1 | MODULE RADIATION_SETUP |
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2 | |
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3 | ! RADIATION_SETUP - Setting up modular radiation scheme |
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4 | ! |
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5 | ! AUTHOR |
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6 | ! ------ |
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7 | ! Robin Hogan, ECMWF |
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8 | ! Original: 2015-09-16 |
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9 | ! |
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10 | ! MODIFICATIONS |
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11 | ! ------------- |
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12 | ! Abderrahmane Idelkadi LMD, juillet 2023 |
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13 | ! |
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14 | !----------------------------------------------------------------------- |
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15 | |
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16 | USE PARKIND1, ONLY : JPRB |
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17 | USE radiation_config, ONLY : config_type, & |
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18 | & ISolverMcICA, ISolverSpartacus, & |
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19 | & ILiquidModelSlingo, ILiquidModelSOCRATES, & |
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20 | & IIceModelFu, IIceModelBaran, IGasModelECCKD, & |
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21 | & IGasModelIFSRRTMG, IOverlapExponentialRandom |
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22 | |
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23 | USE radiation_interface, ONLY : setup_radiation |
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24 | USE setup_config_from_lmdz, ONLY : driver_config_type |
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25 | |
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26 | IMPLICIT NONE |
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27 | |
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28 | |
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29 | ! Ultraviolet weightings |
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30 | INTEGER :: NWEIGHT_UV |
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31 | INTEGER :: IBAND_UV(100) |
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32 | REAL(KIND=JPRB) :: WEIGHT_UV(100) |
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33 | ! Photosynthetically active radiation weightings |
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34 | INTEGER :: NWEIGHT_PAR |
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35 | INTEGER :: IBAND_PAR(100) |
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36 | REAL(KIND=JPRB) :: WEIGHT_PAR(100) |
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37 | |
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38 | ! Background aerosol is specified in an ugly way: using the old |
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39 | ! Tegen fields that are in terms of optical depth, and converted to |
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40 | ! mass mixing ratio via the relevant mass-extinction coefficient |
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41 | INTEGER, PARAMETER :: ITYPE_TROP_BG_AER = 8 ! hydrophobic organic |
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42 | INTEGER, PARAMETER :: ITYPE_STRAT_BG_AER=12 ! non-absorbing sulphate |
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43 | REAL(KIND=JPRB) :: TROP_BG_AER_MASS_EXT |
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44 | REAL(KIND=JPRB) :: STRAT_BG_AER_MASS_EXT |
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45 | |
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46 | CONTAINS |
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47 | |
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48 | ! This routine copies information between the LMDZ radiation |
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49 | ! configuration (stored in global variables) and the radiation |
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50 | ! configuration of the modular radiation scheme (stored in |
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51 | ! rad_config). The optional input logical LOUTPUT controls whether |
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52 | ! to print lots of information during the setup stage (default is |
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53 | ! no). |
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54 | ! AI At the end of the routine, the parameters are read in namelist |
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55 | ! |
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56 | SUBROUTINE SETUP_RADIATION_SCHEME(LOUTPUT,file_name,rad_config,driver_config) |
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57 | |
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58 | ! USE radiation_config, ONLY : config_type, & |
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59 | ! & ISolverMcICA, ISolverSpartacus, & |
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60 | ! & ILiquidModelSlingo, ILiquidModelSOCRATES, & |
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61 | ! & IIceModelFu, IIceModelBaran, & |
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62 | ! & IOverlapExponentialRandom |
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63 | USE mod_phys_lmdz_para |
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64 | |
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65 | USE YOMHOOK, ONLY : LHOOK, DR_HOOK |
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66 | USE YOMLUN, ONLY : NULOUT, NULERR |
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67 | USE YOESRTWN, ONLY : NMPSRTM |
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68 | |
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69 | ! USE radiation_interface, ONLY : setup_radiation |
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70 | ! USE setup_config_from_lmdz, ONLY : driver_config_type |
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71 | |
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72 | ! Whether or not to provide information on the radiation scheme |
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73 | ! configuration |
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74 | LOGICAL, INTENT(IN), OPTIONAL :: LOUTPUT |
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75 | |
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76 | REAL(KIND=JPRB) :: ZHOOK_HANDLE |
