1 | #ifdef ISO |
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2 | ! $Id: $ |
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3 | |
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4 | MODULE isotopes_mod |
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5 | USE strings_mod, ONLY: msg, real2str, int2str, bool2str, maxlen, strIdx, strStack |
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6 | USE infotrac_phy, ONLY: isoName |
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7 | IMPLICIT NONE |
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8 | INTERFACE get_in; MODULE PROCEDURE getinp_s, getinp_i, getinp_r, getinp_l; END INTERFACE get_in |
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9 | SAVE |
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10 | |
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11 | !--- Contains all isotopic variables + their initialization |
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12 | !--- Isotopes-specific routines are in isotopes_routines_mod to avoid circular dependencies with isotopes_verif_mod. |
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13 | |
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14 | !--- Isotopes indices (in [1,niso] ; non-existing => 0 index) |
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15 | INTEGER, SAVE :: iso_eau, iso_HDO, iso_O18, iso_O17, iso_HTO |
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16 | !$OMP THREADPRIVATE(iso_eau, iso_HDO, iso_O18, iso_O17, iso_HTO) |
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17 | |
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18 | INTEGER, SAVE :: ntracisoOR |
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19 | !$OMP THREADPRIVATE(ntracisoOR) |
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20 | |
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21 | !--- Variables not depending on isotopes |
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22 | REAL, SAVE :: thumxt1 |
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23 | !$OMP THREADPRIVATE(thumxt1) |
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24 | INTEGER, SAVE :: ntot |
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25 | !$OMP THREADPRIVATE(ntot) |
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26 | REAL, SAVE :: h_land_ice |
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27 | !$OMP THREADPRIVATE(h_land_ice) |
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28 | REAL, SAVE :: P_veg |
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29 | !$OMP THREADPRIVATE(P_veg) |
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30 | REAL, SAVE :: lambda_sursat |
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31 | !$OMP THREADPRIVATE(lambda_sursat) |
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32 | LOGICAL, SAVE :: bidouille_anti_divergence ! T: regularly, xteau <- q to avoid slow drifts |
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33 | !$OMP THREADPRIVATE(bidouille_anti_divergence) |
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34 | LOGICAL, SAVE :: essai_convergence ! F: as in LMDZ without isotopes (bad for isotopes) |
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35 | !$OMP THREADPRIVATE(essai_convergence) |
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36 | INTEGER, SAVE :: initialisation_iso ! 0: file ; 1: R=0 ; 2: R=distill. Rayleigh ; 3: R=Rsmow |
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37 | !$OMP THREADPRIVATE(initialisation_iso) |
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38 | INTEGER, SAVE :: modif_SST ! 0: default ; 1: modified SST ; 2, 3: SST profiles |
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39 | !$OMP THREADPRIVATE(modif_SST) |
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40 | REAL, SAVE :: deltaTtest ! Uniform modification of the SST |
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41 | !$OMP THREADPRIVATE(deltaTtest) |
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42 | INTEGER, SAVE :: modif_sic ! Holes in the Sea Ice |
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43 | !$OMP THREADPRIVATE(modif_sic) |
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44 | REAL, SAVE :: deltasic ! Minimal holes fraction |
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45 | !$OMP THREADPRIVATE(deltasic) |
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46 | REAL, SAVE :: deltaTtestpoles |
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47 | !$OMP THREADPRIVATE(deltaTtestpoles) |
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48 | REAL, SAVE :: sstlatcrit, dsstlatcrit |
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49 | !$OMP THREADPRIVATE(sstlatcrit, dsstlatcrit) |
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50 | INTEGER, SAVE :: albedo_prescrit ! 0: default ; 1: constant albedo |
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51 | !$OMP THREADPRIVATE(albedo_prescrit) |
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52 | REAL, SAVE :: lon_min_albedo, lon_max_albedo, lat_min_albedo, lat_max_albedo |
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53 | !$OMP THREADPRIVATE(lon_min_albedo, lon_max_albedo, lat_min_albedo, lat_max_albedo) |
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54 | REAL, SAVE :: deltaP_BL,tdifexp_sol |
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55 | !$OMP THREADPRIVATE(deltaP_BL,tdifexp_sol) |
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56 | INTEGER, SAVE :: ruissellement_pluie, alphak_stewart |
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57 | !$OMP THREADPRIVATE(ruissellement_pluie, alphak_stewart) |
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58 | INTEGER, SAVE :: calendrier_guide |
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59 | !$OMP THREADPRIVATE(calendrier_guide) |
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60 | INTEGER, SAVE :: cste_surf_cond |
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61 | !$OMP THREADPRIVATE(cste_surf_cond) |
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62 | REAL, SAVE :: mixlen |
