1 | #- $Id: inca.card 70 2007-06-21 14:20:42Z acosce $ |
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2 | [Compatibility] |
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3 | libIGCM=1.0 |
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4 | |
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5 | [UserChoices] |
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6 | #choose if input file will be regrid by xios, or read without regrid with netcdf |
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7 | xios_read=n |
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8 | # Set LMDZ_10m_winds to choose if the simulation will use online 10m wind (=y) or offline (=n) |
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9 | LMDZ_10m_winds=y |
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10 | #choose threshold (10m winds) parameter value |
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11 | wind_parameter=0.85 |
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12 | # heat fluxes computed with feedback corresponding to 0 --> no aerosol effects, 1--> aerosol effects selected by ok_ade, ok_aie |
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13 | feedb=0 |
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14 | #active or not chemistry flux in output |
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15 | calcul_flux=n |
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16 | #choose which type of aircraft you will use (0 - 1 - 2 - 3) (no aircraft / old inca aircraft / new subsonic inca aircraft / subsonic + hypersonic inca aircraft) |
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17 | flag_plane=2 |
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18 | #choose which time interpolation you want to interpolate sflx file. ( 0 - 1) (no interpolation / point to point interpolation) |
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19 | #be careful name of sflx file change with the choice of emi_interp_time ( no file / sflx_p2p.nc ) |
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20 | emi_interp_time=1 |
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21 | |
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22 | #coupled model with Orchidee and Pisces |
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23 | #if yes, you need to put to CHEMISTRY_BVOC=y in orchidee.def and decomment lines for fertilizer and bbg in orchidee.card |
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24 | CoupOrchInca=y |
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25 | CoupOceAtm=y |
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26 | #choice of species transfer from ocean to atmosphere (via lmdz) |
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27 | transm_dms_oa=y |
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28 | transm_n2o_oa=y |
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29 | |
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30 | #choose which type of sflx_nat.nc file we are using |
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31 | multi_sources_nat=y |
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32 | |
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33 | |
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34 | # Specify output frequency for output files |
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35 | # Files inca_oxydants and aerosols_from_inca will be systematically write in output with a monthly frequency - you cannot manage them from this card |
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36 | # for other files you can choose the frequency 1d (daily), 1mo (monthly), other (1ts, 5d, etc.) or NONE if to deactivate it |
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37 | # if you choose 1d the file will be store in CHM/Output/DA |
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38 | # if you choose 1mo the file will be store in CHM/Output/MO |
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39 | # if you choose another frequency, the file will be store in CHM/Output/DA by default |
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40 | output_frequency_aero_chem=1d |
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41 | output_frequency_chem=1d |
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42 | output_frequency_emi=1d |
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43 | output_frequency_species=1d |
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44 | output_frequency_forcage=1d |
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45 | output_frequency_aero=1d |
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46 | output_frequency_dep=1d |
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47 | output_frequency_washrate=NONE |
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48 | output_frequency_veget=1d |
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49 | output_frequency_reacflux=NONE |
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50 | output_frequency_phtrate=NONE |
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51 | output_frequency_invariants=NONE |
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52 | |
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53 | [InitialStateFiles] |
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54 | List= () |
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55 | |
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56 | |
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57 | [BoundaryFiles] |
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58 | List=(${R_IN}/CHM/IPCC_AR6/SFLX/VERS4/${RESOL_CHM}/phy/Historical/ANT/sflx_lmdz_ANT_${year}_phy.nc, sflx_ANT.nc ),\ |
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59 | (${R_IN}/CHM/IPCC_AR6/SFLX/VERS4/${RESOL_CHM}/phy/Historical/BBG/sflx_lmdz_BBG_${year}_phy.nc, sflx_BBG.nc ),\ |
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60 | (${R_IN}/CHM/IPCC_AR6/SFLX/VERS4/${RESOL_CHM}/phy/Historical/NAT/sflx_lmdz_NAT_${year}_phy.nc, sflx_NAT.nc )\ |
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61 | (${R_IN}/CHM/IPCC_AR6/AIRCRAFT/${RESOL_CHM}/aircraft_1850_phy.nc , aircraft_mth.nc ),\ |
