1 | ####MARS MARS MARS MARS MARS |
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2 | ####MARS MARS MARS MARS MARS |
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3 | #### |
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4 | #### variables physiques ecrites dans les fichiers WRF |
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5 | #### - h indique l'ecriture |
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6 | #### - en commentaire, les variables physiques dans physiq.F |
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7 | #### - utiliser le script automatique Registry.bash |
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8 | #### |
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9 | #### YOU CAN OUTPUT ANY 2D OR 3D VARIABLE THAT IS AVAILABLE IN MESO_PHYSIQ.F |
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10 | #### --- please indicate #SAVEMARS2 for 2D fields and #SAVEMARS3 for 3D fields |
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11 | #### |
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12 | ############ name in WRF !!!!! ############# name in NETCDF !!!! ############################################## name in meso_physiq !!!!! |
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13 | state real TSURF ij misc 1 - rhd "TSURF" "SURF TEMPERATURE" "K" #SAVEMARS2 tsurf |
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14 | state real CO2ICE ij misc 1 - rhd "CO2ICE" "CO2 GROUND ICE" "kg m-2" #SAVEMARS2 co2ice |
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15 | state real EMISSIV ij misc 1 - rhd "EMISSIV" "EMISSIVITY" "" #SAVEMARS2 emis |
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16 | state real THETA ij misc 1 - rd "THETA" "SLOPE INCLINATION" "deg" #SAVEMARS2 theta_sl |
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17 | state real PSI ij misc 1 - rd "PSI" "SLOPE ORIENTATION" "deg" #SAVEMARS2 psi_sl |
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18 | state real TAU_DUST ij misc 1 - rhd "TAU_DUST" "REFERENCE VISIBLE DUST OPACITY" "" #SAVEMARS2 tauref |
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19 | state real SWDOWNZ ij misc 1 - rhd "SWDOWNZ" "DOWNWARD SW FLUX AT SURFACE" "W m-2" #SAVEMARS2 fluxsurf_sw_tot |
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20 | state real LWDOWNZ ij misc 1 - rhd "LWDOWNZ" "DOWNWARD LW FLUX AT SURFACE" "W m-2" #SAVEMARS2 fluxsurf_lw |
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21 | state real SWUP ij misc 1 - rd "SWUP" "UPWARD SW FLUX AT TOP" "W m-2" #SAVEMARS2 fluxtop_sw_tot |
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22 | state real LWUP ij misc 1 - rd "LWUP" "UPWARD LW FLUX AT TOP" "W m-2" #SAVEMARS2 fluxtop_lw |
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23 | state real MTOT ij misc 1 - rhd "MTOT" "TOTAL MASS WATER VAPOR in pmic" "pmic" #SAVEMARS2 mtot |
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24 | state real ICETOT ij misc 1 - rhd "ICETOT" "TOTAL MASS WATER ICE" "kg m-2" #SAVEMARS2 icetot |
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25 | state real RAVE ij misc 1 - rhd "RAVE" "MEAN ICE RADIUS" "m" #SAVEMARS2 rave |
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26 | state real RICE ikj misc 1 - rhd "RICE" "ICE RADIUS" "m" #SAVEMARS3 rice |
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27 | state real HR_SW ikj misc 1 - rd "HR_SW" "HEATING RATE SW" "K/s" #SAVEMARS3 zdtsw |
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28 | state real HR_LW ikj misc 1 - rd "HR_LW" "HEATING RATE LW" "K/s" #SAVEMARS3 zdtlw |
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29 | state real HR_SH ikj misc 1 - rd "HR_SH" "HEATING RATE sens. heat" "K/s" #SAVEMARS3 zdtdif |
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30 | state real QSURFICE ij misc 1 - rhd "QSURFICE" "WATER ICE AT SURFACE" "kg m-2" #SAVEMARS2 qsurfice |
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31 | state real RDUST ikj misc 1 - rd "RDUST" "DUST RADIUS" "m" #SAVEMARS3 rdust |
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32 | state real HR_NIR ikj misc 1 - rd "HR_NIR" "HEATING RATE nirco2" "K/s" #SAVEMARS3 zdtnirco2 |
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33 | state real HR_NLTE ikj misc 1 - rd "HR_NLTE" "HEATING RATE nlte" "K/s" #SAVEMARS3 zdtnlte |
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34 | state real ALBBARE ij misc 1 - rhd "ALBBARE" "SOIL ALBEDO" "" #SAVEMARS2 albedodat |
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35 | state real VMR_ICE ikj misc 1 - rhd "VMR_ICE" "VOL. MIXING RATIO ICE" "ppm" #SAVEMARS3 vmr |
