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| 1 | +#============================================================================== |
| 2 | +# diaginfo.dat: Created by GEOS-CHEM at 2018/05/09 18:08 |
| 3 | +# |
| 4 | +# ****** CUSTOMIZED FOR NOx-Ox-Hydrocarbon-Aerosol SIMULATION ***** |
| 5 | +# |
| 6 | +# This file contains category names and the offsets which they are stored |
| 7 | +# in file "tracerinfo.dat". This file is read into GAMAP by routine |
| 8 | +# "ctm_diaginfo.pro". |
| 9 | +# |
| 10 | +# File Format: |
| 11 | +# ----------------------------------------------------------------------------- |
| 12 | +# OFFSET (I8 ) Constant to add to tracer numbers in order to distinguish |
| 13 | +# for the given diagnostic category, as stored in file |
| 14 | +# "tracerinfo.dat". OFFSET may be up to 8 digits long. |
| 15 | +# -- (1X ) 1-character spacer |
| 16 | +# CATEGORY (A40) Category name for CTM diagnostics. NOTE: The category name |
| 17 | +# can be up to 40 chars long, but historically the GEOS-CHEM |
| 18 | +# and GISS models have used an 8-character category name. |
| 19 | +# COMMENT (A ) Descriptive comment string |
| 20 | +# |
| 21 | +# -- (1X ) 1-character spacer |
| 22 | +# |
| 23 | +##### SPACING BETWEEN DIAGNOSTIC CATEGORY OFFSETS = 1000 |
| 24 | +#============================================================================== |
| 25 | + 0 IJ-AVG-$ Tracer concentration |
| 26 | + 0 IJ-24H-$ 24-hr avg tracer conc. |
| 27 | + 0 INST-MAP Instantaneous tracer |
| 28 | + 0 IJ-MAX-$ Surface peak concentration |
| 29 | + 1000 ANTHSRCE Anthropogenic emissions |
| 30 | + 1000 BIOFSRCE Biofuel emissions |
| 31 | + 1000 NO-AC-$ Aircraft NO |
| 32 | + 1000 NO-AN-$ Anthropogenic NO |
| 33 | + 1000 NO-BIOB Biomass NO |
| 34 | + 1000 NO-BIOF Biofuel NO |
| 35 | + 1000 NO-LI-$ Lightning NO |
| 36 | + 1000 NO-SOIL Soil NO |
| 37 | + 1000 NO-FERT Fertilizer NO |
| 38 | + 1000 NO-STRT Stratopsheric NO |
| 39 | + 2000 INST_COL Instantaneous columns |
| 40 | + 3000 CV-FLX-$ Convective mass flux |
| 41 | + 3000 TURBMC-$ PBL mixing mass flux |
| 42 | + 3000 EW-FLX-$ E/W transport flux |
| 43 | + 3000 NS-FLX-$ N/S transport flux |
| 44 | + 3000 UP-FLX-$ Up/down transport flux |
| 45 | + 3000 STRT-FLX Flux from stratosphere |
| 46 | + 3000 RN--SRCE Rn-Pb-Be source |
| 47 | + 3000 RN-DECAY Rn-Pb-Be loss |
| 48 | + 3000 WETDCV-$ Conv wet scavenging |
| 49 | + 3000 WETDLS-$ Wet deposition |
| 50 | + 3000 MC-FRC-$ Moist conv fraction |
| 51 | + 4000 DMS-BIOG Biogenic DMS |
| 52 | + 4000 DUSTSRCE Dust emission |
| 53 | + 4000 NVOCSRCE NVOC emissions |
| 54 | + 4000 SALTSRCE Seasalt emission |
| 55 | + 4000 SO2-AC-$ Aircraft SO2 emissions |
| 56 | + 4000 SO2-AN-$ Anthro SO2 emissions |