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62 | (${R_IN}/CHM/IPCC_AR6/SAD/${RESOL_CHM}/sad_cmip6_1850.nc , sad.nc ) |
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63 | |
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64 | |
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65 | ListNonDel= (${R_IN}/CHM/INCA${RESOL_CHM}/npp.nc , npp.nc )\ |
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66 | (${R_IN}/CHM/IPCC_AR6/SFLX/VERS4/${RESOL_CHM}/phy/sflx_lmdz_GHG_phy.nc , sflx_GHG.nc )\ |
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67 | (${R_IN}/CHM/IPCC_AR6/SFLX/VERS4/${RESOL_CHM}/phy/sflx_lmdz_MISC_phy.nc , sflx_MISC.nc )\ |
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68 | (${R_IN}/CHM/INCA${RESOL_CHM}/STRAT/o3coeff_lmdz_phy.nc , o3lin.nc )\ |
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69 | (${R_IN}/CHM/IPCC_AR6/lglived_CMIP6.dat , lglived.dat )\ |
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70 | (${R_IN}/CHM/INCA${RESOL_CHM}/STRAT/hikari_sc0_lmdz_phy.nc , aircraft_hs.nc )\ |
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71 | (${R_IN}/CHM/INCA${RESOL_CHM}/landuse.nc , landuse.nc )\ |
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72 | (${R_IN}/CHM/INCA${RESOL_CHM}/rhvEC.txt , rhvEC.txt )\ |
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73 | (${R_IN}/CHM/INCA${RESOL_CHM}/wthEC.txt , wthEC.txt )\ |
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74 | (${R_IN}/CHM/INCA${RESOL_CHM}/clyEC.txt , clyEC.txt )\ |
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75 | (${R_IN}/CHM/INCA${RESOL_CHM}/wth.dat , wth.dat )\ |
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76 | (${R_IN}/CHM/INCA${RESOL_CHM}/cly.dat , cly.dat )\ |
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77 | (${R_IN}/CHM/INCA${RESOL_CHM}/rhv.dat , rhv.dat )\ |
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78 | (${R_IN}/CHM/INCA${RESOL_CHM}/new_phototable.dat , phototable.dat ) |
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79 | |
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80 | |
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81 | [ParametersFiles] |
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82 | List= (${SUBMIT_DIR}/PARAM/inca.def_N2O , inca.def ),\ |
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83 | (${MODIPSL}/modeles/INCA/src/INCA_XML/context_inca.xml , . ),\ |
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84 | (${MODIPSL}/modeles/INCA/src/INCA_XML/field_def_inca.xml , . ),\ |
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85 | (${MODIPSL}/modeles/INCA/src/INCA_XML/file_def_inca_restart.xml , file_def_inca_restart.xml ), \ |
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86 | (${MODIPSL}/modeles/INCA/src/INCA_XML/file_def_inca_NMHC_AER.xml, file_def_inca.xml ),\ |
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87 | (${MODIPSL}/bin/inca_${ConfChem}.dat , inca.dat ) |
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88 | |
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89 | [RestartFiles] |
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90 | # List restart that have to be saved/restored each loop (file out, saved, and in) : |
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91 | List= (reprecipinsoil.dat, precipinsoil.dat, precipinsoil.dat),\ |
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92 | (chem_restart.nc, chem_restart.nc, chem_start.nc) |
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93 | |
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94 | |
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95 | [OutputText] |
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96 | List=(inca.out, inca.def,context_inca.xml,field_def_inca.xml,file_def_inca.xml, inca_IDxml.out) |
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97 | |
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98 | [OutputFiles] |
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99 | List= (inca1ts_aero_chem.nc , ${R_OUT_CHM_O_H}/${PREFIX}_1H_inca_aero_chem.nc , NONE ),\ |
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100 | (inca1d_aero_chem.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_aero_chem.nc , NONE ),\ |
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101 | (inca1d_emi.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_emi.nc , NONE ),\ |
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102 | (inca1d_species.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_species.nc , Post_1D_inca_species ),\ |
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103 | (inca1d_dep.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_dep.nc , NONE ),\ |
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104 | (inca1d_chem.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_chem.nc , Post_1D_inca_chem ),\ |
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105 | (inca1d_aero.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_aero.nc , Post_1D_inca_aero ),\ |
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106 | (inca1d_phtrate.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_phtrate.nc , NONE ),\ |
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107 | (inca1d_reacflux.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_reacflux.nc , NONE ),\ |
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108 | (inca1d_washrate.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_washrate.nc , NONE ),\ |
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109 | (inca1d_forcage.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_forcage.nc , Post_1D_inca_forcage ),\ |
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110 | (inca1d_veget.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_inca_veget.nc , Post_1D_inca_veget ),\ |
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111 | (inca1mo_aero_chem.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_aero_chem.nc , NONE ),\ |
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112 | (inca1mo_emi.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_emi.nc , NONE ),\ |
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113 | (inca1mo_species.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_species.nc , NONE ),\ |