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36 | state real TAU_ICE ij misc 1 - rhd "TAU_ICE" "CLOUD OD at 825 cm-1 TES" "" #SAVEMARS2 tauTES |
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37 | state real PDTZ ikj misc 1 - rd "PDT" "TEMP TENDENCY" "K s-1" #SAVEMARS3 pdt |
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38 | #### |
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39 | #### |
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40 | ####MARS MARS MARS MARS MARS |
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41 | ####MARS MARS MARS MARS MARS |
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42 | |
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43 | ####MARS MARS MARS MARS MARS |
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44 | ####MARS MARS MARS MARS MARS |
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45 | #### |
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46 | #### |
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47 | #### TRACEURS: l'ordre dans SCALAR est defini plus bas dans les options mars) |
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48 | #### - effacer le h si l'on veut eviter les sorties |
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49 | #### |
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50 | state real - ikjftb scalar 1 - - - |
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51 | state real qh2o ikjftb scalar 1 - i01rhusdf=(bdy_interp:dt) "QH2O" "Water vapor mixing ratio" "kg kg-1" |
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52 | state real qh2o_ice ikjftb scalar 1 - i01rusdf=(bdy_interp:dt) "QH2O_ICE" "Water ice mixing ratio" "kg kg-1" |
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53 | state real qdust ikjftb scalar 1 - i01rusdf=(bdy_interp:dt) "QDUST" "Dust mixing ratio" "kg kg-1" |
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54 | state real qdustn ikjftb scalar 1 - i01rusdf=(bdy_interp:dt) "QDUSTN" "Dust_number mixing ratio" "kg kg-1" |
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55 | state real qco2 ikjftb scalar 1 - i01rusdf=(bdy_interp:dt) "QCO2" "CO2 mixing ratio" "kg kg-1" |
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56 | #### |
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57 | #### |
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58 | ####MARS MARS MARS MARS MARS |
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59 | ####MARS MARS MARS MARS MARS |
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60 | |
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61 | state real u ikjb dyn_em 2 X \ |
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62 | i01rhusdf=(bdy_interp:dt) "U" "x-wind component" "m s-1" |
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63 | |
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64 | |
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65 | |
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66 | state real alb ikj dyn_em 1 - rdus "alb" "inverse base density" "m3 kg-1" |
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67 | state real zx ikj dyn_em 1 X - " " " " " " |
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68 | state real zy ikj dyn_em 1 Y - " " " " " " |
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69 | state real rdz ikj dyn_em 1 Z - " " " " " " |
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70 | state real rdzw ikj dyn_em 1 Z - " " " " " " |
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71 | state real pb ikj dyn_em 1 - rdus "pb" "BASE STATE PRESSURE " "Pa" |
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72 | ## |
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73 | ## MARS: TO GET LIGHTER HISTORY FILES |
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74 | ## |
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75 | state real ptot ikj dyn_em 1 - irh "PTOT" "total pressure" "Pa" |
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76 | ####### if you choose h here, you will probably want not to output u,v,w,t,etc... |
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77 | state real uave ikj dyn_em 1 - ir "UAVE" "average zonal wind" "m/s" |
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78 | state real ustd ikj dyn_em 1 - ir "USTD" "std dev zonal wind" "m/s" |
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79 | state real vave ikj dyn_em 1 - ir "VAVE" "average meridional wind" "m/s" |
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80 | state real vstd ikj dyn_em 1 - ir "VSTD" "std dev meridional wind" "m/s" |
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