1 | ########################################################################### |
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2 | ### RUN.DEF ### RUN.DEF ### RUN.DEF ### RUN.DEF ### RUN.DEF ### RUN.DEF ### |
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3 | ########################################################################### |
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4 | ### A MERGED VERSION TO BE USED WITH OLD OR RECENT LMDZ CORE |
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5 | ### i.e. compiles gcm.def+run.def in LMDZ5 with run.def in old planeto LMDZ |
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6 | ### (*) indicates same parameters in old and recent LMDZ core |
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7 | ########################################################################### |
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8 | |
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9 | ########################################################################### |
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10 | ### NUMERICAL INTEGRATIONS |
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11 | ########################################################################### |
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12 | ### nday --> number of days of integration (*) |
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13 | ### iperiod --> period for the Matsuno step (in dynamical steps) (*) |
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14 | ### day_step --> number of steps per day (multiple of iperiod) (*) |
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15 | ### purmats --> temporal integration: Matsuno or Matsuno-leapfrog? (*) |
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16 | ### grireg --> regular grid or not (*) |
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17 | ### adjust --> flag to activate load optimization |
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18 | ### use_filtre_fft --> flag to activate FFT filtering |
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19 | ########################################################################### |
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20 | nday = 65000 |
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21 | iperiod = 5 |
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22 | day_step = 70 |
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23 | purmats = .false. |
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24 | grireg = .true. |
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25 | adjust = n |
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26 | use_filtre_fft = n |
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27 | |
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28 | ########################################################################### |
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29 | ### WHAT RELATES TO PHYSICS |
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30 | ########################################################################### |
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31 | ### iphysiq --> period for calling physics (in dynamical steps) (*) |
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32 | ### ecritphy --> frequency for outputs in diagfi (in dynamical steps) (*) |
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33 | ### planet_type --> the planet |
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34 | ### disvert_type --> type of vertical coordinates (2 for planeto) |
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35 | ### hybrid --> use hybrid coordinates or not? (*) |
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36 | ### iflag_phys=0 --> no physics (e.g. shallow water) |
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37 | ### iflag_phys=1 --> physics (e.g. phylmd) |
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38 | ### iflag_phys=2 --> simple newtonian relaxation |
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39 | ### physic --> flag with or without physics (*) |
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40 | ########################################################################### |
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41 | iphysiq = 14 |
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42 | ecritphy = 7000 |
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43 | planet_type = generic |
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44 | disvert_type = 2 |
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45 | hybrid = .false. |
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46 | iflag_phys = 1 |
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47 | physic = .true. |
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48 | |
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49 | ########################################################################### |
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50 | ### INITIALIZATION and NUDGING |
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51 | ########################################################################### |
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52 | ### read_start --> with or without start files ? |
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53 | ### (without: initialization by iniacademic) |
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54 | ### raz_date=0 --> use the date in start file |
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55 | ### raz_date=1 --> erase the date and start from scratch |
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56 | ### ok_guide --> flag for nudging towards winds (needs relax.nc) |
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57 | ### facwind --> time constant for relaxation |
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58 | ### 5.e8 medium 1.e7-5.e6 strong 1.e6 very fast |
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59 | ########################################################################### |
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60 | read_start = y |
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61 | raz_date = 0 |
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62 | ok_guide = n |
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63 | facwind = 1.e6 |
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64 | |
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65 | ########################################################################### |
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66 | ### HORIZONTAL DISSIPATION |
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67 | ########################################################################### |
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68 | ### dissip_period --> period call to dissipation (in dynamical steps) |
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69 | ### - must be a multiple of iperiod |
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70 | ### - 0 means automatic computation |
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71 | ### - use idissip instead if old LMDZ core (idissip ignored in LMDZ5) |
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72 | ### dissip_fac_mid --> enhancement factor in middle atmosphere |
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73 | ### - set to 1 to prevent dissipation enhancement |
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74 | ### lstardis --> star or not star dissipation operator (*) |
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75 | ### nitergdiv --> number of iterations for gradiv operator (*) |
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76 | ### nitergrot --> number of iterations for nxgradrot operator (*) |
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77 | ### niterh --> number of iterations for divgrad operator (*) |
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78 | ### tetagdiv --> dissipation timescale of smallest wvl: u,v (gradiv) (*) |
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79 | ### tetagrot --> dissipation timescale of smallest wvl: u,v (nxgradrot) (*) |
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80 | ### tetatemp --> dissipation timescale of smallest wvl: h (divgrad) (*) |
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81 | ### coefdis --> coefficient for gamdissip (*) |
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82 | ########################################################################### |
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83 | dissip_period = 5 |
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84 | dissip_fac_mid = 1. |
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85 | lstardis = .true. |
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86 | nitergdiv = 1 |
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87 | nitergrot = 2 |
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88 | niterh = 2 |
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89 | tetagdiv = 5400. 8000. 160000. 1000. 2500. 4000. |
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90 | tetagrot = 7200. 8000. 160000. 1000. 2500. 4000. |
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91 | tetatemp = 7200. 8000. 160000. 1000. 2500. 4000. |
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92 | |
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93 | ########################################################################### |
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94 | ### ENHANCEMENT OF HORIZONTAL DISSIPATION IN UPPERMOST LEVELS |