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114 | (inca1mo_dep.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_dep.nc , NONE ),\ |
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115 | (inca1mo_chem.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_chem.nc , NONE ),\ |
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116 | (inca1mo_aero.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_aero.nc , NONE ),\ |
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117 | (inca1mo_phtrate.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_phtrate.nc , NONE ),\ |
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118 | (inca1mo_reacflux.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_reacflux.nc , NONE ),\ |
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119 | (inca1mo_washrate.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_washrate.nc , NONE ),\ |
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120 | (inca1mo_forcage.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_forcage.nc , NONE ),\ |
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121 | (inca1mo_veget.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_veget.nc , NONE ),\ |
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122 | (aerosols_from_inca.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_aerosols_from_inca.nc, NONE ),\ |
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123 | (inca_oxydants.nc , ${R_OUT_CHM_O_M}/${PREFIX}_1M_inca_oxydants.nc , NONE ),\ |
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124 | (mmr_ce0l_ico.nc , ${R_OUT_CHM_O_D}/${PREFIX}_1D_mmr_ce0l_ico.nc , NONE) |
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125 | |
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126 | |
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127 | |
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128 | [Post_1D_inca_aero] |
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129 | Patches= () |
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130 | GatherWithInternal = (lon, lat, presnivs, time_centered, time_centered_bounds, time_counter, area) |
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131 | TimeSeriesVars2D = (od550bcas,od550oaas,od550so4as, od550so4cs, od550ssas,od550ssss, od550sscs,od550dustci,od550bcai,od550oaai, loaddustci, loadno3ci, loadbcai, loadoaai, loadsscs, loadso4cs, loadno3cs, loadssas, loadbcas, loadoaas, loadso4as, loadnh4as, loadno3as, loadssss) |
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132 | ChunckJob2D = NONE |
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133 | TimeSeriesVars3D = () |
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134 | ChunckJob3D = NONE |
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135 | Seasonal=OFF |
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136 | |
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137 | [Post_1D_inca_species] |
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138 | Patches= () |
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139 | GatherWithInternal = (lon, lat, presnivs, time_centered, time_centered_bounds,time_counter, area) |
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140 | TimeSeriesVars2D = () |
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141 | ChunckJob2D = NONE |
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142 | TimeSeriesVars3D = (vmrno,vmrno2,vmro3,vmrch4,vmrco,,mmrso4cs, mmrso4as, mmrdms, mmrssss, vmrno3, vmrhno3, mmrbcai, mmrdustci) |
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143 | ChunckJob3D = NONE |
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144 | Seasonal=OFF |
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145 | |
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146 | |
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147 | [Post_1D_inca_chem] |
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148 | Patches= () |
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149 | GatherWithInternal = (lon, lat, presnivs,time_centered, time_centered_bounds, time_counter, area) |
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150 | TimeSeriesVars2D = (colo3, colco, colno2, colch2o, colch4, colhno2, coloh, colso2) |
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151 | ChunckJob2D = NONE |
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152 | TimeSeriesVars3D = () |
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153 | ChunckJob3D = NONE |
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154 | Seasonal=OFF |
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155 | |
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156 | [Post_1D_inca_forcage] |
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157 | Patches= () |
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158 | GatherWithInternal = (lon, lat, presnivs, time_centered, time_centered_bounds,time_counter, area) |
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159 | TimeSeriesVars2D = (SWTOAAS_ANT, SWTOAAS_AER, SWTOAAS_NAT, SWTOAAS_BC, SWTOAAS_SO4, SWTOAAS_POM, SWTOAAS_DUST, SWTOAAS_SS, SWTOAAS_DNO3, SWTOASS_SNO3, SWTOAAS_FNO3) |
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160 | ChunckJob2D = NONE |
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161 | TimeSeriesVars3D = () |
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162 | ChunckJob3D = NONE |
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163 | Seasonal=OFF |
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164 | |
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165 | [Post_1D_inca_veget] |
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166 | Patches= () |
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167 | GatherWithInternal = (lon, lat, veget, time_counter) |
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168 | TimeSeriesVars2D = (hdry,snowfromOrch,emi_isop,emi_mono) |
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169 | ChunckJob2D = NONE |
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170 | TimeSeriesVars3D = (flx_iso,flx_mono,flx_ORVOC,flx_acetal) |
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171 | ChunckJob3D = NONE |
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172 | Seasonal=OFF |
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