1 | # |
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2 | #************************************************************************** |
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3 | # Parameter file list for ORCHIDEE |
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4 | #************************************************************************** |
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5 | |
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6 | # Input and output |
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7 | #************************************************************************** |
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8 | # Restart the time from the GCM. |
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9 | # default = n |
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10 | SECHIBA_reset_time = y |
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11 | |
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12 | # Name of restart to read for initial conditions |
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13 | # default = NONE |
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14 | SECHIBA_restart_in = _AUTOBLOCKER_ |
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15 | |
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16 | # Name of restart to read for initial conditions of STOMATE |
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17 | # default = NONE |
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18 | STOMATE_RESTART_FILEIN = _AUTOBLOCKER_ |
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19 | |
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20 | # Use XIOS for writing diagnostics file |
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21 | # defulat = n |
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22 | XIOS_ORCHIDEE_OK = y |
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23 | |
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24 | # Writefrequency in seconds in sechiba_history.nc |
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25 | # default = 86400.0 |
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26 | WRITE_STEP = 0 |
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27 | |
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28 | # Hydrology parameters |
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29 | #************************************************************************** |
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30 | # Activate the multi-layer diffusion scheme adapted from CWRR |
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31 | # by default the Choisnel hydrology is used. |
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32 | # default = n |
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33 | HYDROL_CWRR = y |
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34 | |
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35 | # Activate river routing |
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36 | # default = n |
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37 | RIVER_ROUTING = y |
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38 | |
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39 | #************************************************************************** |
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40 | # Activate Stomate component |
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41 | # default = n |
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42 | STOMATE_OK_STOMATE = _AUTOBLOCKER_ |
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43 | |
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44 | # Activate calculations of CO2 according to Farqhuar and Ball |
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45 | # default = n |
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46 | STOMATE_OK_CO2 = y |
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47 | |
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48 | # Use cdrag coefficient from gcm |
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49 | CDRAG_FROM_GCM = y |
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50 | |
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51 | # Interception reservoir coefficient. |
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52 | # default = 0.1 |
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53 | SECHIBA_QSINT = 0.02 |
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54 | |
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55 | # |
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56 | # Parameters related to vegetation map |
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57 | #************************************************************************** |
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58 | # Year of the land_use vegetation map readed |
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59 | # year off the pft map |
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60 | # default = 282 |
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61 | VEGET_YEAR = 1 |
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62 | |
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63 | # The parameter is used to bypass veget_year count |
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64 | # and reinitialize it with VEGET_YEAR parameter. |
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65 | # Then it is possible to change LAND USE file. |
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66 | # If LAND_USE |
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67 | # default = y |
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68 | VEGET_REINIT = n |
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69 | |
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70 | # Update vegetation frequency (since 2.0 version) |
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71 | # The veget datas will be update at this period if LAND_USE |
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72 | # default = 1Y |
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73 | VEGET_UPDATE = _AUTO_ |
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74 | |
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75 | # Do not use default fire module |
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76 | FIRE_DISABLE = y |
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77 | |
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78 | # Create river description file |
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79 | RIVER_DESC = _AUTO_ |
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80 | RIVER_DESC_FILE = river_desc.nc |
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81 | |
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82 | # Parameters related to surface and thermal physical properties |
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83 | #************************************************************************ |
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84 | # Read bare soil albedo from file with background MODIS data |
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85 | ALB_BG_MODIS = y |
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86 | ALB_BG_FILE = alb_bg.nc |
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87 | |
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88 | # ROUGH_DYN : Account for a dynamic roughness height (activation of Su et al. parametrization) |
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89 | ROUGH_DYN=y |
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90 | |
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91 | # OK_FREEZE : Activate the complet soil freezing scheme |
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92 | OK_FREEZE=n |
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93 | |
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94 | # DEPTH_MAX_T (m) : Maximum depth of the soil thermodynamics |
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95 | DEPTH_MAX_T=90 |
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96 | |
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97 | # OK_EXPLICITSNOW : Activate explict snow scheme |
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98 | OK_EXPLICITSNOW=y |
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99 | |
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100 | # READ_REFTEMP : Initialize soil temperature using climatological temperature |
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101 | READ_REFTEMP=n |
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102 | |
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103 | # Parameters related to chemistry bvoc |
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104 | #************************************************************************ |
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105 | # CHEMISTRY_OK_BVOC : Activate chemistry |
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106 | CHEMISTRY_BVOC = n |
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107 | |
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108 | # CO2 FOR BVOC - WILKINSON : CO2 inhibition effect for isoprene based on Wilkinson approach? |
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109 | CO2_FOR_BVOC_WILKINSON=n |
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110 | |
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111 | # CO2 FOR BVOC - POSSELL : CO2 inhibition effect for isoprene based on Possell approach? |
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112 | CO2_FOR_BVOC_POSSELL=n |
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113 | |
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