but causes a large decrease in ClNO2. See [https://github.com/geoschem/geos-chem/issues/907 this Github issue] for further discussion on the changes from this update. | |||
'''5. [https://doi.org/10.5194/acp-2021-441 Updates to IONO2 hydrolysis from Wang et al. (2021)]''' | |||
:This update has a large (>10%) impact on IONO2 and HOI, but a relatively small impact on other species (see [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.9/Tables/GlobalMass_Trop.txt this table]). [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.9/Tables/OH_metrics.txt Global mean OH] changed by -0.11%. See the original [https://github.com/geoschem/geos-chem/pull/719 pull request on Github] for more details of this update and its impact on model output. | |||
'''6. [https://acp.copernicus.org/preprints/acp-2021-605/ Aromatic VOC chemistry]''' | |||
:This update added new advected species AONITA, AROMP4, AROMP5, BALD, BENZP, BZCO3H, BZPAN, CSL, MCT, NPHEN, PHEN and four photolysis reactions. The impact on other species is summarized in [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.10/Tables/GlobalMass_Trop.txt this table], and [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.10/Tables/OH_metrics.txt global mean OH] changed by -0.36%. Complete results from a 1-month benchmark evaluating the impact of this chemistry update may be viewed at [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.10/ this link]. | |||
'''7. [https://www.pnas.org/content/117/42/26076 Updated aerosol dry deposition]''' | |||
:See [https://github.com/geoschem/geos-chem/issues/604 this Github feature request] for details on the expected impact of this update. Complete results from a 1-month benchmark evaluating the impact of this chemistry update may be viewed at [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.11/ this link]. | |||
'''8. [https://github.com/geoschem/geos-chem/issues/833 Update volcano emissions to May 2020 and add climatology]''' | |||
:The volcano emissions inventory from GMAO has been updated from v20180523 to v202005. Plots for a 1-month benchmark evaluating the impact of this fix may be viewed at [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.8/ this link]. The impact on SO2 emissions from volcanoes is: | |||
################################################################################### | |||
### Emissions totals for inventory VOLCANOdegas [Tg] ### | |||
### Ref = GCC_13.3.0-alpha.7; Dev = GCC_13.3.0-alpha.8 ### | |||
################################################################################### | |||
Ref Dev Dev - Ref % diff | |||
VOLCANOdegas SO2 : 1.953161 1.826465 -0.126697 -6.487 | |||
################################################################################### | |||
### Emissions totals for inventory VOLCANOerupt [Tg] ### | |||
### Ref = GCC_13.3.0-alpha.7; Dev = GCC_13.3.0-alpha.8 ### | |||
################################################################################### | |||
Ref Dev Dev - Ref % diff | |||
VOLCANOerupt SO2 : 0.000000 0.101063 0.101063 nan | |||
'''9. [https://github.com/geoschem/HEMCO/issues/92 Avoid double counting of acetone source from monoterpenes when using online MEGAN]''' | |||
:This update reduced ACET emissions in the MEGAN extension. Plots for a 1-month benchmark evaluating the impact of this fix may be viewed at [http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/GCC_13.3.0-alpha.0/ this link]. The impact on total ACET emissions from MEGAN is: | |||
################################################################################### | |||
### Emissions totals for inventory MEGAN [Tg] ### | |||
### Ref = GCC_13.2.1; Dev = GCC_13.3.0-alpha.0 ### | |||
################################################################################### | |||
Ref Dev Dev - Ref % diff | |||
MEGAN ACET : 4.967504 4.374804 -0.592700 -11.932 | |||
'''The following updates introduced differences on the order of numerical noise:''' | |||
*[https://github.com/geoschem/geos-chem/pull/897 Cleaning up heterogeneous chemistry reaction rate computations] | |||
*[https://github.com/geoschem/geos-chem/issues/841 Fixed typos in ClNO2 hetchem reactions: HNO2 should be a product, not HNO3] | |||
|-bgcolor="#cccccc" | |||
!colspan="3"|Approval | |||
|-valign="top" | |||
|Requires further investigation: | |||
|colspan="2"| | |||
|-valign="top" | |||
|Approved by: | |||
|colspan="2"| | |||
|-valign="top" | |||
|Date of approval: | |||
|colspan="2"| | |||
|} | |||
=== 1-year benchmarks === | === 1-year benchmarks === | ||
TBD | TBD |
Revision as of 19:00, 14 October 2021
This page includes information about GEOS-Chem 13.3.0 which is currently in development.
