1 | MODULE tracco2i_mod |
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2 | ! |
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3 | ! This module does the work for the interactive CO2 tracers |
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4 | ! Authors: Patricia Cadule and Olivier Boucher |
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5 | ! |
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6 | ! Purpose and description: |
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7 | ! ----------------------- |
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8 | ! Main routine for the interactive carbon cycle |
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9 | ! Gather all carbon fluxes and emissions from ORCHIDEE, PISCES and fossil fuel |
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10 | ! Compute the net flux in source field which is used in phytrac |
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11 | ! Compute global CO2 mixing ratio for radiation scheme if option is activated |
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12 | ! Redistribute CO2 evenly over the atmosphere if transport is desactivated |
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13 | ! |
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14 | CONTAINS |
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15 | |
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16 | SUBROUTINE tracco2i_init() |
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17 | ! This subroutine calls carbon_cycle_init needed to be done before first call to phys_output_write in physiq. |
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18 | USE carbon_cycle_mod, ONLY: carbon_cycle_init, carbon_cycle_cpl |
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19 | |
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20 | ! Initialize carbon_cycle_mod |
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21 | IF (carbon_cycle_cpl) THEN |
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22 | CALL carbon_cycle_init() |
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23 | ENDIF |
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24 | |
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25 | END SUBROUTINE tracco2i_init |
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26 | |
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27 | SUBROUTINE tracco2i(pdtphys, debutphy, & |
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28 | xlat, xlon, pphis, pphi, & |
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29 | t_seri, pplay, paprs, tr_seri, source) |
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30 | |
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31 | USE dimphy |
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32 | USE infotrac_phy |
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33 | USE geometry_mod, ONLY: cell_area |
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34 | USE carbon_cycle_mod, ONLY: id_CO2, nbcf_in, fields_in, cfname_in |
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35 | USE carbon_cycle_mod, ONLY: fco2_ocn_day, fco2_ff, fco2_bb, fco2_land, fco2_ocean |
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36 | USE carbon_cycle_mod, ONLY: fco2_land_nbp, fco2_land_nep, fco2_land_fLuc |
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37 | USE carbon_cycle_mod, ONLY: fco2_land_fwoodharvest, fco2_land_fHarvest |
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38 | USE carbon_cycle_mod, ONLY: carbon_cycle_cpl, carbon_cycle_tr, carbon_cycle_rad, RCO2_glo, RCO2_tot |
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39 | USE mod_grid_phy_lmdz |
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40 | USE mod_phys_lmdz_mpi_data, ONLY: is_mpi_root |
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41 | USE mod_phys_lmdz_para, ONLY: gather, bcast, scatter |
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42 | USE phys_cal_mod |
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43 | USE phys_state_var_mod, ONLY: pctsrf |
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44 | USE indice_sol_mod, ONLY: nbsrf, is_ter, is_lic, is_oce, is_sic |
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45 | |
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46 | IMPLICIT NONE |
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47 | |
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48 | INCLUDE "clesphys.h" |
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49 | INCLUDE "YOMCST.h" |
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50 | |
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51 | ! Input argument |
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52 | !--------------- |
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53 | REAL,INTENT(IN) :: pdtphys ! Pas d'integration pour la physique (seconde) |
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54 | LOGICAL,INTENT(IN) :: debutphy ! le flag de l'initialisation de la physique |
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55 | |
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56 | REAL,DIMENSION(klon),INTENT(IN) :: xlat ! latitudes pour chaque point |
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57 | REAL,DIMENSION(klon),INTENT(IN) :: xlon ! longitudes pour chaque point |
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58 | REAL,DIMENSION(klon),INTENT(IN) :: pphis ! geopotentiel du sol |
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59 | REAL,DIMENSION(klon,klev),INTENT(IN) :: pphi ! geopotentiel de chaque couche |
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60 | |
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61 | REAL,DIMENSION(klon,klev),INTENT(IN) :: t_seri ! Temperature |
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62 | REAL,DIMENSION(klon,klev),INTENT(IN) :: pplay ! pression pour le mileu de chaque couche (en Pa) |
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63 | REAL,DIMENSION(klon,klev+1),INTENT(IN) :: paprs ! pression pour chaque inter-couche (en Pa) |
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64 | REAL,DIMENSION(klon,nbtr),INTENT(INOUT):: source ! flux de traceur [U/m2/s] |
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65 | |