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63 | !$OMP THREADPRIVATE(mixlen) |
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64 | INTEGER, SAVE :: evap_cont_cste |
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65 | !$OMP THREADPRIVATE(evap_cont_cste) |
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66 | REAL, SAVE :: deltaO18_evap_cont, d_evap_cont |
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67 | !$OMP THREADPRIVATE(deltaO18_evap_cont, d_evap_cont) |
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68 | INTEGER, SAVE :: nudge_qsol, region_nudge_qsol |
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69 | !$OMP THREADPRIVATE(nudge_qsol, region_nudge_qsol) |
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70 | INTEGER, SAVE :: nlevmaxO17 |
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71 | !$OMP THREADPRIVATE(nlevmaxO17) |
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72 | INTEGER, SAVE :: no_pce |
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73 | !$OMP THREADPRIVATE(no_pce) |
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74 | REAL, SAVE :: A_satlim |
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75 | !$OMP THREADPRIVATE(A_satlim) |
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76 | INTEGER, SAVE :: ok_restrict_A_satlim, modif_ratqs |
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77 | !$OMP THREADPRIVATE(ok_restrict_A_satlim, modif_ratqs) |
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78 | REAL, SAVE :: Pcrit_ratqs, ratqsbasnew |
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79 | !$OMP THREADPRIVATE(Pcrit_ratqs, ratqsbasnew) |
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80 | REAL, SAVE :: fac_modif_evaoce |
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81 | !$OMP THREADPRIVATE(fac_modif_evaoce) |
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82 | REAL, SAVE :: deltaO18_oce |
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83 | !$OMP THREADPRIVATE(deltaO18_oce) |
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84 | INTEGER, SAVE :: ok_bidouille_wake |
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85 | !$OMP THREADPRIVATE(ok_bidouille_wake) |
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86 | LOGICAL, SAVE :: cond_temp_env |
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87 | !$OMP THREADPRIVATE(cond_temp_env) |
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88 | |
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89 | !--- Vectors of length "niso" |
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90 | REAL, ALLOCATABLE, DIMENSION(:), SAVE :: & |
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91 | tnat, toce, tcorr, tdifrel |
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92 | !$OMP THREADPRIVATE(tnat, toce, tcorr, tdifrel) |
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93 | REAL, ALLOCATABLE, DIMENSION(:), SAVE :: & |
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94 | talph1, talph2, talph3, talps1, talps2 |
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95 | !$OMP THREADPRIVATE(talph1, talph2, talph3, talps1, talps2) |
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96 | REAL, ALLOCATABLE, DIMENSION(:), SAVE :: & |
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97 | tkcin0, tkcin1, tkcin2 |
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98 | !$OMP THREADPRIVATE(tkcin0, tkcin1, tkcin2) |
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99 | REAL, ALLOCATABLE, DIMENSION(:), SAVE :: & |
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100 | alpha_liq_sol, Rdefault, Rmethox |
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101 | !$OMP THREADPRIVATE(alpha_liq_sol, Rdefault, Rmethox) |
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102 | ! REAL, SAVE :: fac_coeff_eq17_liq, fac_coeff_eq17_ice |
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103 | !!$OMP THREADPRIVATE(fac_coeff_eq17_liq, fac_coeff_eq17_ice) |
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104 | |
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105 | !--- H2[18]O reference |
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106 | REAL, PARAMETER :: fac_enrichoce18=0.0005 |
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107 | REAL, PARAMETER :: alpha_liq_sol_O18=1.00291 |
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108 | REAL, PARAMETER :: talph1_O18=1137. |
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109 | REAL, PARAMETER :: talph2_O18=-0.4156 |
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110 | REAL, PARAMETER :: talph3_O18=-2.0667E-3 |
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111 | REAL, PARAMETER :: talps1_O18=11.839 |
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112 | REAL, PARAMETER :: talps2_O18=-0.028244 |
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113 | REAL, PARAMETER :: tdifrel_O18=1./0.9723 |
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114 | REAL, PARAMETER :: tkcin0_O18=0.006 |
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115 | REAL, PARAMETER :: tkcin1_O18=0.000285 |
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116 | REAL, PARAMETER :: tkcin2_O18=0.00082 |
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117 | REAL, PARAMETER :: fac_coeff_eq17_liq=0.529 |
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118 | REAL, PARAMETER :: fac_coeff_eq17_ice=0.529 |
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119 | |
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120 | !---- Parameters that do not depend on the nature of water isotopes: |
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121 | REAL, PARAMETER :: pxtmelt = 273.15 ! temperature at which ice formation starts |
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122 | REAL, PARAMETER :: pxtice = 273.15-10.0 ! -- temperature at which all condensate is ice: |
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123 | REAL, PARAMETER :: pxtmin = 273.15 - 120.0 ! On ne calcule qu'au dessus de -120°C |