Version overview
The items listed below have been added to GEOS-Chem 13.3.0 since GEOS-Chem 13.2.0. See also the following Github pages:
- 13.3.0 milestone for geoschem/geos-chem
- 13.3.0 milestone for geoschem/GCHP
- 3.2.0 milestone for geoschem/HEMCO
Feature | Contributor(s) | Model scope | Notes |
---|---|---|---|
Updates that will affect full-chemistry benchmark simulations | |||
Aromatic VOC chemistry | Kelvin Bates (Harvard) Ke Li (Harvard) Mike Long (Harvard) |
Chemistry | |
C2H2 and C2H4 chemistry | Kelvin Bates (Harvard) Ke Li (Harvard) Mike Long (GCST) |
Chemistry | |
CH3O2 + OH reaction | Kelvin Bates (Harvard) | Chemistry | |
HMS chemistry (via sulfate_mod.F90) | Jonathan Moch (Harvard) Mike Long (GCST) |
Chemistry | |
Updates to IONO2 hydrolysis from Wang et al. (2021) | Tomas Sherwen (York) | Chemistry | |
Revise gamma(N2O5) computation; cap A at 3.2e-8 | Viral Shah (Harvard) | Chemistry | |
Bug fixes in heterogeneous chemistry: | Viral Shah (Harvard) Chris Holmes(FSU) |
Chemistry | |
Cleaning up heterogeneous chemistry reaction rate computations | Bob Yantosca (GCST) | Chemistry & Structural |
|
Updated aerosol dry deposition | Jeff Pierce (CSU) | Dry deposition | |
Avoid double counting of acetone source from monoterpenes when using online MEGAN | Dylan Millet (UMN) | Emissions |
|
Update volcano emissions to May 2020 and add climatology | Christoph Keller (NASA/GMAO) | Emissions | |
Updates that will NOT affect full-chemistry benchmark simulations | |||
Updated offline dust emissions from Meng et al. (2021) | Jun Meng (WUStL) Yanshun Li (WUStL) |
Emissions |
|
Update US emissions to NEI2016 (as option) | Barron Henderson (EPA) Lyssa Freese (MIT) Melissa Sulprizio (GCST) |
Emissions | |
Send all HEMCO error messages to GEOS-Chem log | Lizzie Lundgren (GCST) | HEMCO | |
The ObsPack diagnostic can now use the ?ADV? wildcard | Jessica Haskins (MIT) | Diagnostics | |
Features only affecting GCHP: | |||
Include thread number in GEOS-Chem and HEMCO error messages | Lizzie Lundgren (GCST) | GCHP/GEOS |
|
GCHP Adjoint updates | Colin Lee (CU Boulder) | GCHP |
New data directories
The following data directories have been added or updated in this version. You will have to download the directories relevant to your simulation.
Inventory | Type | What was added? | Directory |
---|---|---|---|
GEOS-Chem Restart Files | Default | Updated full-chemistry and TOMAS restart files with new species for 13.3.0 added. | ExtData/GEOSCHEM_RESTARTS/v2021-09/ |
Boundary conditions | Default (nested-grid simulations only) |
Updated sample nested-grid boundary conditions with new species for 13.3.0 added. | ExtData/HEMCO/SAMPLE_BCs/v2021-09/ |
OFFLINE_DUST | Default | Offline dust emissions from Meng et al. (2021) | HEMCO/OFFLINE_DUST/v2021-08 |
VOLCANO | Default | Update offline dust emissions to May 2020 and add climatology | HEMCO/VOLCANO/v2021-09 |
NEI2016 | Optional | EPA NEI2016 emissions (2002-2020) | HEMCO/NEI2016/v2021-06 |
1-month benchmarks
1-month fullchem: Model setup
The following table describes the GEOS-Chem setup for both GEOS-Chem Classic and GCHP 1-month benchmark simulations.
