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Javier Vegas-Regidor
authored
Update CMIP6 tables to 6.9.32 (#706)
1 parent 19dc419 commit fdf1d05

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esmvalcore/cmor/tables/cmip6/Tables/CMIP6_3hr.json

+2-2
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{
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"Header": {
3-
"data_specs_version": "01.00.31",
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"data_specs_version": "01.00.32",
44
"cmor_version": "3.5",
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"table_id": "Table 3hr",
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"realm": "atmos",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_6hrLev.json

+4-4
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{
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"Header": {
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"data_specs_version": "01.00.31",
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"data_specs_version": "01.00.32",
44
"cmor_version": "3.5",
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"table_id": "Table 6hrLev",
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"realm": "atmos",
7-
"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",
@@ -23,7 +23,7 @@
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"cell_measures": "area: areacella",
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"long_name": "Aerosol Backscatter Coefficient",
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"comment": "Aerosol Backscatter at 550nm and 180 degrees, computed from extinction and lidar ratio",
26-
"dimensions": "longitude latitude time1 lambda550nm scatter180",
26+
"dimensions": "longitude latitude alevel time1 lambda550nm",
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"out_name": "bs550aer",
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"type": "real",
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"positive": "",
@@ -40,7 +40,7 @@
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",
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"long_name": "Aerosol Extinction Coefficient",
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"comment": "Aerosol Extinction at 550nm",
43+
"comment": "Aerosol volume extinction coefficient at 550nm wavelength.",
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"dimensions": "longitude latitude alevel time1 lambda550nm",
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"out_name": "ec550aer",
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"type": "real",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_6hrPlev.json

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{
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"Header": {
3-
"data_specs_version": "01.00.31",
3+
"data_specs_version": "01.00.32",
44
"cmor_version": "3.5",
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"table_id": "Table 6hrPlev",
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"realm": "atmos",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_6hrPlevPt.json

+4-4
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{
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"Header": {
3-
"data_specs_version": "01.00.31",
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"data_specs_version": "01.00.32",
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"cmor_version": "3.5",
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"table_id": "Table 6hrPlevPt",
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"realm": "atmos",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",
@@ -165,7 +165,7 @@
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"units": "W m-2",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",
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"long_name": "Longwave flux due to volcanic aerosols at the surface",
168+
"long_name": "Longwave Flux Due to Volcanic Aerosols at the Surface",
169169
"comment": "downwelling longwave flux due to volcanic aerosols at the surface to be diagnosed through double radiation call",
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"dimensions": "longitude latitude time1",
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"out_name": "lwsffluxaero",
@@ -251,7 +251,7 @@
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"rainmxrat27": {
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"frequency": "6hrPt",
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"modeling_realm": "atmos",
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"standard_name": "mass_fraction_of_rain_in_air",
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"standard_name": "mass_fraction_of_liquid_precipitation_in_air",
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"units": "1",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_AERday.json

+2-2
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{
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"Header": {
3-
"data_specs_version": "01.00.31",
3+
"data_specs_version": "01.00.32",
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"cmor_version": "3.5",
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"table_id": "Table AERday",
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"realm": "aerosol",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_AERhr.json

+2-2
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{
22
"Header": {
3-
"data_specs_version": "01.00.31",
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"data_specs_version": "01.00.32",
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"cmor_version": "3.5",
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"table_id": "Table AERhr",
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"realm": "aerosol",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_AERmon.json

