1 | ! $Id: phyredem.F90 5116 2024-07-24 12:54:37Z abarral $ |
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2 | |
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3 | SUBROUTINE phyredem(fichnom) |
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4 | |
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5 | !------------------------------------------------------------------------------- |
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6 | ! Author: Z.X. Li (LMD/CNRS), 1993/08/18 |
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7 | !------------------------------------------------------------------------------- |
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8 | ! Purpose: Write restart state for physics. |
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9 | !------------------------------------------------------------------------------- |
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10 | USE dimphy, ONLY: klon, klev |
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11 | USE fonte_neige_mod, ONLY: fonte_neige_final |
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12 | USE pbl_surface_mod, ONLY: pbl_surface_final |
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13 | USE phys_state_var_mod, ONLY: radpas, zmasq, pctsrf, & |
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14 | ftsol, beta_aridity, delta_tsurf, falb_dir, & |
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15 | falb_dif, qsol, fevap, radsol, solsw, sollw, & |
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16 | sollwdown, rain_fall, snow_fall, bs_fall, z0m, z0h, & |
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17 | agesno, zmea, zstd, zsig, zgam, zthe, zpic, & |
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18 | zval, rugoro, t_ancien, q_ancien, & |
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19 | prw_ancien, prlw_ancien, prsw_ancien, prbsw_ancien, & |
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20 | ql_ancien, qs_ancien, qbs_ancien, rneb_ancien, u_ancien, & |
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21 | v_ancien, clwcon, rnebcon, ratqs, pbl_tke, & |
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22 | wake_delta_pbl_tke, zmax0, f0, sig1, w01, & |
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23 | wake_deltat, wake_deltaq, wake_s, awake_s, & |
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24 | wake_dens, awake_dens, cv_gen, & |
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25 | wake_cstar, & |
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26 | wake_pe, wake_fip, fm_therm, entr_therm, & |
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27 | detr_therm, ale_bl, ale_bl_trig, alp_bl, & |
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28 | ale_wake, ale_bl_stat, & |
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29 | du_gwd_rando, du_gwd_front, u10m, v10m, & |
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30 | treedrg, solswfdiff, delta_sal, ds_ns, dt_ns, & |
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31 | delta_sst, ratqs_inter_, dter, dser, dt_ds |
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32 | |
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33 | USE lmdz_geometry, ONLY: longitude_deg, latitude_deg |
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34 | USE iostart, ONLY: open_restartphy, close_restartphy, enddef_restartphy, put_field, put_var |
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35 | USE traclmdz_mod, ONLY: traclmdz_to_restart |
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36 | USE infotrac_phy, ONLY: type_trac, nqtot, tracers, nbtr |
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37 | USE carbon_cycle_mod, ONLY: carbon_cycle_cpl, co2_send, carbon_cycle_rad, RCO2_glo |
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38 | USE indice_sol_mod, ONLY: nbsrf, is_oce, is_sic, is_ter, is_lic, epsfra |
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39 | USE surface_data, ONLY: type_ocean, version_ocean |
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40 | USE ocean_slab_mod, ONLY: nslay, tslab, seaice, tice, fsic |
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41 | USE time_phylmdz_mod, ONLY: annee_ref, day_end, itau_phy, pdtphys |
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42 | use config_ocean_skin_m, ONLY: activate_ocean_skin |
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43 | USE lmdz_abort_physic, ONLY: abort_physic |
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44 | |
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45 | IMPLICIT none |
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46 | |
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47 | include "dimsoil.h" |
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48 | include "clesphys.h" |
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49 | include "alpale.h" |
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50 | include "compbl.h" |
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51 | !====================================================================== |
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52 | CHARACTER*(*) fichnom |
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53 | |
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54 | ! les variables globales ecrites dans le fichier restart |
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55 | |
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56 | REAL tsoil(klon, nsoilmx, nbsrf) |
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57 | REAL qsurf(klon, nbsrf) |
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58 | REAL snow(klon, nbsrf) |
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59 | real fder(klon) |
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60 | REAL run_off_lic_0(klon) |
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61 | REAL trs(klon, nbtr) |
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62 | |
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63 | INTEGER nid, nvarid, idim1, idim2, idim3 |
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64 | INTEGER ierr |
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65 | INTEGER length |
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66 | PARAMETER (length = 100) |
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67 | REAL tab_cntrl(length) |
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68 | |
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69 | INTEGER isoil, nsrf, isw |
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70 | CHARACTER (len = 2) :: str2 |
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71 | CHARACTER (len = 256) :: nam, lnam |
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72 | INTEGER :: it, iq, pass |
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73 | |
