1 | ! $Id: phys_output_mod.F90 2551 2016-06-09 09:30:18Z jyg $ |
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2 | ! |
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3 | |
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4 | MODULE phys_output_mod |
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5 | USE indice_sol_mod |
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6 | USE phys_output_var_mod |
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7 | USE aero_mod, only : naero_spc,name_aero |
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8 | USE phys_output_write_mod, ONLY : phys_output_write |
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9 | REAL, DIMENSION(nfiles),SAVE :: ecrit_files |
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10 | |
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11 | ! Abderrahmane 12 2007 |
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12 | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
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13 | !!! Ecreture des Sorties du modele dans les fichiers Netcdf : |
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14 | ! histmth.nc : moyennes mensuelles |
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15 | ! histday.nc : moyennes journalieres |
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16 | ! histhf.nc : moyennes toutes les 3 heures |
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17 | ! histins.nc : valeurs instantanees |
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18 | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
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19 | |
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20 | CONTAINS |
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21 | |
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22 | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
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23 | !!!!!!!!! Ouverture des fichier et definition des variable de sortie !!!!!!!! |
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24 | !! histbeg, histvert et histdef |
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25 | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
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26 | |
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27 | SUBROUTINE phys_output_open(rlon,rlat,pim,tabij,ipt,jpt,plon,plat, & |
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28 | jjmp1,nlevSTD,clevSTD,rlevSTD, dtime, ok_veget, & |
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29 | type_ocean, iflag_pbl,iflag_pbl_split,ok_mensuel,ok_journe, & |
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30 | ok_hf,ok_instan,ok_LES,ok_ade,ok_aie, read_climoz, & |
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31 | phys_out_filestations, & |
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32 | new_aod, aerosol_couple, flag_aerosol_strat, & |
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33 | pdtphys, paprs, pphis, pplay, lmax_th, ptconv, ptconvth, ivap, & |
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34 | d_t, qx, d_qx, zmasse, ok_sync) |
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35 | |
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36 | USE iophy |
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37 | USE dimphy |
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38 | USE infotrac_phy, ONLY: nqtot, nqo, niadv, tname, ttext |
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39 | #ifdef ISO |
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40 | USE infotrac_phy, ONLY: ntraciso,niso,nqtottr,itr_indice |
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41 | USE isotopes_mod, ONLY: striso,iso_HTO |
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42 | #ifdef ISOTRAC |
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43 | USE isotrac_mod, ONLY: strtrac,index_iso,index_zone |
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44 | #endif |
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45 | #endif |
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46 | USE ioipsl |
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47 | USE phys_cal_mod, only : hour, calend |
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48 | USE mod_phys_lmdz_para |
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49 | USE aero_mod, only : naero_spc,name_aero |
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50 | !Martin |
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51 | USE surface_data, ONLY : ok_snow |
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52 | USE phys_output_ctrlout_mod |
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53 | USE mod_grid_phy_lmdz, only: klon_glo,nbp_lon,nbp_lat |
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54 | USE print_control_mod, ONLY: prt_level,lunout |
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55 | USE vertical_layers_mod, ONLY: ap,bp,preff,presnivs |
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56 | USE time_phylmdz_mod, ONLY: day_ini, itau_phy, start_time, annee_ref, day_ref |
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57 | #ifdef CPP_XIOS |
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58 | ! ug Pour les sorties XIOS |
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59 | USE wxios |
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60 | #endif |
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61 | |
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62 | IMPLICIT NONE |
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63 | include "clesphys.h" |
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64 | include "thermcell.h" |
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65 | include "YOMCST.h" |
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66 | |
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67 | ! ug Nouveaux arguments n\'ecessaires au histwrite_mod: |
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68 | INTEGER, INTENT(IN) :: ivap |
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69 | INTEGER, DIMENSION(klon), INTENT(IN) :: lmax_th |
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70 | LOGICAL, INTENT(IN) :: ok_sync |
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71 | LOGICAL, DIMENSION(klon, klev), INTENT(IN) :: ptconv, ptconvth |
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72 | REAL, INTENT(IN) :: pdtphys |
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73 | REAL, DIMENSION(klon), INTENT(IN) :: pphis |
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74 | REAL, DIMENSION(klon, klev), INTENT(IN) :: pplay, d_t |
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75 | REAL, DIMENSION(klon, klev+1), INTENT(IN) :: paprs |