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124 | REAL, PARAMETER :: pxtmax = 273.15 + 60.0 ! On ne calcule qu'au dessus de +60°C |
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125 | REAL, PARAMETER :: tdifexp = 0.58 ! -- a constant for alpha_eff for equilibrium below cloud base: |
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126 | REAL, PARAMETER :: tv0cin = 7.0 ! wind threshold (m/s) for smooth/rough regime (Merlivat and Jouzel 1979) |
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127 | REAL, PARAMETER :: musi=1.0 ! facteurs lambda et mu dans Si=musi-lambda*T |
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128 | REAL, PARAMETER :: Kd=2.5e-9 ! m2/s ! diffusion dans le sol |
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129 | REAL, PARAMETER :: rh_cste_surf_cond = 0.6 ! cas où cste_surf_cond: on met rhs ou/et Ts cste pour voir |
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130 | REAL, PARAMETER :: T_cste_surf_cond = 288.0 |
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131 | |
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132 | |
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133 | !--- Negligible lower thresholds: no need to check for absurd values under these lower limits |
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134 | REAL, PARAMETER :: & |
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135 | ridicule = 1e-12, & ! For mixing ratios |
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136 | ridicule_rain = 1e-8, & ! For rain fluxes (rain, zrfl...) in kg/s <-> 1e-3 mm/day |
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137 | ridicule_evap = ridicule_rain*1e-2, & ! For evaporations in kg/s <-> 1e-3 mm/day |
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138 | ridicule_qsol = ridicule_rain, & ! For qsol in kg <-> 1e-8 kg |
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139 | ridicule_snow = ridicule_qsol ! For snow in kg <-> 1e-8 kg |
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140 | REAL, PARAMETER :: expb_max = 30.0 |
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141 | |
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142 | !--- Specific to HTO: |
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143 | LOGICAL, SAVE :: ok_prod_nucl_tritium !--- TRUE => HTO production by nuclear tests |
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144 | !$OMP THREADPRIVATE(ok_prod_nucl_tritium) |
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145 | INTEGER, PARAMETER :: nessai = 486 |
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146 | INTEGER, DIMENSION(nessai), SAVE :: & |
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147 | day_nucl, month_nucl, year_nucl |
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148 | !$OMP THREADPRIVATE(day_nucl, month_nucl, year_nucl) |
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149 | REAL, DIMENSION(nessai), SAVE :: & |
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150 | lat_nucl, lon_nucl, zmin_nucl, zmax_nucl, HTO_nucl |
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151 | !$OMP THREADPRIVATE(lat_nucl, lon_nucl, zmin_nucl, zmax_nucl, HTO_nucl) |
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152 | |
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153 | |
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154 | CONTAINS |
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155 | |
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156 | SUBROUTINE iso_init() |
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157 | USE infotrac_phy, ONLY: ntiso, niso, getKey |
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158 | USE strings_mod, ONLY: maxlen |
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159 | IMPLICIT NONE |
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160 | |
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161 | !=== Local variables: |
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162 | INTEGER :: ixt |
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163 | |
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164 | |
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165 | !--- For H2[17]O |
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166 | REAL :: fac_kcin, pente_MWL |
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167 | |
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168 | !--- Sensitivity tests |
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169 | LOGICAL, PARAMETER :: ok_nocinsfc = .FALSE. ! if T: no kinetic effect in sfc evap |
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170 | LOGICAL, PARAMETER :: ok_nocinsat = .FALSE. ! if T: no sursaturation effect for ice |
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171 | LOGICAL, PARAMETER :: Rdefault_smow = .FALSE. ! if T: Rdefault=smow; if F: nul |
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172 | LOGICAL, PARAMETER :: tnat1 = .TRUE. ! If T: all tnats are 1. |
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173 | |
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174 | !--- For [3]H |
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175 | INTEGER :: iessai |
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176 | |
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177 | CHARACTER(LEN=maxlen) :: modname, sxt |
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178 | |
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179 | modname = 'iso_init' |
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180 | CALL msg('219: entree', modname) |
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181 | |
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182 | !-------------------------------------------------------------- |
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183 | ! General: |
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184 | !-------------------------------------------------------------- |
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185 | |
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186 | !--- Check number of isotopes |