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{
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"Header": {
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"data_specs_version": "01.00.31",
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"data_specs_version": "01.00.32",
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"cmor_version": "3.5",
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"table_id": "Table AERmon",
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"realm": "aerosol",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",
@@ -129,7 +129,7 @@
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"units": "mol mol-1",
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "C3H6 volume mixing ratio",
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"long_name": "C3H6 Volume Mixing Ratio",
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"comment": "Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.",
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"dimensions": "longitude latitude alevel time",
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"out_name": "c3h6",
@@ -147,7 +147,7 @@
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"units": "mol mol-1",
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
150-
"long_name": "C3H8 volume mixing ratio",
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"long_name": "C3H8 Volume Mixing Ratio",
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"comment": "Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.",
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"dimensions": "longitude latitude alevel time",
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"out_name": "c3h8",
@@ -201,7 +201,7 @@
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"units": "mol mol-1",
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "CH3COCH3 volume mixing ratio",
204+
"long_name": "CH3COCH3 Volume Mixing Ratio",
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"comment": "Mole fraction is used in the construction 'mole_fraction_of_X_in_Y', where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Acetone is an organic molecule with the chemical formula CH3CH3CO. The IUPAC name for acetone is propan-2-one. Acetone is a member of the group of organic compounds known as ketones. There are standard names for the ketone group as well as for some of the individual species.",
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"dimensions": "longitude latitude alevel time",
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"out_name": "ch3coch3",
@@ -400,7 +400,7 @@
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "Dry Deposition Rate of Black Carbon Aerosol Mass",
403-
"comment": "Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition.",
403+
"comment": "Dry deposition includes gravitational settling and turbulent deposition.",
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"dimensions": "longitude latitude time",
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"out_name": "drybc",
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"type": "real",
@@ -418,7 +418,7 @@
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "Dry Deposition Rate of Dust",
421-
"comment": "Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition.",
421+
"comment": "Dry deposition includes gravitational settling and turbulent deposition.",
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"dimensions": "longitude latitude time",
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"out_name": "drydust",
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"type": "real",
@@ -436,7 +436,7 @@
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "Dry Deposition Rate of NH3",
439-
"comment": "dry deposition includes gravitational settling, impact scavenging, and turbulent deposition",
439+
"comment": "Dry Deposition includes gravitational settling and turbulent deposition",
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"dimensions": "longitude latitude time",
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"out_name": "drynh3",
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"type": "real",
@@ -454,7 +454,7 @@
454454
"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "Dry Deposition Rate of NH4",
457-
"comment": "dry deposition includes gravitational settling, impact scavenging, and turbulent deposition",
457+
"comment": "Dry Deposition includes gravitational settling and turbulent deposition",
458458
"dimensions": "longitude latitude time",
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"out_name": "drynh4",
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"type": "real",
@@ -472,7 +472,7 @@
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "Dry Deposition Rate of NOy",
475-
"comment": "NOy is the sum of all simulated oxidized nitrogen species out of NO, NO2, HNO3, HNO4, NO3 aerosol, NO3(radical), N2O5, PAN, other organic nitrates. Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition.",
475+
"comment": "NOy is the sum of all simulated oxidized nitrogen species out of NO, NO2, HNO3, HNO4, NO3 aerosol, NO3(radical), N2O5, PAN, other organic nitrates. Dry deposition includes gravitational settling and turbulent deposition.",
476476
"dimensions": "longitude latitude time",
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"out_name": "drynoy",
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"type": "real",
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "Dry Deposition Rate of O3",
493-
"comment": "dry deposition includes gravitational settling, impact scavenging, and turbulent deposition.",
493+
"comment": "Dry Deposition includes gravitational settling and turbulent deposition.",
494494
"dimensions": "longitude latitude time",
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"out_name": "dryo3",
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"type": "real",
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "Dry Deposition Rate of Dry Aerosol Total Organic Matter",
511-
"comment": "Tendency of atmosphere mass content of organic dry aerosol due to dry deposition: This is the sum of dry deposition of primary organic aerosol (POA) and dry deposition of secondary organic aerosol (SOA). Here, mass refers to the mass of organic matter, not mass of organic carbon alone. We recommend a scale factor of POM=1.4*OC, unless your model has more detailed info available. Was called dry_pom in old ACCMIP Excel table. Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition.",
511+
"comment": "Tendency of atmosphere mass content of organic dry aerosol due to dry deposition: This is the sum of dry deposition of primary organic aerosol (POA) and dry deposition of secondary organic aerosol (SOA). Here, mass refers to the mass of organic matter, not mass of organic carbon alone. We recommend a scale factor of POM=1.4*OC, unless your model has more detailed info available. Was called dry_pom in old ACCMIP Excel table. Dry deposition includes gravitational settling and turbulent deposition.",
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"dimensions": "longitude latitude time",
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"out_name": "dryoa",
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"type": "real",
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "Dry Deposition Rate of SO2",
529-
"comment": "dry deposition includes gravitational settling, impact scavenging, and turbulent deposition",
529+
"comment": "Dry Deposition includes gravitational settling and turbulent deposition",
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"dimensions": "longitude latitude time",
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"out_name": "dryso2",
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"type": "real",
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "Dry Deposition Rate of SO4",
547-
"comment": "dry deposition includes gravitational settling, impact scavenging, and turbulent deposition",
547+
"comment": "Dry Deposition includes gravitational settling and turbulent deposition",
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"dimensions": "longitude latitude time",
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"out_name": "dryso4",
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"type": "real",
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",
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"long_name": "Dry Deposition Rate of Sea-Salt Aerosol",
565-
"comment": "Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition.",
565+
"comment": "Dry deposition includes gravitational settling and turbulent deposition.",
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"dimensions": "longitude latitude time",
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"out_name": "dryss",
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"type": "real",
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"reffclwtop": {
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"frequency": "mon",
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"modeling_realm": "aerosol",
1820-
"standard_name": "effective_radius_of_cloud_liquid_water_particle_at_liquid_water_cloud_top",
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"standard_name": "effective_radius_of_cloud_liquid_water_particles_at_liquid_water_cloud_top",
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"units": "m",
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"cell_methods": "area: time: mean",
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"cell_measures": "area: areacella",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_AERmonZ.json