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76 | REAL, DIMENSION(klon,klev,nqtot), INTENT(IN):: qx, d_qx |
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77 | REAL, DIMENSION(klon, klev), INTENT(IN) :: zmasse |
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78 | |
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79 | |
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80 | REAL,DIMENSION(klon),INTENT(IN) :: rlon |
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81 | REAL,DIMENSION(klon),INTENT(IN) :: rlat |
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82 | INTEGER, INTENT(IN) :: pim |
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83 | INTEGER, DIMENSION(pim) :: tabij |
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84 | INTEGER,DIMENSION(pim), INTENT(IN) :: ipt, jpt |
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85 | REAL,DIMENSION(pim), INTENT(IN) :: plat, plon |
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86 | REAL,DIMENSION(pim,2) :: plat_bounds, plon_bounds |
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87 | |
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88 | INTEGER :: jjmp1 |
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89 | INTEGER :: nlevSTD, radpas |
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90 | LOGICAL :: ok_mensuel, ok_journe, ok_hf, ok_instan |
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91 | LOGICAL :: ok_LES,ok_ade,ok_aie |
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92 | INTEGER :: flag_aerosol_strat |
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93 | LOGICAL :: new_aod, aerosol_couple |
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94 | INTEGER, INTENT(IN):: read_climoz ! read ozone climatology |
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95 | ! Allowed values are 0, 1 and 2 |
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96 | ! 0: do not read an ozone climatology |
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97 | ! 1: read a single ozone climatology that will be used day and night |
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98 | ! 2: read two ozone climatologies, the average day and night |
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99 | ! climatology and the daylight climatology |
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100 | |
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101 | REAL :: dtime |
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102 | INTEGER :: idayref |
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103 | REAL :: zjulian_start, zjulian |
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104 | REAL, DIMENSION(klev) :: Ahyb, Bhyb, Alt |
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105 | CHARACTER(LEN=4), DIMENSION(nlevSTD) :: clevSTD |
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106 | REAL, DIMENSION(nlevSTD) :: rlevSTD |
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107 | INTEGER :: nsrf, k, iq, iiq, iff, i, j, ilev |
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108 | INTEGER :: naero |
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109 | LOGICAL :: ok_veget |
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110 | INTEGER :: iflag_pbl |
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111 | INTEGER :: iflag_pbl_split |
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112 | CHARACTER(LEN=4) :: bb2 |
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113 | CHARACTER(LEN=2) :: bb3 |
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114 | CHARACTER(LEN=6) :: type_ocean |
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115 | INTEGER, DIMENSION(nbp_lon*jjmp1) :: ndex2d |
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116 | INTEGER, DIMENSION(nbp_lon*jjmp1*klev) :: ndex3d |
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117 | INTEGER :: imin_ins, imax_ins |
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118 | INTEGER :: jmin_ins, jmax_ins |
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119 | INTEGER, DIMENSION(nfiles) :: phys_out_levmin, phys_out_levmax |
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120 | INTEGER, DIMENSION(nfiles) :: phys_out_filelevels |
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121 | CHARACTER(LEN=20), DIMENSION(nfiles) :: chtimestep = (/ 'Default', 'Default', 'Default', 'Default', 'Default', & |
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122 | 'Default', 'Default', 'Default', 'Default' /) |
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123 | LOGICAL, DIMENSION(nfiles) :: phys_out_filekeys |
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124 | LOGICAL, DIMENSION(nfiles) :: phys_out_filestations |
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125 | |
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126 | !!!!!!!!!! stockage dans une region limitee pour chaque fichier !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
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127 | ! entre [phys_out_lonmin,phys_out_lonmax] et [phys_out_latmin,phys_out_latmax] |
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128 | |
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129 | LOGICAL, DIMENSION(nfiles), SAVE :: phys_out_regfkey = (/ .FALSE., .FALSE., .FALSE., .FALSE., & |
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130 | .FALSE., .FALSE., .FALSE., .FALSE., .FALSE. /) |
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131 | REAL, DIMENSION(nfiles), SAVE :: phys_out_lonmin = (/ -180., -180., -180., -180., & |
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132 | -180., -180., -180., -180., -180. /) |
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133 | REAL, DIMENSION(nfiles), SAVE :: phys_out_lonmax = (/ 180., 180., 180., 180., & |
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134 | 180., 180., 180., 180., 180. /) |
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135 | REAL, DIMENSION(nfiles), SAVE :: phys_out_latmin = (/ -90., -90., -90., -90., & |
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136 | -90., -90., -90., -90., -90. /) |
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137 | REAL, DIMENSION(nfiles), SAVE :: phys_out_latmax = (/ 90., 90., 90., 90., & |
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138 | 90., 90., 90., 90., 90. /) |
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139 | |
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140 | #ifdef ISO |
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141 | integer ixt,itr |
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142 | CHARACTER*50 striso_sortie |
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143 | character(len=20) varname_iso |
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144 | integer lnblnk |