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74 | !====================================================================== |
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75 | |
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76 | ! Get variables which will be written to restart file from module |
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77 | ! pbl_surface_mod |
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78 | if (iflag_physiq <= 1) THEN |
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79 | CALL pbl_surface_final(fder, snow, qsurf, tsoil) |
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80 | endif |
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81 | |
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82 | ! Get a variable calculated in module fonte_neige_mod |
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83 | CALL fonte_neige_final(run_off_lic_0) |
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84 | |
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85 | !====================================================================== |
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86 | |
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87 | CALL open_restartphy(fichnom) |
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88 | |
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89 | DO ierr = 1, length |
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90 | tab_cntrl(ierr) = 0.0 |
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91 | ENDDO |
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92 | tab_cntrl(1) = pdtphys |
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93 | tab_cntrl(2) = radpas |
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94 | ! co2_ppm : current value of atmospheric CO2 |
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95 | tab_cntrl(3) = co2_ppm |
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96 | tab_cntrl(4) = solaire |
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97 | tab_cntrl(5) = iflag_con |
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98 | tab_cntrl(6) = nbapp_rad |
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99 | |
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100 | IF(iflag_cycle_diurne>=1) tab_cntrl(7) = iflag_cycle_diurne |
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101 | IF(soil_model) tab_cntrl(8) = 1. |
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102 | IF(new_oliq) tab_cntrl(9) = 1. |
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103 | IF(ok_orodr) tab_cntrl(10) = 1. |
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104 | IF(ok_orolf) tab_cntrl(11) = 1. |
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105 | |
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106 | tab_cntrl(13) = day_end |
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107 | tab_cntrl(14) = annee_ref |
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108 | tab_cntrl(15) = itau_phy |
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109 | |
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110 | ! co2_ppm0 : initial value of atmospheric CO2 |
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111 | ! tab_cntrl(16) = co2_ppm0 |
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112 | |
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113 | ! PC -- initial value of RCO2 for the radiation scheme |
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114 | ! tab_cntrl(17) = co2_ppm * 1.0e-06 * RMCO2 / RMD |
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115 | IF (carbon_cycle_rad) tab_cntrl(17) = RCO2_glo |
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116 | !PRINT*, "PC : phyredem RCO2_glo =",RCO2_glo |
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117 | |
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118 | DO pass = 1, 2 ! pass=1 netcdf definition ; pass=2 netcdf write |
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119 | |
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120 | CALL put_var(pass, "controle", "Parametres de controle", tab_cntrl) |
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121 | |
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122 | CALL put_field(pass, "longitude", & |
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123 | "Longitudes de la grille physique", longitude_deg) |
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124 | |
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125 | CALL put_field(pass, "latitude", "Latitudes de la grille physique", latitude_deg) |
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126 | |
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127 | ! PB ajout du masque terre/mer |
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128 | |
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129 | CALL put_field(pass, "masque", "masque terre mer", zmasq) |
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130 | |
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131 | ! BP ajout des fraction de chaque sous-surface |
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132 | |
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133 | ! Get last fractions from slab ocean |
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134 | IF (type_ocean == 'slab' .AND. version_ocean == "sicINT") THEN |
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135 | WHERE (1. - zmasq(:)>EPSFRA) |
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136 | pctsrf(:, is_oce) = (1. - fsic(:)) * (1. - zmasq(:)) |
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137 | pctsrf(:, is_sic) = fsic(:) * (1. - zmasq(:)) |
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138 | END WHERE |
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139 | END IF |
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140 | |
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141 | ! 1. fraction de terre |
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142 | |
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143 | CALL put_field(pass, "FTER", "fraction de continent", pctsrf(:, is_ter)) |
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144 | |
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145 | ! 2. Fraction de glace de terre |
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146 | |
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147 | CALL put_field(pass, "FLIC", "fraction glace de terre", pctsrf(:, is_lic)) |
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148 | ! 3. fraction ocean |
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149 | |
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150 | CALL put_field(pass, "FOCE", "fraction ocean", pctsrf(:, is_oce)) |
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151 | |
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152 | ! 4. Fraction glace de mer |
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153 | |