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66 | ! Output argument |
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67 | !---------------- |
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68 | REAL,DIMENSION(klon,klev,nbtr),INTENT(INOUT) :: tr_seri ! Concentration Traceur [U/kgA] |
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69 | |
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70 | ! Local variables |
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71 | !---------------- |
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72 | |
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73 | INTEGER :: it, k, i, nb |
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74 | REAL, DIMENSION(klon,klev) :: m_air ! mass of air in every grid box [kg] |
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75 | REAL, DIMENSION(klon_glo,klev) :: co2_glo ! variable temporaire sur la grille global |
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76 | REAL, DIMENSION(klon_glo,klev) :: m_air_glo ! variable temporaire sur la grille global |
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77 | |
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78 | LOGICAL, SAVE :: check_fCO2_nbp_in_cfname |
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79 | !$OMP THREADPRIVATE(check_fCO2_nbp_in_cfname) |
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80 | INTEGER, SAVE :: day_pre=-1 |
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81 | !$OMP THREADPRIVATE(day_pre) |
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82 | |
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83 | IF (is_mpi_root) THEN |
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84 | PRINT *,'in tracco2i: date from phys_cal_mod =',year_cur,'-',mth_cur,'-',day_cur,'-',hour |
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85 | ENDIF |
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86 | |
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87 | !--initialisation of CO2 field if not in restart file |
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88 | !--dirty way of doing, do it better later |
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89 | !--convert 280 ppm into kg CO2 / kg air |
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90 | IF (debutphy) THEN |
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91 | |
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92 | ! Initialisation de tr_seri(id_CO2) si pas initialise |
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93 | IF (MAXVAL(tr_seri(:,:,id_CO2)).LT.1.e-15) THEN |
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94 | tr_seri(:,:,id_CO2)=co2_ppm0*1.e-6/RMD*RMCO2 !--initialised from co2_ppm0 in rdem |
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95 | ENDIF |
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96 | |
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97 | !--check if fCO2_nbp is in |
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98 | check_fCO2_nbp_in_cfname=.FALSE. |
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99 | DO nb=1, nbcf_in |
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100 | IF (cfname_in(nb)=="fCO2_nbp") check_fCO2_nbp_in_cfname=.TRUE. |
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101 | ENDDO |
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102 | |
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103 | ENDIF |
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104 | |
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105 | !--calculate mass of air in every grid box in kg air |
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106 | DO i=1, klon |
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107 | DO k=1, klev |
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108 | m_air(i,k)=(paprs(i,k)-paprs(i,k+1))/RG*cell_area(i) |
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109 | ENDDO |
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110 | ENDDO |
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111 | |
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112 | !--call CO2 emission routine |
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113 | !--co2bb is zero for now |
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114 | !--unit kg CO2 m-2 s-1 |
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115 | CALL co2_emissions(debutphy) |
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116 | |
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117 | !--retrieving land and ocean CO2 flux |
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118 | fco2_land(:)=0.0 |
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119 | fco2_ocean(:)=0.0 |
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120 | fco2_land_nbp(:)=0. |
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121 | fco2_land_nep(:)=0. |
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122 | fco2_land_fLuc(:)=0. |
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123 | fco2_land_fwoodharvest(:)=0. |
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124 | fco2_land_fHarvest(:)=0. |
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125 | |
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126 | DO nb=1, nbcf_in |
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127 | |
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128 | SELECT CASE(cfname_in(nb)) |
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129 | !--dealing with the different fluxes coming from ORCHIDEE |
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130 | !--fluxes come in unit of kg C m-2 s-1 is converted into kg CO2 m-2 s-1 |
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131 | CASE("fCO2_nep") |
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132 | fco2_land_nep(:)=fields_in(:,nb)*RMCO2/RMC*pctsrf(:,is_ter) |
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133 | CASE("fCO2_fLuc") |
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134 | fco2_land_fLuc(:)=fields_in(:,nb)*RMCO2/RMC*pctsrf(:,is_ter) |
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135 | CASE("fCO2_fwoodharvest") |
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136 | fco2_land_fwoodharvest(:)=fields_in(:,nb)*RMCO2/RMC*pctsrf(:,is_ter) |