| 57 | + 4000 SO2-BIOB Biomass SO2 emissions |
| 58 | + 4000 SO2-BIOF Biofuel SO2 emissions |
| 59 | + 4000 SO2-EV-$ Erup. Volcano SO2 |
| 60 | + 4000 SO2-NV-$ Non-Erup. Volcano SO2 |
| 61 | + 4000 SO2-SHIP SO2 from ship exhaust |
| 62 | + 4000 SO4-AN-$ Anthro SO4 emissions |
| 63 | + 4000 SO4-BIOF Biofuel SO4 emissions |
| 64 | + 4000 NH3-ANTH Anthro NH3 emissions |
| 65 | + 4000 NH3-NATU Natural NH3 emissions |
| 66 | + 4000 NH3-BIOB Biomass NH3 emissions |
| 67 | + 4000 NH3-BIOF Biofuel NH3 emissions |
| 68 | + 4000 TROPO-AV Trop avg'd tracer |
| 69 | + 4000 TCMASS-$ Tracer mass (kg) |
| 70 | + 10000 PEDGE-$ Pressure at level edges |
| 71 | + 10000 PS-PTOP Pressure level edges |
| 72 | + 11000 DAO-FLDS GMAO 2-D met fields |
| 73 | + 12000 DAO-3D-$ GMAO 3-D met fields |
| 74 | + 13000 JV-MAP-$ Photolysis rates |
| 75 | + 14000 OD-MAP-$ Optical Depths |
| 76 | + 15000 LANDMAP Land type map |
| 77 | + 16000 CHEM-L=$ Chemical Prod/Loss |
| 78 | + 17000 PORL-L=$ ND65 P/L family diagnostics |
| 79 | + 18000 PL-SUL=$ P/L of sulfur species |
| 80 | + 19000 TIME-SER Timeseries quantities |
| 81 | + 20000 CO--SRCE CO Source diagnostic |
| 82 | + 21000 BIOGSRCE Biogenic emissions |
| 83 | + 22000 ACETSRCE Acetone emissions |
| 84 | + 23000 EMDIS-BL Emissions in PBL |
| 85 | + 24000 BXHGHT-$ Boxheight, airmass, etc |
| 86 | + 25000 DXYP Surface area |
| 87 | + 26000 TR-PAUSE Annual mean tropopause |
| 88 | + 27000 PBLDEPTH Afternoon PBL height |
| 89 | + 28000 WD-FRC-$ Wet dep fraction |
| 90 | + 29000 WD-LSR-$ Large-scale rainout |
| 91 | + 29000 WD-CVR-$ Convective rainout |
| 92 | + 29000 WD-LSW-$ Large-scale washout |
| 93 | + 29000 WD-CVW-$ Convective washout |
| 94 | + 31000 COBUDGET bnd CO-OH budget |
| 95 | + 32000 CH4-LOSS CH4 Loss by OH |
| 96 | + 33000 BC-ANTH Anthro BC emission |
| 97 | + 33000 BC-BIOB Biomass BC emission |
| 98 | + 33000 BC-BIOF Biofuel BC emission |
| 99 | + 33000 OC-ANTH Anthro OC emission |
| 100 | + 33000 OC-BIOB Biomass OC emission |
| 101 | + 33000 OC-BIOF Biofuel OC emission |
| 102 | + 33000 OC-BIOG Biogenic OC emission |
| 103 | + 33000 OC-MTPA Biogenic MTPA emission |
| 104 | + 33000 OC-LIMO Biogenic ALPH emission |
| 105 | + 33000 OC-MTPO Biogenic MTPO emission |
| 106 | + 33000 OC-SESQ Biogenic SESQ emission |
| 107 | + 33000 PL-BC=$ H-philic from H-phobic BC |
| 108 | + 33000 PL-OC=$ Philic OC prod/SOA prod |
| 109 | + 33000 SALT-SR$ Sea salt emission |
| 110 | + 33000 BLKC-SR$ Black carbon emission |
| 111 | + 33000 ORGC-SR$ Organic Carbon emission |
| 112 | + 34000 HG-SRCE Hg emissions |
| 113 | + 61000 HG0-ANTH Hg(0) Anthro Emissions |
| 114 | + 62000 HG0-AQUA Hg(0) Ocean Mass |
| 115 | + 63000 HG0-RECY Hg(0) Land Prompt Recycling |