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154 | CALL put_field(pass, "FSIC", "fraction glace mer", pctsrf(:, is_sic)) |
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155 | |
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156 | IF(nbsrf>99) THEN |
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157 | PRINT*, "Trop de sous-mailles"; CALL abort_physic("phyredem", "", 1) |
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158 | END IF |
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159 | IF(nsoilmx>99) THEN |
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160 | PRINT*, "Trop de sous-surfaces"; CALL abort_physic("phyredem", "", 1) |
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161 | END IF |
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162 | IF(nsw>99) THEN |
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163 | PRINT*, "Trop de bandes"; CALL abort_physic("phyredem", "", 1) |
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164 | END IF |
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165 | |
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166 | ! Surface variables |
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167 | CALL put_field_srf1(pass, "TS", "Temperature", ftsol(:, :)) |
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168 | |
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169 | IF (iflag_pbl>1 .AND. iflag_wake>=1 .AND. iflag_pbl_split >=1) THEN |
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170 | CALL put_field_srf1(pass, "DELTATS", & |
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171 | "w-x surface temperature difference", delta_tsurf(:, :)) |
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172 | CALL put_field_srf1(pass, "BETAS", "Aridity factor", beta_aridity(:, :)) |
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173 | end IF |
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174 | ! End surface variables |
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175 | |
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176 | ! ================== Albedo ======================================= |
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177 | PRINT*, 'PHYREDEM NOUVEAU' |
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178 | CALL put_field_srf2(pass, "A_dir_SW", "Albedo direct", falb_dir(:, :, :)) |
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179 | CALL put_field_srf2(pass, "A_dif_SW", "Albedo diffus", falb_dif(:, :, :)) |
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180 | |
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181 | CALL put_field_srf1(pass, "U10M", "u a 10m", u10m) |
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182 | |
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183 | CALL put_field_srf1(pass, "V10M", "v a 10m", v10m) |
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184 | |
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185 | |
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186 | ! ================== Tsoil ========================================= |
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187 | CALL put_field_srf2(pass, "Tsoil", "Temperature", tsoil(:, :, :)) |
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188 | !FC |
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189 | ! CALL put_field_srf2("treedrg","freinage arbres",treedrg(:,:,:)) |
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190 | CALL put_field(pass, "treedrg_ter", "freinage arbres", treedrg(:, :, is_ter)) |
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191 | |
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192 | CALL put_field_srf1(pass, "QS", "Humidite", qsurf(:, :)) |
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193 | |
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194 | CALL put_field (pass, "QSOL", "Eau dans le sol (mm)", qsol) |
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195 | |
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196 | CALL put_field_srf1(pass, "EVAP", "Evaporation", fevap(:, :)) |
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197 | |
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198 | CALL put_field_srf1(pass, "SNOW", "Neige", snow(:, :)) |
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199 | |
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200 | CALL put_field(pass, "RADS", "Rayonnement net a la surface", radsol) |
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201 | |
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202 | CALL put_field(pass, "solsw", "Rayonnement solaire a la surface", solsw) |
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203 | |
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204 | CALL put_field(pass, "solswfdiff", "Fraction du rayonnement solaire a la surface qui est diffus", solswfdiff) |
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205 | |
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206 | CALL put_field(pass, "sollw", "Rayonnement IF a la surface", sollw) |
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207 | |
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208 | CALL put_field(pass, "sollwdown", "Rayonnement down IF a la surface", sollwdown) |
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209 | |
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210 | CALL put_field(pass, "fder", "Derive de flux", fder) |
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211 | |
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212 | CALL put_field(pass, "rain_f", "precipitation liquide", rain_fall) |
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213 | |
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214 | CALL put_field(pass, "snow_f", "precipitation solide", snow_fall) |
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215 | |
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216 | CALL put_field_srf1(pass, "Z0m", "rugosite", z0m(:, :)) |
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217 | |
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218 | CALL put_field_srf1(pass, "Z0h", "rugosite", z0h(:, :)) |
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219 | |
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220 | CALL put_field_srf1(pass, "AGESNO", "Age de la neige", agesno(:, :)) |
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221 | |
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222 | CALL put_field(pass, "ZMEA", "ZMEA", zmea) |
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223 | |
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224 | CALL put_field(pass, "ZSTD", "ZSTD", zstd) |
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225 | |
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226 | CALL put_field(pass, "ZSIG", "ZSIG", zsig) |
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227 | |