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137 | CASE("fCO2_fHarvest") |
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138 | fco2_land_fHarvest(:)=fields_in(:,nb)*RMCO2/RMC*pctsrf(:,is_ter) |
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139 | CASE("fCO2_nbp") |
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140 | fco2_land_nbp(:)=fields_in(:,nb)*RMCO2/RMC*pctsrf(:,is_ter) |
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141 | !--fCO2_fco2_ocn comes in unit of mol C02 m-2 s-1 is converted into kg CO2 m-2 s-1 + change sign |
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142 | CASE("fCO2_fgco2") |
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143 | fco2_ocean(:)=-1.*fco2_ocn_day(:)*RMCO2/1.e3*(pctsrf(:,is_oce)+pctsrf(:,is_sic)) |
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144 | END SELECT |
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145 | |
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146 | ENDDO |
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147 | |
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148 | !--if fCO2_nbp is transferred we use it, otherwise we use the sum of what has been passed from ORCHIDEE |
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149 | IF (check_fCO2_nbp_in_cfname) THEN |
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150 | fco2_land(:)=fco2_land_nbp(:) |
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151 | ELSE |
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152 | fco2_land(:)=fco2_land_nep(:)+fco2_land_fLuc(:)+fco2_land_fwoodharvest(:)+fco2_land_fHarvest(:) |
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153 | ENDIF |
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154 | |
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155 | !!--preparing the net anthropogenic flux at the surface for mixing layer |
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156 | !!--unit kg CO2 / m2 / s |
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157 | ! PRINT *, 'tracco2i_mod.F90 --- MAXVAL(fco2_ff) ',MAXVAL(fco2_ff) |
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158 | ! PRINT *, 'tracco2i_mod.F90 --- MINVAL(fco2_ff) ',MINVAL(fco2_ff) |
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159 | ! PRINT *, 'tracco2i_mod.F90 --- MAXVAL(fco2_bb) ',MAXVAL(fco2_bb) |
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160 | ! PRINT *, 'tracco2i_mod.F90 --- MINVAL(fco2_bb) ',MINVAL(fco2_bb) |
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161 | ! PRINT *, 'tracco2i_mod.F90 --- MAXVAL(fco2_land) ',MAXVAL(fco2_land) |
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162 | ! PRINT *, 'tracco2i_mod.F90 --- MINVAL(fco2_land) ',MINVAL(fco2_land) |
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163 | ! PRINT *, 'tracco2i_mod.F90 --- MAXVAL(fco2_ocean) ',MAXVAL(fco2_ocean) |
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164 | ! PRINT *, 'tracco2i_mod.F90 --- MINVAL(fco2_ocean) ',MINVAL(fco2_ocean) |
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165 | ! PRINT *, 'tracco2i_mod.F90 --- MAXVAL(source(:,id_CO2)) ',MAXVAL(source(:,id_CO2)) |
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166 | ! PRINT *, 'tracco2i_mod.F90 --- MINVAL(source(:,id_CO2)) ',MINVAL(source(:,id_CO2)) |
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167 | ! |
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168 | !--build final source term for CO2 |
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169 | source(:,id_CO2)=fco2_ff(:)+fco2_bb(:)+fco2_land(:)+fco2_ocean(:) |
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170 | |
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171 | !--computing global mean CO2 for radiation |
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172 | !--for every timestep comment out the IF ENDIF statements |
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173 | !--otherwise this is updated every day |
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174 | IF (debutphy.OR.day_cur.NE.day_pre) THEN |
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175 | |
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176 | CALL gather(tr_seri(:,:,id_CO2),co2_glo) |
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177 | CALL gather(m_air,m_air_glo) |
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178 | |
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179 | !$OMP MASTER |
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180 | |
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181 | !--compute a global mean CO2 value and print its value in ppm |
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182 | IF (is_mpi_root) THEN |
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183 | RCO2_tot=SUM(co2_glo*m_air_glo) !--unit kg CO2 |
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184 | RCO2_glo=RCO2_tot/SUM(m_air_glo) !--unit kg CO2 / kg air |
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185 | PRINT *,'tracco2i: global CO2 in ppm =', RCO2_glo*1.e6*RMD/RMCO2 |
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186 | PRINT *,'tracco2i: total CO2 in kg =', RCO2_tot |
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187 | ENDIF |
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188 | !$OMP END MASTER |
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189 | CALL bcast(RCO2_glo) |
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190 | day_pre=day_cur |
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191 | !--if not carbon_cycle_tr, then we reinitialize the CO2 each day to its global mean value |
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192 | IF (.NOT.carbon_cycle_tr) THEN |
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193 | tr_seri(:,:,id_CO2)=RCO2_glo |
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194 | ENDIF |
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195 | ENDIF |
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196 | |
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197 | END SUBROUTINE tracco2i |
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198 | |
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199 | SUBROUTINE co2_emissions(debutphy) |
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200 | |