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145 | #ifdef ISOTRAC |
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146 | integer iiso,izone |
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147 | #endif |
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148 | #endif |
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149 | |
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150 | #ifdef CPP_XIOS |
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151 | ! ug Variables utilis\'ees pour r\'ecup\'erer le calendrier pour xios |
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152 | INTEGER :: x_an, x_mois, x_jour |
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153 | REAL :: x_heure |
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154 | INTEGER :: ini_an, ini_mois, ini_jour |
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155 | REAL :: ini_heure |
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156 | #endif |
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157 | |
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158 | WRITE(lunout,*) 'Debut phys_output_mod.F90' |
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159 | ! Initialisations (Valeurs par defaut |
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160 | |
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161 | IF (.NOT. ALLOCATED(o_trac)) ALLOCATE(o_trac(nqtot)) |
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162 | IF (.NOT. ALLOCATED(o_trac_cum)) ALLOCATE(o_trac_cum(nqtot)) |
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163 | ALLOCATE(o_dtr_the(nqtot),o_dtr_con(nqtot),o_dtr_lessi_impa(nqtot)) |
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164 | ALLOCATE(o_dtr_lessi_nucl(nqtot),o_dtr_insc(nqtot),o_dtr_bcscav(nqtot)) |
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165 | ALLOCATE(o_dtr_evapls(nqtot),o_dtr_ls(nqtot),o_dtr_trsp(nqtot)) |
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166 | ALLOCATE(o_dtr_sscav(nqtot),o_dtr_sat(nqtot),o_dtr_uscav(nqtot)) |
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167 | ALLOCATE(o_dtr_dry(nqtot),o_dtr_vdf(nqtot)) |
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168 | |
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169 | #ifdef ISO |
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170 | IF (.NOT. ALLOCATED(o_xtprecip)) ALLOCATE(o_xtprecip(ntraciso)) |
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171 | IF (.NOT. ALLOCATED(o_xtplul)) ALLOCATE(o_xtplul(ntraciso)) |
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172 | IF (.NOT. ALLOCATED(o_xtpluc)) ALLOCATE(o_xtpluc(ntraciso)) |
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173 | IF (.NOT. ALLOCATED(o_xtevap)) ALLOCATE(o_xtevap(ntraciso)) |
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174 | IF (.NOT. ALLOCATED(o_xtovap)) ALLOCATE(o_xtovap(ntraciso)) |
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175 | IF (.NOT. ALLOCATED(o_dxtdyn)) ALLOCATE(o_dxtdyn(ntraciso)) |
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176 | IF (.NOT. ALLOCATED(o_dxtldyn)) ALLOCATE(o_dxtldyn(ntraciso)) |
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177 | IF (.NOT. ALLOCATED(o_dxtlsc)) ALLOCATE(o_dxtlsc(ntraciso)) |
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178 | IF (.NOT. ALLOCATED(o_dxteva)) ALLOCATE(o_dxteva(ntraciso)) |
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179 | IF (.NOT. ALLOCATED(o_dxtcon)) ALLOCATE(o_dxtcon(ntraciso)) |
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180 | IF (.NOT. ALLOCATED(o_dxtajs)) ALLOCATE(o_dxtajs(ntraciso)) |
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181 | IF (.NOT. ALLOCATED(o_dxtch4)) ALLOCATE(o_dxtch4(ntraciso)) |
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182 | IF (.NOT. ALLOCATED(o_dxtvdf)) ALLOCATE(o_dxtvdf(ntraciso)) |
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183 | if (iso_HTO.gt.0) then |
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184 | IF (.NOT. ALLOCATED(o_dxtprod_nucl)) ALLOCATE(o_dxtprod_nucl(ntraciso)) |
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185 | IF (.NOT. ALLOCATED(o_dxtcosmo)) ALLOCATE(o_dxtcosmo(ntraciso)) |
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186 | IF (.NOT. ALLOCATED(o_dxtdecroiss)) ALLOCATE(o_dxtdecroiss(ntraciso)) |
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187 | endif !if (iso_HTO.gt.0) then |
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188 | #endif |
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189 | |
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190 | |
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191 | levmax = (/ klev, klev, klev, klev, klev, klev, nlevSTD, nlevSTD, nlevSTD /) |
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192 | |
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193 | phys_out_filenames(1) = 'histmth' |
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194 | phys_out_filenames(2) = 'histday' |
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195 | phys_out_filenames(3) = 'histhf6h' |
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196 | phys_out_filenames(4) = 'histhf3h' |
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197 | phys_out_filenames(5) = 'histhf3hm' |
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198 | phys_out_filenames(6) = 'histstn' |
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199 | phys_out_filenames(7) = 'histmthNMC' |
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200 | phys_out_filenames(8) = 'histdayNMC' |
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201 | phys_out_filenames(9) = 'histhfNMC.nc' |
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202 | |
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203 | type_ecri(1) = 'ave(X)' |
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204 | type_ecri(2) = 'ave(X)' |
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205 | type_ecri(3) = 'inst(X)' |
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206 | type_ecri(4) = 'inst(X)' |
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207 | type_ecri(5) = 'ave(X)' |
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208 | type_ecri(6) = 'inst(X)' |
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209 | type_ecri(7) = 'inst(X)' |
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210 | type_ecri(8) = 'inst(X)' |
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211 | type_ecri(9) = 'inst(X)' |
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212 | |
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213 | clef_files(1) = ok_mensuel |
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214 | clef_files(2) = ok_journe |
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215 | clef_files(3) = ok_hf |