| 116 | + 64000 HGNET-OC Hg(0) Net Ocean Emissions |
| 117 | + 65000 HG0-GEOG Hg(0) Geogenic Emissions |
| 118 | + 66000 HG2-ANTH Hg(II) Anthro Emissions |
| 119 | + 67000 HG2-AQUA Hg(II) Ocean Mass |
| 120 | + 68000 HG2-SINK Hg(II) Sinking |
| 121 | + 69000 HGP-ANTH Hg(P) Anthro Emissions |
| 122 | + 70000 HGT-AQUA Hg Total Ocean Mass |
| 123 | + 71000 HGP-AQUA Hg(P) Ocean Mass |
| 124 | + 72000 HGP-CONV Hg(II) Aqeous Conversion to Particle |
| 125 | + 73000 HG0-BURN Hg(0) Biomass Burning Emissions |
| 126 | + 74000 HG0-VEGT Hg(0) Veg Transp. Emissions |
| 127 | + 75000 HG0-SOIL Hg(0) Soil Emissions |
| 128 | + 76000 HG0-FXUP Hg(0) Gross Ocean Up Flux |
| 129 | + 77000 HG0-FXDN Hg(0) Gross Ocean Down Flux |
| 130 | + 78000 HG0-SNOW Hg(0) Snow Emissions |
| 131 | + 79000 HG-NETOX Hg(0) to Hg(II) Net Oxidation |
| 132 | + 80000 HG2-OXOH Hg(0) Oxidation to Hg(II) by OH |
| 133 | + 81000 HG2-OXO3 Hg(0) Oxidation to Hg(II) by O3 |
| 134 | + 82000 HG2-SALT Hg(II) Loss by Sea Salt |
| 135 | + 83000 HG2-SSRX Hg(0) Sea Salt Reaction Rate |
| 136 | + 84000 HG2-OXBR Hg(0) Oxidation to Hg(II) by Br |
| 137 | + 35000 PL-HG2-$ Prod / loss of Hg2 |
| 138 | + 36000 DRYD-FLX Drydep fluxes |
| 139 | + 37000 DRYD-VEL Drydep velocities |
| 140 | + 38000 HCN-PL-$ HCN & CH3CN sinks |
| 141 | + 39000 HCN-SRCE HCN & CH3CN sources |
| 142 | + 40000 CO2-SRCE CO2 fluxes |
| 143 | + 41000 OCEAN-HG Oceanic Hg emissions |
| 144 | + 42000 LFLASH-$ Lightning flash rates |
| 145 | + 43000 IJ-SOA-$ SOA concentrations |
| 146 | + 44000 CH3ISRCE CH3I emissions |
| 147 | + 45000 BIOBSRCE Biomass emissions |
| 148 | + 46000 TIME-TPS Fraction of time in troposphere |
| 149 | + 47000 PL-H2HD- Prod / loss of H2-HD |
| 150 | + 48000 H2HD-SRC H2 HD emissions |
| 151 | + 50000 GAMMA-$ gamma values |
| 152 | + 49000 SNOW-HG Reducible Hg mass in ocean snow and ice |
| 153 | + 50000 SNOW-HGN Non-reducible Hg mass in ocean snow and |
| 154 | + 51000 SNHG-LN Reducible Hg mass in land snow and ice |
| 155 | + 52000 SNHGN-LN Non-reducible Hg mass in snow and ice |
| 156 | + 57000 THETA-$ Potential temperature |
| 157 | + 50000 CH4-EMIS CH4 Emissions |
| 158 | + 51000 WET-FRAC Wetland Fraction |
| 159 | + 59000 SHIP-$$$ Ship diagnostics |
| 160 | + 60000 RST-SOIL Soil NOx restart file |
| 161 | + 52000 PG-SRCE POPs Emissions |
| 162 | + 53000 PG-PP-$ POP partitioning/oxidation |
| 163 | + 54000 FJX-FLX$ Radiative flux from FAST-JX |
| 164 | + 55000 IJ-PSC-$ PSC restart file |
| 165 | + 72000 RADMAP-$ Radiative diagnostics |
| 166 | + 85000 ISOROP-$ ISORROPIA pH and H+ |
| 167 | + 50000 IJ-CHK-$ Species concentrations after chemistry |
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