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201 | USE dimphy |
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202 | USE infotrac_phy |
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203 | USE geometry_mod, ONLY : cell_area |
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204 | USE mod_grid_phy_lmdz |
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205 | USE mod_phys_lmdz_mpi_data, ONLY: is_mpi_root |
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206 | USE mod_phys_lmdz_para, ONLY: gather, scatter |
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207 | USE phys_cal_mod |
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208 | |
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209 | USE netcdf95, ONLY: nf95_close, nf95_gw_var, nf95_inq_varid, nf95_open |
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210 | USE netcdf, ONLY: nf90_get_var, nf90_noerr, nf90_nowrite |
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211 | |
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212 | USE carbon_cycle_mod, ONLY : fco2_ff, fco2_bb, fco2_land, fco2_ocean |
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213 | |
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214 | IMPLICIT NONE |
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215 | |
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216 | INCLUDE "YOMCST.h" |
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217 | LOGICAL,INTENT(IN) :: debutphy |
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218 | |
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219 | ! For NetCDF: |
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220 | INTEGER ncid_in ! IDs for input files |
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221 | INTEGER varid, ncerr |
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222 | |
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223 | INTEGER :: n_glo, n_month |
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224 | REAL, POINTER:: vector(:), time(:) |
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225 | REAL,ALLOCATABLE :: flx_co2ff_glo(:,:) ! fossil-fuel CO2 |
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226 | REAL,ALLOCATABLE :: flx_co2bb_glo(:,:) ! biomass-burning CO2 |
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227 | REAL,ALLOCATABLE, SAVE :: flx_co2ff(:,:) ! fossil-fuel CO2 |
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228 | REAL,ALLOCATABLE, SAVE :: flx_co2bb(:,:) ! biomass-burning CO2 |
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229 | !$OMP THREADPRIVATE(flx_co2ff,flx_co2bb) |
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230 | |
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231 | !! may be controlled via the .def later on |
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232 | !! also co2bb for now comes from ORCHIDEE |
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233 | LOGICAL, PARAMETER :: readco2ff=.TRUE. |
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234 | !! this should be left to FALSE for now |
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235 | LOGICAL, PARAMETER :: readco2bb=.FALSE. |
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236 | |
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237 | CHARACTER (len = 20) :: modname = 'tracco2i.co2_emissions' |
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238 | CHARACTER (len = 80) :: abort_message |
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239 | |
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240 | IF (debutphy) THEN |
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241 | |
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242 | ALLOCATE(flx_co2ff(klon,12)) |
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243 | ALLOCATE(flx_co2bb(klon,12)) |
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244 | |
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245 | !$OMP MASTER |
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246 | IF (is_mpi_root) THEN |
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247 | |
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248 | IF (.NOT.ALLOCATED(flx_co2ff_glo)) ALLOCATE(flx_co2ff_glo(klon_glo,12)) |
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249 | IF (.NOT.ALLOCATED(flx_co2bb_glo)) ALLOCATE(flx_co2bb_glo(klon_glo,12)) |
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250 | |
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251 | !--reading CO2 fossil fuel emissions |
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252 | IF (readco2ff) THEN |
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253 | |
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254 | ! ... Open the COZff file |
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255 | CALL nf95_open("sflx_lmdz_co2_ff.nc", nf90_nowrite, ncid_in) |
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256 | |
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257 | CALL nf95_inq_varid(ncid_in, "vector", varid) |
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258 | CALL nf95_gw_var(ncid_in, varid, vector) |
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259 | n_glo = size(vector) |
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260 | IF (n_glo.NE.klon_glo) THEN |
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261 | abort_message='sflx_lmdz_co2_ff: le nombre de points n est pas egal a klon_glo' |
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262 | CALL abort_physic(modname,abort_message,1) |
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263 | ENDIF |
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264 | |
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265 | CALL nf95_inq_varid(ncid_in, "time", varid) |
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266 | CALL nf95_gw_var(ncid_in, varid, time) |
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267 | n_month = size(time) |
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268 | IF (n_month.NE.12) THEN |
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269 | abort_message='sflx_lmdz_co2_ff: le nombre de month n est pas egal a 12' |
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270 | CALL abort_physic(modname,abort_message,1) |