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216 | clef_files(4) = ok_instan |
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217 | clef_files(5) = ok_LES |
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218 | clef_files(6) = ok_instan |
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219 | clef_files(7) = ok_histNMC(1) |
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220 | clef_files(8) = ok_histNMC(2) |
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221 | clef_files(9) = ok_histNMC(3) |
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222 | |
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223 | !sortir des fichiers "stations" si clef_stations(:)=.TRUE. |
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224 | clef_stations(1) = .FALSE. |
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225 | clef_stations(2) = .FALSE. |
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226 | clef_stations(3) = .FALSE. |
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227 | clef_stations(4) = .FALSE. |
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228 | clef_stations(5) = .FALSE. |
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229 | clef_stations(6) = .FALSE. |
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230 | clef_stations(7) = .FALSE. |
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231 | clef_stations(8) = .FALSE. |
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232 | clef_stations(9) = .FALSE. |
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233 | |
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234 | lev_files(1) = lev_histmth |
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235 | lev_files(2) = lev_histday |
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236 | lev_files(3) = lev_histhf |
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237 | lev_files(4) = lev_histins |
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238 | lev_files(5) = lev_histLES |
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239 | lev_files(6) = lev_histins |
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240 | lev_files(7) = levout_histNMC(1) |
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241 | lev_files(8) = levout_histNMC(2) |
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242 | lev_files(9) = levout_histNMC(3) |
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243 | |
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244 | ecrit_files(1) = ecrit_mth |
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245 | ecrit_files(2) = ecrit_day |
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246 | ecrit_files(3) = ecrit_hf |
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247 | ecrit_files(4) = ecrit_ins |
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248 | ecrit_files(5) = ecrit_LES |
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249 | ecrit_files(6) = ecrit_ins |
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250 | ecrit_files(7) = freq_outNMC(1) |
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251 | ecrit_files(8) = freq_outNMC(2) |
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252 | ecrit_files(9) = freq_outNMC(3) |
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253 | |
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254 | !! Lectures des parametres de sorties dans physiq.def |
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255 | |
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256 | CALL getin('phys_out_regfkey',phys_out_regfkey) |
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257 | CALL getin('phys_out_lonmin',phys_out_lonmin) |
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258 | CALL getin('phys_out_lonmax',phys_out_lonmax) |
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259 | CALL getin('phys_out_latmin',phys_out_latmin) |
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260 | CALL getin('phys_out_latmax',phys_out_latmax) |
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261 | phys_out_levmin(:)=levmin(:) |
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262 | CALL getin('phys_out_levmin',levmin) |
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263 | phys_out_levmax(:)=levmax(:) |
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264 | CALL getin('phys_out_levmax',levmax) |
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265 | CALL getin('phys_out_filenames',phys_out_filenames) |
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266 | phys_out_filekeys(:)=clef_files(:) |
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267 | CALL getin('phys_out_filekeys',clef_files) |
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268 | phys_out_filestations(:)=clef_stations(:) |
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269 | CALL getin('phys_out_filestations',clef_stations) |
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270 | phys_out_filelevels(:)=lev_files(:) |
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271 | CALL getin('phys_out_filelevels',lev_files) |
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272 | CALL getin('phys_out_filetimesteps',chtimestep) |
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273 | phys_out_filetypes(:)=type_ecri(:) |
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274 | CALL getin('phys_out_filetypes',type_ecri) |
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275 | |
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276 | type_ecri_files(:)=type_ecri(:) |
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277 | |
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278 | ! if (ok_all_xml) phys_out_filelevels = 999 |
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279 | |
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280 | WRITE(lunout,*)'phys_out_lonmin=',phys_out_lonmin |
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281 | WRITE(lunout,*)'phys_out_lonmax=',phys_out_lonmax |
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282 | WRITE(lunout,*)'phys_out_latmin=',phys_out_latmin |
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283 | WRITE(lunout,*)'phys_out_latmax=',phys_out_latmax |
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284 | WRITE(lunout,*)'phys_out_filenames=',phys_out_filenames |
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285 | WRITE(lunout,*)'phys_out_filetypes=',type_ecri |
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286 | WRITE(lunout,*)'phys_out_filekeys=',clef_files |
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287 | WRITE(lunout,*)'phys_out_filestations=',clef_stations |
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288 | WRITE(lunout,*)'phys_out_filelevels=',lev_files |
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289 | |