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95 | ########################################################################### |
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96 | ### - not activated if ok_strato=n |
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97 | ### - dissip_fac_up --> enhancement factor |
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98 | ### - dissip_deltaz --> altitude range of transition (km) |
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99 | ### - dissip_hdelta --> scale height at transition (km) |
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100 | ### - dissip_pupstart --> pressure at bottom of transition region (Pa) |
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101 | ########################################################################### |
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102 | ok_strato = n |
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103 | dissip_fac_up = 5 |
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104 | dissip_deltaz = 150. |
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105 | dissip_hdelta = 50. |
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106 | dissip_pupstart = 50. |
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107 | |
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108 | ########################################################################### |
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109 | ### DAMPING ("SPONGE") LAYER AT MODEL TOP |
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110 | ########################################################################### |
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111 | ### iflag_top_bound=0 for no sponge |
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112 | ### iflag_top_bound=1 for sponge over 4 topmost layers |
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113 | ### iflag_top_bound=2 for sponge from top to ~1% of top layer pressure |
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114 | ### mode_top_bound=0 for no sponge |
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115 | ### mode_top_bound=1 for u,v --> 0 |
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116 | ### mode_top_bound=2 for u,v --> zonal mean |
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117 | ### mode_top_bound=3 for u,v,h --> zonal mean |
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118 | ### tau_top_bound --> damping frequency at last layer |
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119 | ### e-5 medium / e-4 strong yet reasonable / e-3 very strong |
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120 | ########################################################################### |
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121 | iflag_top_bound = 1 |
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122 | mode_top_bound = 1 |
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123 | tau_top_bound = 1.e-4 |
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124 | |
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125 | ########################################################################### |
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126 | ### OUTPUT FROM DYNAMICS |
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127 | ########################################################################### |
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128 | ### prt_level --> level of control prints (1-10) |
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129 | ### ok_dyn_ins --> flag instantaneous outputs (dyn_hist.nc) |
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130 | ### iecri --> frequency of instantaneous outputs (in dynamical steps) |
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131 | ### ok_dyn_ave --> flag averaged outputs (dyn_hist_ave.nc) |
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132 | ### periodav --> period of output of averages in dynamics (in days) |
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133 | ### ok_dynzon --> flag outputs dynzon |
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134 | ### NB: iecri and periodav used to be in old LMDZ core although useless |
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135 | ### iconser --> frequency of outputs of control variables (in dyn steps)(*) |
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136 | ########################################################################### |
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137 | prt_level = 1 |
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138 | ok_dyn_ins = n |
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139 | iecri = 480 |
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140 | ok_dyn_ave = n |
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141 | periodav = 1 |
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142 | ok_dynzon = n |
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143 | iconser = 120 |
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144 | |
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145 | ########################################################################### |
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146 | ### ZOOMED GRID (same parameters in old and recent LMDZ core) |
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147 | ########################################################################### |
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148 | ### clon --> longitude of center of zoom (deg) (*) |
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149 | ### clat --> latitude of center of zoom (deg) (*) |
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150 | ### grossismx --> zoom factor in longitude (*) |
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151 | ### grossismy --> zoom factor in latitude (*) |
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152 | ### dzoomx --> longitude extent of zoom zone (fraction of total area) (*) |
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153 | ### dzoomy --> latitude extent of zoom zone (fraction of total area) (*) |
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154 | ### taux --> "stifness" of zoom in longitude (*) |
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155 | ### tauy --> "stifness" of zoom in latitude (*) |
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156 | ### fxyhypb --> f(y) hyperbolic (T) or sinusoidal (F) (*) |
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157 | ### ysinus --> f(y) = sin(lat) (T) or lat (F) (*) |
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158 | ########################################################################### |
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159 | clon = 0. |
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160 | clat = 0. |
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161 | grossismx = 1. |
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162 | grossismy = 1. |
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163 | dzoomx = 0. |
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164 | dzoomy = 0. |
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165 | taux = 2. |
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166 | tauy = 2. |
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167 | fxyhypb = .false. |
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168 | ysinus = .false. |
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169 | |
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170 | ########################################################################### |
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171 | ### LEFTOVERS |
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172 | ### calend=earth_360d ## specific calendar |
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173 | ### resetvarc=n ## reinit des variables de controle |
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174 | ### iflag_trac=0 ## avec ou sans traceurs |
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175 | ### dayref=10120 ## initial date |
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176 | ### anneeref=2000 ## year of initial state |
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177 | ### --- old version of spong layer |
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178 | ## Avec sponge layer |
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179 | # callsponge = .true. |
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180 | ## Sponge: mode0(u=v=0), mode1(u=umoy,v=0), mode2(u=umoy,v=vmoy) |
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181 | # mode_sponge= 2 |
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182 | ## Sponge: hauteur de sponge (km) |
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183 | # hsponge= 50 |
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184 | ## Sponge: tetasponge (secondes) |
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185 | # tetasponge = 50000 |
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186 | |
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187 | ########################################################################### |
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188 | ### INCLUDE OTHER DEF FILES (physics, specific settings, etc...) |
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189 | ########################################################################### |
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190 | INCLUDEDEF=callphys.def |
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191 | #INCLUDEDEF=modif.def |
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