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187 | CALL msg('64: niso = '//TRIM(int2str(niso)), modname) |
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188 | |
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189 | !--- Init de ntracisoOR: on ecrasera en cas de traceurs de tagging isotopiques |
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190 | ! (nzone>0) si complications avec ORCHIDEE |
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191 | ntracisoOR = ntiso |
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192 | |
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193 | !--- Type of water isotopes: |
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194 | iso_eau = strIdx(isoName, 'H216O'); CALL msg('iso_eau='//int2str(iso_eau), modname) |
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195 | iso_HDO = strIdx(isoName, 'HDO'); CALL msg('iso_HDO='//int2str(iso_HDO), modname) |
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196 | iso_O18 = strIdx(isoName, 'H218O'); CALL msg('iso_O18='//int2str(iso_O18), modname) |
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197 | iso_O17 = strIdx(isoName, 'H217O'); CALL msg('iso_O17='//int2str(iso_O17), modname) |
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198 | iso_HTO = strIdx(isoName, 'HTO'); CALL msg('iso_HTO='//int2str(iso_HTO), modname) |
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199 | |
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200 | !--- Initialiaation: reading the isotopic parameters. |
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201 | CALL get_in('lambda', lambda_sursat, 0.004) |
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202 | CALL get_in('thumxt1', thumxt1, 0.75*1.2) |
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203 | CALL get_in('ntot', ntot, 20, .FALSE.) |
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204 | CALL get_in('h_land_ice', h_land_ice, 20., .FALSE.) |
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205 | CALL get_in('P_veg', P_veg, 1.0, .FALSE.) |
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206 | CALL get_in('bidouille_anti_divergence', bidouille_anti_divergence, .FALSE.) |
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207 | CALL get_in('essai_convergence', essai_convergence, .FALSE.) |
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208 | CALL get_in('initialisation_iso', initialisation_iso, 0) |
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209 | |
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210 | ! IF(nzone>0 .AND. initialisation_iso==0) & |
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211 | ! CALL get_in('initialisation_isotrac',initialisation_isotrac) |
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212 | CALL get_in('modif_sst', modif_sst, 0) |
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213 | CALL get_in('deltaTtest', deltaTtest, 0.0) !--- For modif_sst>=1 |
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214 | CALL get_in('deltaTtestpoles',deltaTtestpoles, 0.0) !--- For modif_sst>=2 |
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215 | CALL get_in( 'sstlatcrit', sstlatcrit, 30.0) !--- For modif_sst>=3 |
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216 | CALL get_in('dsstlatcrit', dsstlatcrit, 0.0) !--- For modif_sst>=3 |
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217 | #ifdef ISOVERIF |
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218 | CALL msg('iso_init 270: sstlatcrit='//real2str( sstlatcrit), modname, sstlatcrit < 0.0) !--- For modif_sst>=2 |
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219 | CALL msg('iso_init 279: dsstlatcrit='//real2str(dsstlatcrit), modname, sstlatcrit < 0.0) !--- For modif_sst>=3 |
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220 | IF(modif_sst >= 2 .AND. sstlatcrit < 0.0) STOP |
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221 | #endif |
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222 | |
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223 | CALL get_in('modif_sic', modif_sic, 0) |
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224 | IF(modif_sic >= 1) & |
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225 | CALL get_in('deltasic', deltasic, 0.1) |
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226 | |
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227 | CALL get_in('albedo_prescrit', albedo_prescrit, 0) |
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228 | IF(albedo_prescrit == 1) THEN |
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229 | CALL get_in('lon_min_albedo', lon_min_albedo, -200.) |
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230 | CALL get_in('lon_max_albedo', lon_max_albedo, 200.) |
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231 | CALL get_in('lat_min_albedo', lat_min_albedo, -100.) |
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232 | CALL get_in('lat_max_albedo', lat_max_albedo, 100.) |
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233 | END IF |
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234 | CALL get_in('deltaP_BL', deltaP_BL, 10.0) |
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235 | CALL get_in('ruissellement_pluie', ruissellement_pluie, 0) |
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236 | CALL get_in('alphak_stewart', alphak_stewart, 1) |
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237 | CALL get_in('tdifexp_sol', tdifexp_sol, 0.67) |
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238 | CALL get_in('calendrier_guide', calendrier_guide, 0) |
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239 | CALL get_in('cste_surf_cond', cste_surf_cond, 0) |
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240 | CALL get_in('mixlen', mixlen, 35.0) |
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241 | CALL get_in('evap_cont_cste', evap_cont_cste, 0) |
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242 | CALL get_in('deltaO18_evap_cont', deltaO18_evap_cont,0.0) |
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243 | CALL get_in('d_evap_cont', d_evap_cont, 0.0) |