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77 | |
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78 | character(len=512) :: file_name |
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79 | |
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80 | logical :: lprint_setp=.TRUE. |
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81 | |
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82 | ! Store configuration information for the radiation scheme in a |
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83 | ! global variable |
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84 | type(config_type) :: rad_config |
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85 | type(driver_config_type) :: driver_config |
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86 | |
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87 | IF (LHOOK) CALL DR_HOOK('RADIATION_SETUP:SETUP_RADIATION_SCHEME',0,ZHOOK_HANDLE) |
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88 | |
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89 | ! *** GENERAL SETUP *** |
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90 | |
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91 | ! Configure verbosity of setup of radiation scheme |
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92 | |
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93 | print*,'********** Dans radiation_setup *****************' |
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94 | |
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95 | ! AI ATTENTION (parameters read in namelist file) |
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96 | ! file_name="namelist_ecrad" |
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97 | call rad_config%read(file_name=file_name) |
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98 | call driver_config%read(file_name) |
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99 | |
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100 | ! Use configuration data to set-up radiation scheme, including |
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101 | ! reading scattering datafiles |
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102 | CALL setup_radiation(rad_config) |
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103 | |
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104 | ! Populate the mapping between the 14 RRTM shortwave bands and the |
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105 | ! 6 albedo inputs. The mapping according to the stated wavelength |
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106 | ! ranges of the 6-band model does not match the hard-wired mapping |
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107 | ! in NMPSRTM, but only the hard-wired values produce sensible |
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108 | ! results... |
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109 | ! Note that NMPSRTM(:)=(/ 6, 6, 5, 5, 5, 5, 5, 4, 4, 3, 2, 2, 1, 6 /) |
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110 | ! AI (6 albedo SW bands) |
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111 | call rad_config%define_sw_albedo_intervals(6, & |
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112 | & [0.25e-6_jprb, 0.44e-6_jprb, 0.69e-6_jprb, & |
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113 | & 1.19e-6_jprb, 2.38e-6_jprb], [1,2,3,4,5,6]) |
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114 | ! Likewise between the 16 RRTM longwave bands and the 2 emissivity |
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115 | ! inputs (info taken from rrtm_ecrt_140gp_mcica.F90) representing |
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116 | ! outside and inside the window region of the spectrum |
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117 | ! rad_config%i_emiss_from_band_lw = (/ 1,1,1,1,1,2,2,2,1,1,1,1,1,1,1,1 /) |
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118 | ! AI ATTENTION ????? |
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119 | !! call rad_config%define_lw_emiss_intervals(3, & |
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120 | !! & (/ 8.0e-6_jprb,13.0e-6_jprb /), (/ 1,2,1 /)) |
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121 | |
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122 | ! ! Get spectral weightings for UV and PAR |
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123 | call rad_config%get_sw_weights(0.2e-6_jprb, 0.4415e-6_jprb, & |
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124 | & NWEIGHT_UV, IBAND_UV, WEIGHT_UV, 'ultraviolet') |
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125 | call rad_config%get_sw_weights(0.4e-6_jprb, 0.7e-6_jprb, & |
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126 | & NWEIGHT_PAR, IBAND_PAR, WEIGHT_PAR, & |
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127 | & 'photosynthetically active radiation, PAR') |
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128 | |
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129 | rad_config%i_aerosol_type_map(1:13) = (/ & |
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130 | & -1, & |
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131 | & -2, & |
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132 | & -3, & |
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133 | & -4, & |
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134 | & -5, & |
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135 | & -6, & |
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136 | & -7, & |
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137 | & 1, & |
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138 | & 2, & |
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139 | & 3, & |
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140 | & -8, & |
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141 | & -9, & |
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142 | & 4 /) |
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143 | ! rad_config%aerosol_optics_override_file_name = 'aerosol_optics_lmdz.nc' |
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144 | |
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145 | |
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146 | IF (LHOOK) CALL DR_HOOK('RADIATION_SETUP:SETUP_RADIATION_SCHEME',1,ZHOOK_HANDLE) |
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147 | |
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148 | END SUBROUTINE SETUP_RADIATION_SCHEME |
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149 | |
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150 | END MODULE RADIATION_SETUP |
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