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290 | ! A noter pour |
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291 | ! l heure initiale - dans les fichiers histoire hist* - on met comme |
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292 | ! heure de debut soit la vraie heure (pour le 1D) soit 0h (pour le 3D) |
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293 | ! afin d avoir une seule sortie mensuelle par mois lorsque l on tourne |
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294 | ! par annee (IM). |
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295 | ! |
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296 | idayref = day_ref |
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297 | IF (klon_glo==1) THEN |
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298 | ! current_time (used to compute hour) is updated at the begining of |
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299 | ! the physics; to set the correct outputs "initial time" we thus |
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300 | ! have to use (hour-dtphys). |
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301 | CALL ymds2ju(annee_ref, 1, idayref, hour-pdtphys, zjulian) |
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302 | print *,'phys_output_mod: annee,iday,hour,zjulian=',annee_ref,idayref, hour, zjulian |
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303 | ELSE |
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304 | CALL ymds2ju(annee_ref, 1, idayref, 0.0, zjulian) |
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305 | CALL ymds2ju(annee_ref, 1, day_ini, start_time*rday, zjulian_start) |
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306 | END IF |
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307 | |
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308 | #ifdef CPP_XIOS |
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309 | ! ug R\'eglage du calendrier xios |
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310 | !Temps julian => an, mois, jour, heure |
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311 | CALL ju2ymds(zjulian, x_an, x_mois, x_jour, x_heure) |
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312 | CALL ju2ymds(zjulian_start, ini_an, ini_mois, ini_jour, ini_heure) |
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313 | CALL wxios_set_cal(dtime, calend, x_an, x_mois, x_jour, x_heure, ini_an, & |
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314 | ini_mois, ini_jour, ini_heure ) |
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315 | #endif |
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316 | |
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317 | !!!!!!!!!!!!!!!!!!!!!!! Boucle sur les fichiers !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
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318 | ! Appel de histbeg et histvert pour creer le fichier et les niveaux verticaux !! |
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319 | ! Appel des histbeg pour definir les variables (nom, moy ou inst, freq de sortie .. |
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320 | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
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321 | |
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322 | zdtime_moy = dtime ! Frequence ou l on moyenne |
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323 | |
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324 | ! Calcul des Ahyb, Bhyb et Alt |
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325 | DO k=1,klev |
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326 | Ahyb(k)=(ap(k)+ap(k+1))/2. |
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327 | Bhyb(k)=(bp(k)+bp(k+1))/2. |
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328 | Alt(k)=log(preff/presnivs(k))*8. |
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329 | ENDDO |
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330 | ! if(prt_level.ge.1) then |
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331 | WRITE(lunout,*)'Ap Hybrid = ',Ahyb(1:klev) |
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332 | WRITE(lunout,*)'Bp Hybrid = ',Bhyb(1:klev) |
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333 | WRITE(lunout,*)'Alt approx des couches pour une haut d echelle de 8km = ',Alt(1:klev) |
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334 | ! endif |
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335 | |
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336 | ecrit_files(7) = ecrit_files(1) |
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337 | ecrit_files(8) = ecrit_files(2) |
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338 | ecrit_files(9) = ecrit_files(3) |
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339 | |
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340 | DO iff=1,nfiles |
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341 | |
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342 | ! Calculate ecrit_files for all files |
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343 | IF ( chtimestep(iff).eq.'Default' ) then |
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344 | ! Par defaut ecrit_files = (ecrit_mensuel ecrit_jour ecrit_hf |
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345 | ! ...)*86400. |
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346 | ecrit_files(iff)=ecrit_files(iff)*86400. |
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347 | ELSE IF (chtimestep(iff).eq.'-1') then |
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348 | PRINT*,'ecrit_files(',iff,') < 0 so IOIPSL work on different' |
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349 | PRINT*,'months length' |
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350 | ecrit_files(iff)=-1. |
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351 | else |
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352 | CALL convers_timesteps(chtimestep(iff),dtime,ecrit_files(iff)) |
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353 | ENDIF |
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354 | |
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355 | WRITE(lunout,*)'ecrit_files(',iff,')= ',ecrit_files(iff) |
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356 | zoutm(iff) = ecrit_files(iff) ! Frequence ou l on ecrit en seconde |
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357 | |
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358 | |
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359 | #ifdef CPP_XIOS |
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360 | !!! Ouverture de chaque fichier XIOS !!!!!!!!!!! |
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361 | IF (.not. ok_all_xml) then |