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244 | CALL get_in('nudge_qsol', nudge_qsol, 0) |
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245 | CALL get_in('region_nudge_qsol', region_nudge_qsol, 1) |
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246 | nlevmaxO17 = 50 |
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247 | CALL msg('nlevmaxO17='//TRIM(int2str(nlevmaxO17))) |
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248 | CALL get_in('no_pce', no_pce, 0) |
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249 | CALL get_in('A_satlim', A_satlim, 1.0) |
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250 | CALL get_in('ok_restrict_A_satlim', ok_restrict_A_satlim, 0) |
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251 | #ifdef ISOVERIF |
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252 | CALL msg(' 315: A_satlim='//real2str(A_satlim), modname, A_satlim > 1.0) |
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253 | IF(A_satlim > 1.0) STOP |
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254 | #endif |
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255 | ! CALL get_in('slope_limiterxy', slope_limiterxy, 2.0) |
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256 | ! CALL get_in('slope_limiterz', slope_limiterz, 2.0) |
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257 | CALL get_in('modif_ratqs', modif_ratqs, 0) |
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258 | CALL get_in('Pcrit_ratqs', Pcrit_ratqs, 500.0) |
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259 | CALL get_in('ratqsbasnew', ratqsbasnew, 0.05) |
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260 | CALL get_in('fac_modif_evaoce', fac_modif_evaoce, 1.0) |
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261 | CALL get_in('ok_bidouille_wake', ok_bidouille_wake, 0) |
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262 | ! si oui, la temperature de cond est celle de l'environnement, pour eviter |
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263 | ! bugs quand temperature dans ascendances convs est mal calculee |
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264 | CALL get_in('cond_temp_env', cond_temp_env, .FALSE.) |
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265 | IF(ANY(isoName == 'HTO')) & |
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266 | CALL get_in('ok_prod_nucl_tritium', ok_prod_nucl_tritium, .FALSE., .FALSE.) |
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267 | |
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268 | ! Ocean composition |
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269 | CALL get_in('deltaO18_oce', deltaO18_oce, 0.0) |
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270 | |
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271 | CALL msg('iso_O18, iso_HDO, iso_eau = '//TRIM(strStack(int2str([iso_O18, iso_HDO, iso_eau]))), modname) |
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272 | |
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273 | !-------------------------------------------------------------- |
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274 | ! Isotope fractionation factors and a few isotopic constants |
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275 | !-------------------------------------------------------------- |
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276 | ALLOCATE(tkcin0(niso)) |
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277 | ALLOCATE(tkcin1(niso)) |
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278 | ALLOCATE(tkcin2(niso)) |
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279 | ALLOCATE(tnat(niso)) |
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280 | ALLOCATE(tdifrel(niso)) |
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281 | ALLOCATE(toce(niso)) |
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282 | ALLOCATE(tcorr(niso)) |
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283 | ALLOCATE(talph1(niso)) |
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284 | ALLOCATE(talph2(niso)) |
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285 | ALLOCATE(talph3(niso)) |
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286 | ALLOCATE(talps1(niso)) |
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287 | ALLOCATE(talps2(niso)) |
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288 | ALLOCATE(alpha_liq_sol(niso)) |
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289 | ALLOCATE(Rdefault(niso)) |
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290 | ALLOCATE(Rmethox(niso)) |
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291 | |
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292 | do ixt=1,niso |
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293 | if (ixt.eq.iso_HTO) then ! Tritium |
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294 | tkcin0(ixt) = 0.01056 |
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295 | tkcin1(ixt) = 0.0005016 |
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296 | tkcin2(ixt) = 0.0014432 |
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297 | if (tnat1) then |
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298 | tnat(ixt)=1 |
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299 | else |
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300 | tnat(ixt)=0. |
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301 | endif |
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302 | toce(ixt)=4.0E-19 ! rapport T/H = 0.2 TU Dreisigacker and Roether 1978 |
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303 | tcorr(ixt)=1. |
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304 | tdifrel(ixt)=1./0.968 |
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305 | talph1(ixt)=46480. |
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306 | talph2(ixt)=-103.87 |
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307 | talph3(ixt)=0. |
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308 | talps1(ixt)=46480. |
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309 | talps2(ixt)=-103.87 |