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228 | CALL put_field(pass, "ZGAM", "ZGAM", zgam) |
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229 | |
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230 | CALL put_field(pass, "ZTHE", "ZTHE", zthe) |
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231 | |
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232 | CALL put_field(pass, "ZPIC", "ZPIC", zpic) |
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233 | |
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234 | CALL put_field(pass, "ZVAL", "ZVAL", zval) |
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235 | |
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236 | CALL put_field(pass, "RUGSREL", "RUGSREL", rugoro) |
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237 | |
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238 | CALL put_field(pass, "TANCIEN", "TANCIEN", t_ancien) |
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239 | |
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240 | CALL put_field(pass, "QANCIEN", "QANCIEN", q_ancien) |
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241 | |
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242 | CALL put_field(pass, "QLANCIEN", "QLANCIEN", ql_ancien) |
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243 | |
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244 | CALL put_field(pass, "QSANCIEN", "QSANCIEN", qs_ancien) |
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245 | |
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246 | IF (ok_bs) THEN |
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247 | CALL put_field(pass, "bs_f", "precipitation neige soufflee", bs_fall) |
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248 | CALL put_field(pass, "QBSANCIEN", "QBSANCIEN", qbs_ancien) |
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249 | CALL put_field(pass, "PRBSWANCIEN", "PRBSWANCIEN", prbsw_ancien) |
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250 | ENDIF |
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251 | |
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252 | CALL put_field(pass, "RNEBANCIEN", "RNEBANCIEN", rneb_ancien) |
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253 | |
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254 | CALL put_field(pass, "PRWANCIEN", "PRWANCIEN", prw_ancien) |
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255 | |
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256 | CALL put_field(pass, "PRLWANCIEN", "PRLWANCIEN", prlw_ancien) |
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257 | |
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258 | CALL put_field(pass, "PRSWANCIEN", "PRSWANCIEN", prsw_ancien) |
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259 | |
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260 | CALL put_field(pass, "UANCIEN", "UANCIEN", u_ancien) |
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261 | |
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262 | CALL put_field(pass, "VANCIEN", "VANCIEN", v_ancien) |
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263 | |
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264 | CALL put_field(pass, "CLWCON", "Eau liquide convective", clwcon) |
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265 | |
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266 | CALL put_field(pass, "RNEBCON", "Nebulosite convective", rnebcon) |
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267 | |
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268 | CALL put_field(pass, "RATQS", "Ratqs", ratqs) |
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269 | |
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270 | ! run_off_lic_0 |
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271 | |
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272 | CALL put_field(pass, "RUNOFFLIC0", "Runofflic0", run_off_lic_0) |
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273 | |
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274 | ! DEB TKE PBL ! |
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275 | |
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276 | IF (iflag_pbl>1) THEN |
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277 | CALL put_field_srf3(pass, "TKE", "Energ. Cineti. Turb.", & |
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278 | pbl_tke(:, :, :)) |
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279 | CALL put_field_srf3(pass, "DELTATKE", "Del TKE wk/env.", & |
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280 | wake_delta_pbl_tke(:, :, :)) |
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281 | END IF |
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282 | |
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283 | ! FIN TKE PBL ! |
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284 | !IM ajout zmax0, f0, sig1, w01 |
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285 | !IM wake_deltat, wake_deltaq, wake_s, wake_cstar, wake_pe, wake_fip |
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286 | |
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287 | CALL put_field(pass, "ZMAX0", "ZMAX0", zmax0) |
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288 | |
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289 | CALL put_field(pass, "F0", "F0", f0) |
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290 | |
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291 | CALL put_field(pass, "sig1", "sig1 Emanuel", sig1) |
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292 | |
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293 | CALL put_field(pass, "w01", "w01 Emanuel", w01) |
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294 | |
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295 | ! wake_deltat |
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296 | CALL put_field(pass, "WAKE_DELTAT", "WAKE_DELTAT", wake_deltat) |
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297 | |
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298 | CALL put_field(pass, "WAKE_DELTAQ", "WAKE_DELTAQ", wake_deltaq) |
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299 | |
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300 | CALL put_field(pass, "WAKE_S", "Wake frac. area", wake_s) |
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301 | |
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302 | CALL put_field(pass, "AWAKE_S", "Active Wake frac. area", awake_s) |
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303 | |
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304 | CALL put_field(pass, "WAKE_DENS", "Wake num. /unit area", wake_dens) |
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305 | |
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306 | CALL put_field(pass, "AWAKE_DENS", "Active Wake num. /unit area", awake_dens) |
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307 | |