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362 | if (prt_level >= 10) then |
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363 | print*,'phys_output_open: call wxios_add_file with phys_out_filenames(iff)=',trim(phys_out_filenames(iff)) |
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364 | endif |
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365 | CALL wxios_add_file(phys_out_filenames(iff),chtimestep(iff),lev_files(iff)) |
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366 | ENDIF |
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367 | |
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368 | !!! Declaration des axes verticaux de chaque fichier: |
---|
369 | if (prt_level >= 10) then |
---|
370 | print*,'phys_output_open: Declare vertical axes for each file' |
---|
371 | endif |
---|
372 | if (iff.le.6) then |
---|
373 | CALL wxios_add_vaxis("presnivs", & |
---|
374 | levmax(iff) - levmin(iff) + 1, presnivs(levmin(iff):levmax(iff))) |
---|
375 | CALL wxios_add_vaxis("Ahyb", & |
---|
376 | levmax(iff) - levmin(iff) + 1, Ahyb) |
---|
377 | CALL wxios_add_vaxis("Bhyb", & |
---|
378 | levmax(iff) - levmin(iff) + 1, Bhyb) |
---|
379 | CALL wxios_add_vaxis("Alt", & |
---|
380 | levmax(iff) - levmin(iff) + 1, Alt) |
---|
381 | else |
---|
382 | ! NMC files |
---|
383 | CALL wxios_add_vaxis("plev", & |
---|
384 | levmax(iff) - levmin(iff) + 1, rlevSTD(levmin(iff):levmax(iff))) |
---|
385 | endif |
---|
386 | #endif |
---|
387 | |
---|
388 | IF (clef_files(iff)) THEN |
---|
389 | !!!!!!!!!!!!!!!!! Traitement dans le cas ou l'on veut stocker sur un domaine limite !! |
---|
390 | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
---|
391 | IF (phys_out_regfkey(iff)) then |
---|
392 | imin_ins=1 |
---|
393 | imax_ins=nbp_lon |
---|
394 | jmin_ins=1 |
---|
395 | jmax_ins=jjmp1 |
---|
396 | |
---|
397 | ! correction abderr |
---|
398 | do i=1,nbp_lon |
---|
399 | WRITE(lunout,*)'io_lon(i)=',io_lon(i) |
---|
400 | IF (io_lon(i).le.phys_out_lonmin(iff)) imin_ins=i |
---|
401 | IF (io_lon(i).le.phys_out_lonmax(iff)) imax_ins=i+1 |
---|
402 | enddo |
---|
403 | |
---|
404 | do j=1,jjmp1 |
---|
405 | WRITE(lunout,*)'io_lat(j)=',io_lat(j) |
---|
406 | IF (io_lat(j).ge.phys_out_latmin(iff)) jmax_ins=j+1 |
---|
407 | IF (io_lat(j).ge.phys_out_latmax(iff)) jmin_ins=j |
---|
408 | enddo |
---|
409 | |
---|
410 | WRITE(lunout,*)'On stoke le fichier histoire numero ',iff,' sur ', & |
---|
411 | imin_ins,imax_ins,jmin_ins,jmax_ins |
---|
412 | WRITE(lunout,*)'longitudes : ', & |
---|
413 | io_lon(imin_ins),io_lon(imax_ins), & |
---|
414 | 'latitudes : ', & |
---|
415 | io_lat(jmax_ins),io_lat(jmin_ins) |
---|
416 | |
---|
417 | CALL histbeg(phys_out_filenames(iff),nbp_lon,io_lon,jjmp1,io_lat, & |
---|
418 | imin_ins,imax_ins-imin_ins+1, & |
---|
419 | jmin_ins,jmax_ins-jmin_ins+1, & |
---|
420 | itau_phy,zjulian,dtime,nhorim(iff),nid_files(iff)) |
---|
421 | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
---|
422 | !IM fichiers stations |
---|
423 | else IF (clef_stations(iff)) THEN |
---|
424 | |
---|
425 | if (prt_level >= 10) then |
---|
426 | WRITE(lunout,*)'phys_output_open: iff=',iff,' phys_out_filenames(iff)=',phys_out_filenames(iff) |
---|
427 | endif |
---|
428 | |
---|
429 | CALL histbeg_phy_all(rlon,rlat,pim,tabij,ipt,jpt,plon,plat,plon_bounds,plat_bounds, & |
---|
430 | phys_out_filenames(iff), & |
---|
431 | itau_phy,zjulian,dtime,nhorim(iff),nid_files(iff)) |
---|
432 | else |
---|
433 | CALL histbeg_phy_all(phys_out_filenames(iff),itau_phy,zjulian,& |
---|
434 | dtime,nhorim(iff),nid_files(iff)) |
---|
435 | endif |
---|
436 | |
---|
437 | #ifndef CPP_IOIPSL_NO_OUTPUT |
---|
438 | if (iff.le.6) then |
---|
439 | CALL histvert(nid_files(iff), "presnivs", "Vertical levels", "Pa", & |
---|
440 | levmax(iff) - levmin(iff) + 1, & |
---|
441 | presnivs(levmin(iff):levmax(iff)), nvertm(iff),"down") |
---|
442 | !!!! Composantes de la coordonnee sigma-hybride |
---|
443 | CALL histvert(nid_files(iff), "Ahyb","Ahyb comp of Hyb Cord ", "Pa", & |
---|
444 | levmax(iff) - levmin(iff) + 1,Ahyb,nvertap(iff)) |
---|
445 | |
---|
446 | CALL histvert(nid_files(iff), "Bhyb","Bhyb comp of Hyb Cord", " ", & |
---|
447 | levmax(iff) - levmin(iff) + 1,Bhyb,nvertbp(iff)) |
---|
448 | |
---|
449 | CALL histvert(nid_files(iff), "Alt","Height approx for scale heigh of 8km at levels", "Km", & |
---|
450 | levmax(iff) - levmin(iff) + 1,Alt,nvertAlt(iff)) |
---|
451 | |
---|
452 | else |
---|
453 | CALL histvert(nid_files(iff), "plev", "pressure", "Pa", & |
---|
454 | levmax(iff) - levmin(iff) + 1, & |
---|
455 | rlevSTD(levmin(iff):levmax(iff)), nvertm(iff), "down") |
---|
456 | endif |
---|
457 | #endif |
---|
458 | |
---|
459 | ENDIF ! clef_files |
---|
460 | |
---|
461 | !CR: ajout d'une variable eau |
---|
462 | ! IF (nqtot>=3) THEN |
---|
463 | |
---|
464 | IF (nqtot>=nqo+1) THEN |
---|
465 | ! DO iq=3,nqtot |
---|
466 | #ifdef ISO |
---|
467 | DO itr=1,nqtottr |
---|
468 | iq= itr_indice(itr) |
---|
469 | iiq=niadv(iq) |
---|
470 | o_trac(itr) = ctrl_out((/ 4, 5, 5, 5, 10, 10, 11, 11, 11 /), & |
---|
471 | tname(iiq),'Tracer '//ttext(iiq), "-", & |
---|
472 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
473 | o_dtr_vdf(itr) = ctrl_out((/ 4, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
474 | 'd'//trim(tname(iq))//'_vdf', & |
---|
475 | 'Tendance tracer '//ttext(iiq), "-" , & |
---|
476 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
477 | |
---|
478 | o_dtr_the(itr) = ctrl_out((/ 5, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
479 | 'd'//trim(tname(iq))//'_the', & |
---|
480 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
481 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
482 | |
---|
483 | o_dtr_con(itr) = ctrl_out((/ 5, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
484 | 'd'//trim(tname(iq))//'_con', & |
---|
485 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
486 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
487 | |
---|
488 | o_dtr_lessi_impa(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
489 | 'd'//trim(tname(iq))//'_lessi_impa', & |
---|
490 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
491 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
492 | |
---|
493 | o_dtr_lessi_nucl(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
494 | 'd'//trim(tname(iq))//'_lessi_nucl', & |
---|
495 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
496 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
497 | |
---|
498 | o_dtr_insc(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
499 | 'd'//trim(tname(iq))//'_insc', & |
---|
500 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
501 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
502 | |
---|
503 | o_dtr_bcscav(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
504 | 'd'//trim(tname(iq))//'_bcscav', & |