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310 | alpha_liq_sol(ixt)=1. |
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311 | Rmethox(ixt)=0.0 |
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312 | endif |
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313 | if (ixt.eq.iso_O17) then ! O17 |
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314 | pente_MWL=0.528 |
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315 | tdifrel(ixt)=1./0.98555 ! valeur utilisée en 1D et dans modèle de LdG ! tdifrel(ixt)=1./0.985452 ! donné par Amaelle |
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316 | fac_kcin= (tdifrel(ixt)-1.0)/(tdifrel_O18-1.0) ! fac_kcin=0.5145 ! donné par Amaelle |
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317 | tkcin0(ixt) = tkcin0_O18*fac_kcin |
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318 | tkcin1(ixt) = tkcin1_O18*fac_kcin |
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319 | tkcin2(ixt) = tkcin2_O18*fac_kcin |
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320 | if (tnat1) then |
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321 | tnat(ixt)=1 |
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322 | else |
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323 | tnat(ixt)=0.004/100. ! O17 représente 0.004% de l'oxygène |
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324 | endif |
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325 | toce(ixt)=tnat(ixt)*(1.0+deltaO18_oce/1000.0)**pente_MWL |
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326 | tcorr(ixt)=1.0+fac_enrichoce18*pente_MWL ! donné par Amaelle |
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327 | talph1(ixt)=talph1_O18 |
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328 | talph2(ixt)=talph2_O18 |
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329 | talph3(ixt)=talph3_O18 |
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330 | talps1(ixt)=talps1_O18 |
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331 | talps2(ixt)=talps2_O18 |
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332 | alpha_liq_sol(ixt)=(alpha_liq_sol_O18)**fac_coeff_eq17_liq |
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333 | Rdefault(ixt)=tnat(ixt)*(-3.15/1000.0+1.0) |
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334 | Rmethox(ixt)=(230./1000.+1.)*tnat(ixt) !Zahn et al 2006 |
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335 | endif |
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336 | if (ixt.eq.iso_O18) then ! Oxygene18 |
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337 | tkcin0(ixt) = tkcin0_O18 |
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338 | tkcin1(ixt) = tkcin1_O18 |
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339 | tkcin2(ixt) = tkcin2_O18 |
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340 | if (tnat1) then |
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341 | tnat(ixt)=1 |
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342 | else |
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343 | tnat(ixt)=2005.2E-6 |
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344 | endif |
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345 | toce(ixt)=tnat(ixt)*(1.0+deltaO18_oce/1000.0) |
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346 | tcorr(ixt)=1.0+fac_enrichoce18 |
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347 | tdifrel(ixt)=tdifrel_O18 |
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348 | talph1(ixt)=talph1_O18 |
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349 | talph2(ixt)=talph2_O18 |
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350 | talph3(ixt)=talph3_O18 |
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351 | talps1(ixt)=talps1_O18 |
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352 | talps2(ixt)=talps2_O18 |
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353 | alpha_liq_sol(ixt)=alpha_liq_sol_O18 |
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354 | Rdefault(ixt)=tnat(ixt)*(-6.0/1000.0+1.0) |
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355 | Rmethox(ixt)=(130./1000.+1.)*tnat(ixt) !Zahn et al 2006 |
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356 | endif |
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357 | if (ixt.eq.iso_HDO) then ! Deuterium |
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358 | pente_MWL=8.0 |
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359 | tdifrel(ixt)=1./0.9755 ! fac_kcin=0.88 |
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360 | fac_kcin= (tdifrel(ixt)-1)/(tdifrel_O18-1) |
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361 | tkcin0(ixt) = tkcin0_O18*fac_kcin |
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362 | tkcin1(ixt) = tkcin1_O18*fac_kcin |
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363 | tkcin2(ixt) = tkcin2_O18*fac_kcin |
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364 | if (tnat1) then |
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365 | tnat(ixt)=1 |
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366 | else |
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367 | tnat(ixt)=155.76E-6 |
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368 | endif |
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369 | toce(ixt)=tnat(ixt)*(1.0+pente_MWL*deltaO18_oce/1000.0) |
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370 | tcorr(ixt)=1.0+fac_enrichoce18*pente_MWL |
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371 | talph1(ixt)=24844. |
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372 | talph2(ixt)=-76.248 |
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373 | talph3(ixt)=52.612E-3 |
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374 | talps1(ixt)=16288. |
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375 | talps2(ixt)=-0.0934 |
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376 | !ZXalpha_liq_sol=1.0192 ! Weston, Ralph, 1955 |
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377 | alpha_liq_sol(ixt)=1.0212 |
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378 | ! valeur de Lehmann & Siegenthaler, 1991, Journal of |