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271 | ENDIF |
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272 | |
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273 | !--reading flx_co2 for fossil fuel |
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274 | CALL nf95_inq_varid(ncid_in, "flx_co2", varid) |
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275 | ncerr = nf90_get_var(ncid_in, varid, flx_co2ff_glo) |
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276 | |
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277 | CALL nf95_close(ncid_in) |
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278 | |
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279 | ELSE !--co2ff not to be read |
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280 | flx_co2ff_glo(:,:)=0.0 |
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281 | ENDIF |
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282 | |
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283 | !--reading CO2 biomass burning emissions |
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284 | !--using it will be inconsistent with treatment in ORCHIDEE |
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285 | IF (readco2bb) THEN |
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286 | |
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287 | ! ... Open the CO2bb file |
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288 | CALL nf95_open("sflx_lmdz_co2_bb.nc", nf90_nowrite, ncid_in) |
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289 | |
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290 | CALL nf95_inq_varid(ncid_in, "vector", varid) |
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291 | CALL nf95_gw_var(ncid_in, varid, vector) |
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292 | n_glo = size(vector) |
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293 | IF (n_glo.NE.klon_glo) THEN |
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294 | abort_message='sflx_lmdz_co2_bb: le nombre de points n est pas egal a klon_glo' |
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295 | CALL abort_physic(modname,abort_message,1) |
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296 | ENDIF |
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297 | |
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298 | CALL nf95_inq_varid(ncid_in, "time", varid) |
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299 | CALL nf95_gw_var(ncid_in, varid, time) |
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300 | n_month = size(time) |
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301 | IF (n_month.NE.12) THEN |
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302 | abort_message='sflx_lmdz_co2_bb: le nombre de month n est pas egal a 12' |
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303 | CALL abort_physic(modname,abort_message,1) |
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304 | ENDIF |
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305 | |
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306 | !--reading flx_co2 for biomass burning |
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307 | CALL nf95_inq_varid(ncid_in, "flx_co2", varid) |
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308 | ncerr = nf90_get_var(ncid_in, varid, flx_co2bb_glo) |
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309 | |
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310 | CALL nf95_close(ncid_in) |
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311 | |
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312 | ELSE !--co2bb not to be read |
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313 | flx_co2bb_glo(:,:)=0.0 |
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314 | ENDIF |
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315 | |
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316 | ENDIF |
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317 | !$OMP END MASTER |
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318 | |
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319 | ! Allocation needed for all proc otherwise scatter might complain |
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320 | IF (.NOT.ALLOCATED(flx_co2ff_glo)) ALLOCATE(flx_co2ff_glo(0,0)) |
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321 | IF (.NOT.ALLOCATED(flx_co2bb_glo)) ALLOCATE(flx_co2bb_glo(0,0)) |
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322 | |
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323 | !--scatter on all proc |
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324 | CALL scatter(flx_co2ff_glo,flx_co2ff) |
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325 | CALL scatter(flx_co2bb_glo,flx_co2bb) |
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326 | |
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327 | IF (ALLOCATED(flx_co2ff_glo)) DEALLOCATE(flx_co2ff_glo) |
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328 | IF (ALLOCATED(flx_co2bb_glo)) DEALLOCATE(flx_co2bb_glo) |
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329 | |
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330 | ENDIF !--end debuthy |
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331 | |
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332 | !---select the correct month |
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333 | IF (mth_cur.LT.1.OR.mth_cur.GT.12) THEN |
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334 | PRINT *,'probleme avec le mois dans co2_ini =', mth_cur |
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335 | ENDIF |
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336 | |
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337 | fco2_ff(:) = flx_co2ff(:,mth_cur) |
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338 | fco2_bb(:) = flx_co2bb(:,mth_cur) |
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339 | |
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340 | END SUBROUTINE co2_emissions |
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341 | |
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342 | END MODULE tracco2i_mod |
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