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{
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"Header": {
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"data_specs_version": "01.00.31",
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"data_specs_version": "01.00.32",
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"cmor_version": "3.5",
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"table_id": "Table AERmonZ",
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"realm": "aerosol",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_Amon.json

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{
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"Header": {
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"data_specs_version": "01.00.31",
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"data_specs_version": "01.00.32",
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"cmor_version": "3.5",
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"table_id": "Table Amon",
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"realm": "atmos atmosChem",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_CF3hr.json

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{
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"Header": {
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"data_specs_version": "01.00.31",
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"data_specs_version": "01.00.32",
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"cmor_version": "3.5",
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"table_id": "Table CF3hr",
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"realm": "atmos",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",
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"reffclic": {
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"frequency": "3hrPt",
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"modeling_realm": "atmos",
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"standard_name": "effective_radius_of_convective_cloud_ice_particle",
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"standard_name": "effective_radius_of_convective_cloud_ice_particles",
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"units": "m",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",
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"reffclis": {
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"frequency": "3hrPt",
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"modeling_realm": "atmos",
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"standard_name": "effective_radius_of_stratiform_cloud_ice_particle",
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"standard_name": "effective_radius_of_stratiform_cloud_ice_particles",
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"units": "m",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",
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"reffclwc": {
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"frequency": "3hrPt",
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"modeling_realm": "atmos",
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"standard_name": "effective_radius_of_convective_cloud_liquid_water_particle",
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"standard_name": "effective_radius_of_convective_cloud_liquid_water_particles",
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"units": "m",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",
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"reffclws": {
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"frequency": "3hrPt",
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"modeling_realm": "atmos",
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"standard_name": "effective_radius_of_stratiform_cloud_liquid_water_particle",
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"standard_name": "effective_radius_of_stratiform_cloud_liquid_water_particles",
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"units": "m",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",
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"reffgrpls": {
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"frequency": "3hrPt",
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"modeling_realm": "atmos",
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"standard_name": "effective_radius_of_stratiform_cloud_graupel_particle",
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"standard_name": "effective_radius_of_stratiform_cloud_graupel_particles",
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"units": "m",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",
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"reffrainc": {
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"frequency": "3hrPt",
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"modeling_realm": "atmos",
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"standard_name": "effective_radius_of_convective_cloud_rain_particle",
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"standard_name": "effective_radius_of_convective_cloud_rain_particles",
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"units": "m",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",
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"reffrains": {
720720
"frequency": "3hrPt",
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"modeling_realm": "atmos",
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"standard_name": "effective_radius_of_stratiform_cloud_rain_particle",
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"standard_name": "effective_radius_of_stratiform_cloud_rain_particles",
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"units": "m",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",
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"reffsnowc": {
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"frequency": "3hrPt",
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"modeling_realm": "atmos",
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"standard_name": "effective_radius_of_convective_cloud_snow_particle",
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"standard_name": "effective_radius_of_convective_cloud_snow_particles",
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"units": "m",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",
@@ -755,7 +755,7 @@
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"reffsnows": {
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"frequency": "3hrPt",
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"modeling_realm": "atmos",
758-
"standard_name": "effective_radius_of_stratiform_cloud_snow_particle",
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"standard_name": "effective_radius_of_stratiform_cloud_snow_particles",
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"units": "m",
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"cell_methods": "area: mean time: point",
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"cell_measures": "area: areacella",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_CFday.json

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{
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"Header": {
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"data_specs_version": "01.00.31",
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"data_specs_version": "01.00.32",
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"cmor_version": "3.5",
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"table_id": "Table CFday",
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"realm": "atmos",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
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"missing_value": "1e20",
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"int_missing_value": "-999",
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"product": "model-output",

esmvalcore/cmor/tables/cmip6/Tables/CMIP6_CFmon.json

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{
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"Header": {
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"data_specs_version": "01.00.31",
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"data_specs_version": "01.00.32",
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"cmor_version": "3.5",
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"table_id": "Table CFmon",
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"realm": "atmos",
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"table_date": "24 July 2019",
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"table_date": "28 May 2020",
88
"missing_value": "1e20",
99
"int_missing_value": "-999",
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"product": "model-output",

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