---|
505 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
506 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
507 | |
---|
508 | o_dtr_evapls(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
509 | 'd'//trim(tname(iq))//'_evapls', & |
---|
510 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
511 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
512 | |
---|
513 | o_dtr_ls(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
514 | 'd'//trim(tname(iq))//'_ls', & |
---|
515 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
516 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
517 | |
---|
518 | o_dtr_trsp(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
519 | 'd'//trim(tname(iq))//'_trsp', & |
---|
520 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
521 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
522 | |
---|
523 | o_dtr_sscav(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
524 | 'd'//trim(tname(iq))//'_sscav', & |
---|
525 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
526 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
527 | |
---|
528 | o_dtr_sat(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
529 | 'd'//trim(tname(iq))//'_sat', & |
---|
530 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
531 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
532 | |
---|
533 | o_dtr_uscav(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
534 | 'd'//trim(tname(iq))//'_uscav', & |
---|
535 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
536 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
537 | |
---|
538 | o_dtr_dry(itr) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
539 | 'cum'//'d'//trim(tname(iq))//'_dry', & |
---|
540 | 'tracer tendency dry deposition'//ttext(iiq), "-", & |
---|
541 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
542 | |
---|
543 | o_trac_cum(itr) = ctrl_out((/ 3, 4, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
544 | 'cum'//tname(iiq),& |
---|
545 | 'Cumulated tracer '//ttext(iiq), "-", & |
---|
546 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
547 | ENDDO |
---|
548 | #else |
---|
549 | DO iq=nqo+1,nqtot |
---|
550 | iiq=niadv(iq) |
---|
551 | o_trac(iq-nqo) = ctrl_out((/ 4, 5, 5, 5, 10, 10, 11, 11, 11 /), & |
---|
552 | tname(iiq),'Tracer '//ttext(iiq), "-", & |
---|
553 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
554 | o_dtr_vdf(iq-nqo) = ctrl_out((/ 4, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
555 | 'd'//trim(tname(iq))//'_vdf', & |
---|
556 | 'Tendance tracer '//ttext(iiq), "-" , & |
---|
557 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
558 | |
---|
559 | o_dtr_the(iq-nqo) = ctrl_out((/ 5, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
560 | 'd'//trim(tname(iq))//'_the', & |
---|
561 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
562 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
563 | |
---|
564 | o_dtr_con(iq-nqo) = ctrl_out((/ 5, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
565 | 'd'//trim(tname(iq))//'_con', & |
---|
566 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
567 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
568 | |
---|
569 | o_dtr_lessi_impa(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
570 | 'd'//trim(tname(iq))//'_lessi_impa', & |
---|
571 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
572 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
573 | |
---|
574 | o_dtr_lessi_nucl(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
575 | 'd'//trim(tname(iq))//'_lessi_nucl', & |
---|
576 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
577 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
578 | |
---|
579 | o_dtr_insc(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
580 | 'd'//trim(tname(iq))//'_insc', & |
---|
581 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
582 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
583 | |
---|
584 | o_dtr_bcscav(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
585 | 'd'//trim(tname(iq))//'_bcscav', & |
---|
586 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
587 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
588 | |
---|
589 | o_dtr_evapls(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
590 | 'd'//trim(tname(iq))//'_evapls', & |
---|
591 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
592 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
593 | |
---|
594 | o_dtr_ls(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
595 | 'd'//trim(tname(iq))//'_ls', & |
---|
596 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
597 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
598 | |
---|
599 | o_dtr_trsp(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
600 | 'd'//trim(tname(iq))//'_trsp', & |
---|
601 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
602 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
603 | |
---|
604 | o_dtr_sscav(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
605 | 'd'//trim(tname(iq))//'_sscav', & |
---|
606 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
607 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
608 | |
---|
609 | o_dtr_sat(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
610 | 'd'//trim(tname(iq))//'_sat', & |
---|
611 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
612 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
613 | |
---|
614 | o_dtr_uscav(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
615 | 'd'//trim(tname(iq))//'_uscav', & |
---|
616 | 'Tendance tracer '//ttext(iiq), "-", & |
---|
617 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
618 | |
---|
619 | o_dtr_dry(iq-nqo) = ctrl_out((/ 7, 7, 7, 7, 10, 10, 11, 11, 11 /), & |
---|
620 | 'cum'//'d'//trim(tname(iq))//'_dry', & |
---|
621 | 'tracer tendency dry deposition'//ttext(iiq), "-", & |
---|
622 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
623 | |
---|
624 | o_trac_cum(iq-nqo) = ctrl_out((/ 3, 4, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
625 | 'cum'//tname(iiq),& |
---|
626 | 'Cumulated tracer '//ttext(iiq), "-", & |
---|
627 | (/ '', '', '', '', '', '', '', '', '' /)) |
---|
628 | ENDDO |
---|
629 | #endif |
---|
630 | ENDIF |
---|
631 | |
---|
632 | #ifdef ISO |
---|
633 | write(*,*) 'phys_output_mod tmp 538' |
---|
634 | do ixt=1,ntraciso |
---|
635 | if (ixt.le.niso) then |
---|
636 | striso_sortie=striso(ixt) |
---|
637 | write(*,*) 'ixt,striso_sortie=',ixt,striso_sortie |
---|
638 | else |
---|
639 | #ifdef ISOTRAC |
---|
640 | iiso=index_iso(ixt) |
---|
641 | izone=index_zone(ixt) |
---|
642 | striso_sortie=striso(iiso)//strtrac(izone) |
---|
643 | write(*,*) 'ixt,striso_sortie=',ixt,striso_sortie |
---|
644 | #endif |
---|
645 | endif |
---|
646 | |
---|
647 | o_xtprecip(ixt)= ctrl_out((/ 4, 5, 5, 5, 10, 10, 11, 11, 11 /), & |
---|