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308 | CALL put_field(pass, "CV_GEN", "CB birth rate", cv_gen) |
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309 | |
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310 | CALL put_field(pass, "WAKE_CSTAR", "WAKE_CSTAR", wake_cstar) |
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311 | |
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312 | CALL put_field(pass, "WAKE_PE", "WAKE_PE", wake_pe) |
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313 | |
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314 | CALL put_field(pass, "WAKE_FIP", "WAKE_FIP", wake_fip) |
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315 | |
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316 | ! thermiques |
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317 | |
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318 | CALL put_field(pass, "FM_THERM", "FM_THERM", fm_therm) |
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319 | |
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320 | CALL put_field(pass, "ENTR_THERM", "ENTR_THERM", entr_therm) |
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321 | |
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322 | CALL put_field(pass, "DETR_THERM", "DETR_THERM", detr_therm) |
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323 | |
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324 | CALL put_field(pass, "ALE_BL", "ALE_BL", ale_bl) |
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325 | |
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326 | CALL put_field(pass, "ALE_BL_TRIG", "ALE_BL_TRIG", ale_bl_trig) |
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327 | |
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328 | CALL put_field(pass, "ALP_BL", "ALP_BL", alp_bl) |
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329 | |
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330 | CALL put_field(pass, "ALE_WAKE", "ALE_WAKE", ale_wake) |
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331 | |
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332 | CALL put_field(pass, "ALE_BL_STAT", "ALE_BL_STAT", ale_bl_stat) |
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333 | |
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334 | |
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335 | ! fisrtilp/clouds |
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336 | CALL put_field(pass, "RATQS_INTER", "Relative width of the lsc sugrid scale water", ratqs_inter_) |
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337 | |
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338 | IF (ANY(type_trac == ['co2i', 'inco'])) THEN |
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339 | IF (carbon_cycle_cpl) THEN |
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340 | IF (.NOT. ALLOCATED(co2_send)) THEN |
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341 | ! This is the case of create_etat0_limit, ce0l |
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342 | ALLOCATE(co2_send(klon)) |
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343 | co2_send(:) = co2_ppm0 |
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344 | END IF |
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345 | CALL put_field(pass, "co2_send", "co2_ppm for coupling", co2_send) |
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346 | END IF |
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347 | |
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348 | ! trs from traclmdz_mod |
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349 | ELSE IF (type_trac == 'lmdz') THEN |
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350 | CALL traclmdz_to_restart(trs) |
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351 | it = 0 |
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352 | DO iq = 1, nqtot |
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353 | IF(.NOT.(tracers(iq)%isAdvected .AND. tracers(iq)%isInPhysics)) CYCLE |
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354 | it = it + 1 |
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355 | CALL put_field(pass, "trs_" // tracers(iq)%name, "", trs(:, it)) |
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356 | END DO |
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357 | END IF |
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358 | |
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359 | ! Restart variables for Slab ocean |
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360 | IF (type_ocean == 'slab') THEN |
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361 | IF (nslay==1) THEN |
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362 | CALL put_field(pass, "tslab", "Slab ocean temperature", tslab) |
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363 | ELSE |
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364 | DO it = 1, nslay |
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365 | WRITE(str2, '(i2.2)') it |
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366 | CALL put_field(pass, "tslab" // str2, "Slab ocean temperature", tslab(:, it)) |
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367 | END DO |
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368 | END IF |
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369 | IF (version_ocean == 'sicINT') THEN |
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370 | CALL put_field(pass, "seaice", "Slab seaice (kg/m2)", seaice) |
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371 | CALL put_field(pass, "slab_tice", "Slab sea ice temperature", tice) |
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372 | END IF |
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373 | END IF |
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374 | |
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375 | if (ok_gwd_rando) CALL put_field(pass, "du_gwd_rando", & |
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376 | "tendency on zonal wind due to flott gravity waves", du_gwd_rando) |
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377 | |
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378 | IF (.not. ok_hines .and. ok_gwd_rando) CALL put_field(pass, "du_gwd_front", & |
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379 | "tendency on zonal wind due to acama gravity waves", du_gwd_front) |
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380 | |
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381 | if (activate_ocean_skin >= 1) THEN |
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382 | if (activate_ocean_skin == 2 .and. type_ocean == 'couple') THEN |
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383 | CALL put_field(pass, "delta_sal", & |
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384 | "ocean-air interface salinity minus bulk salinity", delta_sal) |