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379 | ! Glaciology, vol 37, p 23 |
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380 | Rdefault(ixt)=tnat(ixt)*((-6.0*pente_MWL+10.0)/1000.0+1.0) |
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381 | Rmethox(ixt)=tnat(ixt)*(-25.0/1000.+1.) ! Zahn et al 2006 |
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382 | endif |
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383 | if (ixt.eq.iso_eau) then ! Oxygene16 |
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384 | tkcin0(ixt) = 0.0 |
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385 | tkcin1(ixt) = 0.0 |
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386 | tkcin2(ixt) = 0.0 |
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387 | tnat(ixt)=1. |
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388 | toce(ixt)=tnat(ixt) |
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389 | tcorr(ixt)=1.0 |
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390 | tdifrel(ixt)=1. |
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391 | talph1(ixt)=0. |
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392 | talph2(ixt)=0. |
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393 | talph3(ixt)=0. |
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394 | talps1(ixt)=0. |
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395 | talph3(ixt)=0. |
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396 | alpha_liq_sol(ixt)=1. |
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397 | Rdefault(ixt)=tnat(ixt)*1.0 |
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398 | Rmethox(ixt)=1.0 |
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399 | endif |
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400 | enddo ! ixt=1,niso |
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401 | |
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402 | IF(.NOT.Rdefault_smow) then |
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403 | Rdefault(:) = 0.0 |
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404 | if (iso_eau.gt.0) Rdefault(iso_eau) = 1.0 ! correction Camille 30 mars 2023 |
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405 | ENDIF |
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406 | write(*,*) 'Rdefault=',Rdefault |
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407 | write(*,*) 'toce=',toce |
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408 | |
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409 | !--- Sensitivity test: no kinetic effect in sfc evaporation |
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410 | IF(ok_nocinsfc) THEN |
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411 | tkcin0(1:niso) = 0.0 |
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412 | tkcin1(1:niso) = 0.0 |
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413 | tkcin2(1:niso) = 0.0 |
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414 | END IF |
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415 | |
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416 | CALL msg('285: verif initialisation:', modname) |
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417 | DO ixt=1,niso |
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418 | sxt=int2str(ixt) |
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419 | CALL msg(' * isoName('//TRIM(sxt)//') = <'//TRIM(isoName(ixt))//'>', modname) |
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420 | CALL msg( ' tnat('//TRIM(sxt)//') = '//TRIM(real2str(tnat(ixt))), modname) |
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421 | ! CALL msg(' alpha_liq_sol('//TRIM(sxt)//') = '//TRIM(real2str(alpha_liq_sol(ixt))), modname) |
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422 | ! CALL msg( ' tkcin0('//TRIM(sxt)//') = '//TRIM(real2str(tkcin0(ixt))), modname) |
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423 | ! CALL msg( ' tdifrel('//TRIM(sxt)//') = '//TRIM(real2str(tdifrel(ixt))), modname) |
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424 | END DO |
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425 | CALL msg('69: lambda = '//TRIM(real2str(lambda_sursat)), modname) |
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426 | CALL msg('69: thumxt1 = '//TRIM(real2str(thumxt1)), modname) |
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427 | CALL msg('69: h_land_ice = '//TRIM(real2str(h_land_ice)), modname) |
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428 | CALL msg('69: P_veg = '//TRIM(real2str(P_veg)), modname) |
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429 | |
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430 | END SUBROUTINE iso_init |
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431 | |
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432 | |
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433 | SUBROUTINE getinp_s(nam, val, def, lDisp) |
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434 | USE ioipsl_getincom, ONLY: getin |
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435 | USE mod_phys_lmdz_mpi_data, ONLY : is_mpi_root |
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436 | USE mod_phys_lmdz_omp_data, ONLY : is_omp_root |
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437 | USE mod_phys_lmdz_transfert_para, ONLY : bcast |
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438 | CHARACTER(LEN=*), INTENT(IN) :: nam |
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439 | CHARACTER(LEN=*), INTENT(INOUT) :: val |
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440 | CHARACTER(LEN=*), OPTIONAL, INTENT(IN) :: def |
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441 | LOGICAL, OPTIONAL, INTENT(IN) :: lDisp |
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442 | LOGICAL :: lD |
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443 | !$OMP BARRIER |
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444 | IF(is_mpi_root.AND.is_omp_root) THEN |
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445 | IF(PRESENT(def)) val=def; CALL getin(nam,val) |