Git tag(s): |
|
Compared to previous benchmark: | 13.2.0 |
Software environment: | gcc 10.2.0 OpenMPI 4.1.0 netcdf-fortran 4.5.3 CMake 3.17.3 ESMF 8.0.1 |
Model resolution: |
|
Meteorology fields: | MERRA-2
|
Initial conditions: | July 1, 2019
|
Benchmark month: | July 2019 |
Emissions setup: | HEMCO_Config.rc |
Chemistry mechanism: | fullchem.eqn |
This version will impact: (select all that apply with boldface) |
|
Benchmark Plots and Tables
NOTES:
- Enable PDF bookmarks in the file links to navigate between species. See the Species in GEOS-Chem wiki page for species definitions and details. If you do not see bookmarks in your browser try using a different browser (not Safari) or installing an Adobe Acrobat plug-in.
- Species categories and lumped species are defined in YAML files within the GEOS-Chem post-processing software GCPy.
1-month fullchem: GEOS-Chem Classic 13.3.0 vs 13.2.0
Below are links to plots and tables comparing 1-month simulations for GEOS-Chem Classic 13.3.0 (Dev) and GEOS-Chem Classic 13.2.0 (Ref).
Species Category | Plots | Additional Information | ||||
---|---|---|---|---|---|---|
Level Map | Zonal Mean | Emissions | ||||
Oxidants
O3, CO, OH, NOx |
sfc | 500hPa | full column | stratosphere | sfc | |
Aerosols
DST1, DST2, DST3, DST4, NH4, NIT, SO4, BCPI, BCPO, OCPI, OCPO, AERI, BrSALA, BrSALC, ISALA, ISALC, NITs, SALA, SALC, SO4s, Simple_SOA, Complex_SOA. pFe |
sfc | 500hPa | full column | stratosphere | column total | AOD |
Bromine
Bry, BrOx, Br, Br2, BrCl, BrNO2, BrNO3, BrO, CH3Br, CH2Br2, CHBr3, HOBr, HBr |
sfc | 500hPa | full column | stratosphere | column total | |
Chlorine
Cly, ClOx, Cl, ClO, Cl2, Cl2O2, ClOO, ClNO2, ClNO3, CCl4, CFCs, CH3Cl, CH2Cl2, CH3CCl3, CHCl3, HOCl, HCl, Halons, HCFCs, OClO |
sfc | 500hPa | full column | stratosphere | -- | |
Iodine
Iy, IxOy, I, I2, IBr, ICl, IO, IONO, IONO2, CH3I, CH2I2, CH2ICl, CH2IBr, HI, HOI, OIO |
sfc | 500hPa | full column | stratosphere | column total | |
Nitrogen
NOy, NOx, HNO2, HNO3, HNO4, MPAN, NIT, NO, NO2, NO3, N2O5, MPN, PAN, PPN, N2O, NHx, NH3, NH4, MENO3, ETNO3, IPRNO3, NPRNO3 |
sfc | 500hPa | full column | stratosphere | column total | |
Primary Organics
EOH, MOH, ISOP, MTPA, MTPO, LIMO, ALK4, BENZ, CH4, C2H6, C3H8, PRPE, TOLU, XYLE |
sfc | 500hPa | full column | stratosphere | column total | |
Secondary Organics
ACTA, ALD2, CH2O, HPALDs, MACR, IEPOX, ACET, HAC, MEK, MVK, ISOPN, GLYC, GLYX, HCOOH, MAP, RCHO, MP |
sfc | 500hPa | full column | stratosphere | column total | |
Secondary Organic Aerosols
TSOA0, TSOA1, TSOA2, TSOA3, ASOA1, ASOA2, ASOA3, ASOAN, TSOG0, TSOG1, TSOG2, TSOG3, ASOG1, ASOG2, ASOG3, INDIOL, LVOCOA, SOAIE, SOAGX, SOAP, SOAS |
sfc | 500hPa | full column | stratosphere | column total | |
Sulfur
SOx, DMS, OCS, SO2, SO4 |
sfc | 500hPa | full column | stratosphere | column total | |
ROy
H2O2, H, H2, H2O, HO2, O1D, OH, RO2 |
sfc | 500hPa | full column | stratosphere | -- | |
J-values | sfc | 500hPa | full column | stratosphere | -- | -- |