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385 | CALL put_field(pass, "delta_SST", & |
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386 | "ocean-air interface temperature minus bulk SST", delta_sst) |
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387 | CALL put_field(pass, "dter", & |
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388 | "ocean-air interface temperature minus subskin temperature", & |
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389 | dter) |
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390 | CALL put_field(pass, "dser", & |
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391 | "ocean-air interface salinity minus subskin salinity", dser) |
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392 | CALL put_field(pass, "dt_ds", & |
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393 | "(tks / tkt) * dTer", dt_ds) |
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394 | end if |
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395 | |
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396 | CALL put_field(pass, "dS_ns", "delta salinity near surface", ds_ns) |
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397 | CALL put_field(pass, "dT_ns", "delta temperature near surface", dT_ns) |
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398 | end if |
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399 | |
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400 | IF (pass==1) CALL enddef_restartphy |
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401 | IF (pass==2) CALL close_restartphy |
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402 | ENDDO ! DO pass=1,2 ! pass=1 netcdf definition ; pass=2 netcdf write |
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403 | |
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404 | !$OMP BARRIER |
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405 | |
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406 | |
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407 | CONTAINS |
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408 | |
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409 | |
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410 | SUBROUTINE put_field_srf1(pass, nam, lnam, field) |
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411 | |
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412 | IMPLICIT NONE |
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413 | INTEGER, INTENT(IN) :: pass |
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414 | CHARACTER(LEN = *), INTENT(IN) :: nam, lnam |
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415 | REAL, INTENT(IN) :: field(:, :) |
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416 | CHARACTER(LEN = 256) :: nm, lm, str |
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417 | DO nsrf = 1, SIZE(field, 2) |
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418 | WRITE(str, '(i2.2)') nsrf |
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419 | nm = TRIM(nam) // TRIM(str) |
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420 | lm = TRIM(lnam) // " de surface No. " // TRIM(str) |
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421 | CALL put_field(pass, nm, lm, field(:, nsrf)) |
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422 | END DO |
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423 | |
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424 | END SUBROUTINE put_field_srf1 |
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425 | |
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426 | |
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427 | SUBROUTINE put_field_srf2(pass, nam, lnam, field) |
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428 | |
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429 | IMPLICIT NONE |
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430 | INTEGER, INTENT(IN) :: pass |
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431 | CHARACTER(LEN = *), INTENT(IN) :: nam, lnam |
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432 | REAL, INTENT(IN) :: field(:, :, :) |
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433 | CHARACTER(LEN = 256) :: nm, lm, str |
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434 | DO nsrf = 1, SIZE(field, 3) |
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435 | DO isoil = 1, SIZE(field, 2) |
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436 | WRITE(str, '(i2.2,"srf",i2.2)')isoil, nsrf |
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437 | ! WRITE(lunout,*)"PHYREDEM ",TRIM(nam)//TRIM(str) |
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438 | nm = TRIM(nam) // TRIM(str) |
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439 | lm = TRIM(lnam) // " du sol No. " // TRIM(str) |
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440 | CALL put_field(pass, nm, lm, field(:, isoil, nsrf)) |
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441 | END DO |
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442 | END DO |
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443 | |
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444 | END SUBROUTINE put_field_srf2 |
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445 | |
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446 | |
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447 | SUBROUTINE put_field_srf3(pass, nam, lnam, field) |
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448 | |
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449 | IMPLICIT NONE |
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450 | INTEGER, INTENT(IN) :: pass |
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451 | CHARACTER(LEN = *), INTENT(IN) :: nam, lnam |
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452 | REAL, INTENT(IN) :: field(:, :, :) |
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453 | CHARACTER(LEN = 256) :: nm, lm, str |
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454 | DO nsrf = 1, SIZE(field, 3) |
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455 | WRITE(str, '(i2.2)') nsrf |
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456 | nm = TRIM(nam) // TRIM(str) |
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457 | lm = TRIM(lnam) // TRIM(str) |
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458 | CALL put_field(pass, nm, lm, field(:, 1:klev + 1, nsrf)) |
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459 | END DO |
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460 | |
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461 | END SUBROUTINE put_field_srf3 |
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462 | |
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463 | |
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464 | END SUBROUTINE phyredem |
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