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446 | lD=.TRUE.; IF(PRESENT(lDisp)) lD=lDisp |
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447 | IF(lD) CALL msg(TRIM(nam)//' = '//TRIM(val)) |
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448 | END IF |
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449 | CALL bcast(val) |
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450 | END SUBROUTINE getinp_s |
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451 | |
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452 | SUBROUTINE getinp_i(nam, val, def, lDisp) |
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453 | USE ioipsl_getincom, ONLY: getin |
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454 | USE mod_phys_lmdz_mpi_data, ONLY : is_mpi_root |
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455 | USE mod_phys_lmdz_omp_data, ONLY : is_omp_root |
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456 | USE mod_phys_lmdz_transfert_para, ONLY : bcast |
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457 | CHARACTER(LEN=*), INTENT(IN) :: nam |
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458 | INTEGER, INTENT(INOUT) :: val |
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459 | INTEGER, OPTIONAL, INTENT(IN) :: def |
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460 | LOGICAL, OPTIONAL, INTENT(IN) :: lDisp |
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461 | LOGICAL :: lD |
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462 | !$OMP BARRIER |
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463 | IF(is_mpi_root.AND.is_omp_root) THEN |
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464 | IF(PRESENT(def)) val=def; CALL getin(nam,val) |
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465 | lD=.TRUE.; IF(PRESENT(lDisp)) lD=lDisp |
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466 | IF(lD) CALL msg(TRIM(nam)//' = '//TRIM(int2str(val))) |
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467 | END IF |
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468 | CALL bcast(val) |
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469 | END SUBROUTINE getinp_i |
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470 | |
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471 | SUBROUTINE getinp_r(nam, val, def, lDisp) |
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472 | USE ioipsl_getincom, ONLY: getin |
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473 | USE mod_phys_lmdz_mpi_data, ONLY : is_mpi_root |
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474 | USE mod_phys_lmdz_omp_data, ONLY : is_omp_root |
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475 | USE mod_phys_lmdz_transfert_para, ONLY : bcast |
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476 | CHARACTER(LEN=*), INTENT(IN) :: nam |
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477 | REAL, INTENT(INOUT) :: val |
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478 | REAL, OPTIONAL, INTENT(IN) :: def |
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479 | LOGICAL, OPTIONAL, INTENT(IN) :: lDisp |
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480 | LOGICAL :: lD |
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481 | !$OMP BARRIER |
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482 | IF(is_mpi_root.AND.is_omp_root) THEN |
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483 | IF(PRESENT(def)) val=def; CALL getin(nam,val) |
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484 | lD=.TRUE.; IF(PRESENT(lDisp)) lD=lDisp |
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485 | IF(lD) CALL msg(TRIM(nam)//' = '//TRIM(real2str(val))) |
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486 | END IF |
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487 | CALL bcast(val) |
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488 | END SUBROUTINE getinp_r |
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489 | |
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490 | SUBROUTINE getinp_l(nam, val, def, lDisp) |
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491 | USE ioipsl_getincom, ONLY: getin |
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492 | USE mod_phys_lmdz_mpi_data, ONLY : is_mpi_root |
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493 | USE mod_phys_lmdz_omp_data, ONLY : is_omp_root |
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494 | USE mod_phys_lmdz_transfert_para, ONLY : bcast |
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495 | CHARACTER(LEN=*), INTENT(IN) :: nam |
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496 | LOGICAL, INTENT(INOUT) :: val |
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497 | LOGICAL, OPTIONAL, INTENT(IN) :: def |
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498 | LOGICAL, OPTIONAL, INTENT(IN) :: lDisp |
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499 | LOGICAL :: lD |
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500 | !$OMP BARRIER |
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501 | IF(is_mpi_root.AND.is_omp_root) THEN |
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502 | IF(PRESENT(def)) val=def; CALL getin(nam,val) |
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503 | lD=.TRUE.; IF(PRESENT(lDisp)) lD=lDisp |
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504 | IF(lD) CALL msg(TRIM(nam)//' = '//TRIM(bool2str(val))) |
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505 | END IF |
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506 | CALL bcast(val) |
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507 | END SUBROUTINE getinp_l |
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508 | |
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509 | END MODULE isotopes_mod |
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510 | #endif |
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511 | |
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512 | |
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