Emissions by HEMCO category | Total
Aircraft, Anthropogenic, Biomass Burning, Biogenic, Lightning, Natural, Ocean, Seabirds, Decaying Plants, Ship, Soil, Degassing Volcanoes, Erupting Volcanoes | |||||
Emission totals | Tables by species | |||||
Global mass | Entire atmosphere | |||||
Metrics | OH concentration, MCF lifetime, CH4 lifetime |
Benchmark assessment form
Performance | GEOS-Chem Classic | GCHP |
---|---|---|
Grid resolution: | 4° x 5° | C48 |
# CPUs, nodes: | 48 CPUs 1 node (Intel Cascade Lake) |
48 CPUs 2 nodes (Intel Cascade Lake) |
Wall time: | 03:30:53 | TBD |
CPU time / wall time: | 31.5510 | TBD |
% of ideal performance: | 65.73% | TBD |
Memory: | 12.097 GB | TBD |
Global mean OH: (% change from previous version) |
11.74989868895 x 105 molec/cm3 (+4.68) |
TBD |
Methyl chloroform lifetime: (% change from previous version) |
5.263415 years (-4.47%) |
TBD |
Methane lifetime: (% change from previous version) |
8.868914 years (-4.34%) |
TBD |
Details | ||
Species, J-Values, and COLUMN AOD values that changed by 10% or more at the surface: | GEOS-Chem Classic 13.3.0 vs 13.1.0 | TBD |
Species and J-Values that changed by 10% or more at 500 hPa: | GEOS-Chem Classic 13.3.0 vs 13.1.0 | TBD |
Species and J-Values that changed by 10% or more in zonal mean: | GEOS-Chem Classic 13.3.0 vs 13.1.0 | TBD |
Emissions that changed by 10% or more: | GEOS-Chem Classic 13.3.0 vs 13.1.0 | TBD |
Overview | ||
Below we summarize the notable changes caused by specific updates. Supplementary plots may be viewed at http://ftp.as.harvard.edu/gcgrid/geos-chem/validation/InternalBenchmarks/.
1. HMS chemistry (via sulfate_mod.F90)
4. Revise gamma(N2O5) computation; cap A at 3.2e-8
5. Updates to IONO2 hydrolysis from Wang et al. (2021)
################################################################################### ### Emissions totals for inventory VOLCANOdegas [Tg] ### ### Ref = GCC_13.3.0-alpha.7; Dev = GCC_13.3.0-alpha.8 ### ################################################################################### Ref Dev Dev - Ref % diff VOLCANOdegas SO2 : 1.953161 1.826465 -0.126697 -6.487 ################################################################################### ### Emissions totals for inventory VOLCANOerupt [Tg] ### ### Ref = GCC_13.3.0-alpha.7; Dev = GCC_13.3.0-alpha.8 ### ################################################################################### Ref Dev Dev - Ref % diff VOLCANOerupt SO2 : 0.000000 0.101063 0.101063 nan 9. Avoid double counting of acetone source from monoterpenes when using online MEGAN
################################################################################### ### Emissions totals for inventory MEGAN [Tg] ### ### Ref = GCC_13.2.1; Dev = GCC_13.3.0-alpha.0 ### ################################################################################### Ref Dev Dev - Ref % diff MEGAN ACET : 4.967504 4.374804 -0.592700 -11.932
| ||
Approval | ||
Requires further investigation: | ||
Approved by: | ||
Date of approval: |
1-year benchmarks
TBD