648 | 'precip'//striso_sortie(1:lnblnk(striso_sortie)),& |
---|
649 | 'Precip Totale liq+sol '//striso_sortie(1:lnblnk(striso_sortie)), "kg/(s*m2)", & |
---|
650 | (/ ('', i=1, 9) /)) |
---|
651 | o_xtplul(ixt)= ctrl_out((/ 4, 5, 5, 5, 10, 10, 11, 11, 11 /), & |
---|
652 | 'plul'//striso_sortie(1:lnblnk(striso_sortie)),& |
---|
653 | 'Large-scale Precip. '//striso_sortie(1:lnblnk(striso_sortie)), "kg/(s*m2)", & |
---|
654 | (/ ('', i=1, 9) /)) |
---|
655 | o_xtpluc(ixt)= ctrl_out((/ 4, 5, 5, 5, 10, 10, 11, 11, 11 /), & |
---|
656 | 'pluc'//striso_sortie(1:lnblnk(striso_sortie)),& |
---|
657 | 'Convective Precip. '//striso_sortie(1:lnblnk(striso_sortie)), "kg/(s*m2)", & |
---|
658 | (/ ('', i=1, 9) /)) |
---|
659 | |
---|
660 | o_xtevap(ixt)= ctrl_out((/ 4, 5, 5, 5, 10, 10, 11, 11, 11 /), & |
---|
661 | 'evap'//striso_sortie(1:lnblnk(striso_sortie)),& |
---|
662 | 'Evaporat '//striso_sortie(1:lnblnk(striso_sortie)), "kg/(s*m2)", & |
---|
663 | (/ ('', i=1, 9) /)) |
---|
664 | o_xtovap(ixt)= ctrl_out((/ 2, 3, 4, 10, 10, 10, 11, 11, 11 /), & |
---|
665 | 'ovap'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
666 | 'Specific humidity '//striso_sortie(1:lnblnk(striso_sortie)), 'kg/kg', & |
---|
667 | (/ ('', i=1, 9) /)) |
---|
668 | |
---|
669 | o_dxtdyn(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
670 | 'dqdyn'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
671 | 'Dynamics dQ '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
672 | (/ ('', i=1, 9) /)) |
---|
673 | o_dxtldyn(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
674 | 'dqldyn'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
675 | 'Dynamics dQL '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
676 | (/ ('', i=1, 9) /)) |
---|
677 | o_dxtcon(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
678 | 'dqcon'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
679 | 'Convection dQ '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
680 | (/ ('', i=1, 9) /)) |
---|
681 | o_dxtvdf(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
682 | 'dqvdf'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
683 | 'Boundary-layer dQ '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
684 | (/ ('', i=1, 9) /)) |
---|
685 | o_dxtajs(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
686 | 'dqajs'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
687 | 'Dry adjust. dQ '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
688 | (/ ('', i=1, 9) /)) |
---|
689 | o_dxteva(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
690 | 'dqeva'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
691 | 'Reevaporation dQ '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
692 | (/ ('', i=1, 9) /)) |
---|
693 | o_dxtlsc(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
694 | 'dqlsc'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
695 | 'Condensation dQ '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
696 | (/ ('', i=1, 9) /)) |
---|
697 | o_dxtch4(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
698 | 'dqch4'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
699 | 'H2O due to CH4 oxidation & photolysis '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
700 | (/ ('', i=1, 9) /)) |
---|
701 | if (iso_HTO.gt.0) then |
---|
702 | o_dxtprod_nucl(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
703 | 'dqprod_nucl'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
704 | 'H2O due to nuclear production '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
705 | (/ ('', i=1, 9) /)) |
---|
706 | o_dxtcosmo(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
707 | 'dqcosmo'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
708 | 'H2O due to cosmogenic production '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
709 | (/ ('', i=1, 9) /)) |
---|
710 | o_dxtdecroiss(ixt) = ctrl_out((/ 4, 10, 10, 10, 10, 10, 11, 11, 11 /), & |
---|
711 | 'dqdecroiss'//striso_sortie(1:lnblnk(striso_sortie)), & |
---|
712 | 'H2O due to radioactive decay '//striso_sortie(1:lnblnk(striso_sortie)), '(kg/kg)/s', & |
---|
713 | (/ ('', i=1, 9) /)) |
---|
714 | endif ! if (iso_HTO.gt.0) then |
---|
715 | enddo !do ixt=1,ntraciso |
---|
716 | #endif |
---|
717 | |
---|
718 | |
---|
719 | ENDDO ! iff |
---|
720 | |
---|
721 | ! Updated write frequencies due to phys_out_filetimesteps. |
---|
722 | ! Write frequencies are now in seconds. |
---|
723 | ecrit_mth = ecrit_files(1) |
---|
724 | ecrit_day = ecrit_files(2) |
---|
725 | ecrit_hf = ecrit_files(3) |
---|
726 | ecrit_ins = ecrit_files(4) |
---|
727 | ecrit_LES = ecrit_files(5) |
---|
728 | ecrit_ins = ecrit_files(6) |
---|
729 | |
---|
730 | if (prt_level >= 10) then |
---|
731 | WRITE(lunout,*)'swaero_diag=',swaero_diag |
---|
732 | WRITE(lunout,*)'phys_output_open: ends here' |
---|
733 | endif |
---|
734 | |
---|
735 | end SUBROUTINE phys_output_open |
---|
736 | |
---|
737 | |
---|
738 | |
---|
739 | SUBROUTINE convers_timesteps(str,dtime,timestep) |
---|
740 | |
---|
741 | use ioipsl |
---|
742 | USE phys_cal_mod |
---|
743 | USE time_phylmdz_mod, ONLY: day_ref, annee_ref |
---|
744 | USE print_control_mod, ONLY: lunout |
---|
745 | |
---|
746 | IMPLICIT NONE |
---|
747 | |
---|
748 | CHARACTER(LEN=20) :: str |
---|
749 | CHARACTER(LEN=10) :: type |
---|
750 | INTEGER :: ipos,il |
---|
751 | real :: ttt,xxx,timestep,dayseconde,dtime |
---|
752 | parameter (dayseconde=86400.) |
---|
753 | |
---|
754 | ipos=scan(str,'0123456789.',.TRUE.) |
---|
755 | ! |
---|
756 | il=len_trim(str) |
---|
757 | WRITE(lunout,*) "ipos = ", ipos |
---|
758 | WRITE(lunout,*) "il = ", il |
---|
759 | if (ipos == 0) call abort_physic("convers_timesteps", "bad str", 1) |
---|
760 | read(str(1:ipos),*) ttt |
---|
761 | WRITE(lunout,*)ttt |
---|
762 | type=str(ipos+1:il) |
---|
763 | |
---|
764 | |
---|
765 | IF ( il == ipos ) then |
---|
766 | type='day' |
---|
767 | endif |
---|
768 | |
---|
769 | IF ( type == 'day'.or.type == 'days'.or.type == 'jours'.or.type == 'jour' ) timestep = ttt * dayseconde |
---|
770 | IF ( type == 'mounths'.or.type == 'mth'.or.type == 'mois' ) then |
---|
771 | WRITE(lunout,*)'annee_ref,day_ref mon_len',annee_ref,day_ref,mth_len |
---|
772 | timestep = ttt * dayseconde * mth_len |
---|
773 | endif |
---|
774 | IF ( type == 'hours'.or.type == 'hr'.or.type == 'heurs') timestep = ttt * dayseconde / 24. |
---|
775 | IF ( type == 'mn'.or.type == 'minutes' ) timestep = ttt * 60. |
---|
776 | IF ( type == 's'.or.type == 'sec'.or.type == 'secondes' ) timestep = ttt |
---|
777 | IF ( type == 'TS' ) timestep = ttt * dtime |
---|
778 | |
---|
779 | WRITE(lunout,*)'type = ',type |
---|
780 | WRITE(lunout,*)'nb j/h/m = ',ttt |
---|
781 | WRITE(lunout,*)'timestep(s)=',timestep |
---|
782 | |
---|
783 | END SUBROUTINE convers_timesteps |
---|
784 | |
---|
785 | END MODULE phys_output_mod |
---|
786 | |
---|
787 | |
---|