1 | subroutine interpolateH2O_self_foreign(wn,temp,presS,presF,abcoef,firstcall,ind) |
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2 | |
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3 | !================================================================== |
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4 | ! |
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5 | ! Purpose |
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6 | ! ------- |
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7 | ! Calculates the H2O continuum self and foreign opacity |
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8 | ! using lookup tables from MT_CKD version 3.3 |
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9 | ! |
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10 | ! Authors |
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11 | ! ------- |
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12 | ! M. Turbet (2020) |
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13 | ! Adapted from the file of R. Wordsworth |
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14 | ! |
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15 | !================================================================== |
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16 | |
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17 | use datafile_mod, only: datadir |
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18 | implicit none |
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19 | |
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20 | ! input |
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21 | double precision wn ! wavenumber (cm^-1) |
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22 | double precision temp ! temperature (Kelvin) |
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23 | double precision presS ! self-pressure (Pascals) |
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24 | double precision presF ! foreign (air) pressure (Pascals) |
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25 | |
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26 | ! output |
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27 | double precision abcoef ! absorption coefficient (m^-1) |
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28 | |
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29 | integer nS,nT, iT |
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30 | parameter(nS=2001) ! number of wavenumbers |
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31 | parameter(nT=39) ! number of temperatures |
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32 | |
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33 | double precision kB |
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34 | parameter(kB=1.3806488e-23) |
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35 | |
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36 | double precision amagatS, amagatF, abcoefS, abcoefF, Nmolec |
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37 | double precision wn_arr(nS) |
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38 | double precision temp_arr(nT) |
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39 | double precision abs_arrS(nS,nT) |
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40 | double precision abs_arrF(nS,nT) |
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41 | double precision data_tmp(nT) |
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42 | |
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43 | character*43 dummy_var1 |
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44 | character*46 dummy_var2 |
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45 | |
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46 | integer nres |
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47 | |
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48 | double precision Ttemp |
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49 | |
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50 | character(LEN=*), parameter :: fmat1 = "(A43,I6,F6.1)" |
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51 | character(LEN=*), parameter :: fmat2 = "(A46,I6,F6.1)" |
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52 | |
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53 | |
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54 | integer k,ind |
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55 | logical firstcall |
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56 | |
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57 | save wn_arr, temp_arr, abs_arrS, abs_arrF !read by master |
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58 | |
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59 | character*100 dt_file |
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60 | integer strlen,ios |
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61 | |
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62 | amagatS=(273.15/temp)*(presS/101325.0) |
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63 | amagatF=(273.15/temp)*(presF/101325.0) |
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64 | |
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65 | if(firstcall)then ! called by sugas_corrk only |
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66 | print*,'----------------------------------------------------' |
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67 | print*,'Initialising H2O continuum from MT_CKD data...' |
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68 | |
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69 | ! 1.1 Open the ASCII files |
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70 | |
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71 | !$OMP MASTER |
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72 | |
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73 | ! self broadening |
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74 | dt_file=TRIM(datadir)//'/continuum_data/H2O-H2O_continuum_MT_CKD3.3.cia' |
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75 | open(34,file=dt_file,form='formatted',status='old',iostat=ios) |
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76 | if (ios.ne.0) then ! file not found |
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77 | write(*,*) 'Error from interpolateH2O_cont SELF' |
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78 | write(*,*) 'Data file ',trim(dt_file),' not found.' |
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79 | write(*,*) 'Check that your path to datagcm:',trim(datadir) |
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80 | write(*,*) ' is correct. You can change it in callphys.def with:' |
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81 | write(*,*) ' datadir = /absolute/path/to/datagcm' |
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82 | write(*,*) ' Check that there is a H2O-H2O_continuum_MT_CKD3.3.cia' |
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83 | write(*,*)'Continuum file available here:' |
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84 | write(*,*)' https://www.lmd.jussieu.fr/~lmdz/planets/LMDZ.GENERIC/datagcm/continuum_data/' |
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85 | call abort |
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86 | else |
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87 | do iT=1,nT |
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88 | read(34,fmat1) dummy_var1,nres,Ttemp |
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89 | if(nS.ne.nres)then |
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90 | print*,'Resolution given in file: ',trim(dt_file) |
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91 | print*,'is ',nres,', which does not match nS.' |
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92 | print*,'Adjust nS value in interpolateH2O_MTCKD...F90' |
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93 | stop |
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94 | endif |
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95 | temp_arr(iT)=Ttemp |
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96 | !write(*,*) 'H2O_H2O' |
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97 | do k=1,nS |
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98 | read(34,*) wn_arr(k),abs_arrS(k,it) |
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99 | !write(*,*) nres,temp_arr(iT),wn_arr(k),abs_arrS(k,it) |
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100 | end do |
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101 | end do |
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102 | endif |
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103 | close(34) |
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104 | |
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105 | ! foreign broadening |
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106 | dt_file=TRIM(datadir)//'/continuum_data/H2O-AIR_continuum_MT_CKD3.3.cia' |
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107 | open(35,file=dt_file,form='formatted',status='old',iostat=ios) |
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108 | if (ios.ne.0) then ! file not found |
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109 | write(*,*) 'Error from interpolateH2O_cont FOREIGN' |
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110 | write(*,*) 'Data file ',trim(dt_file),' not found.' |
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111 | write(*,*)'Check that your path to datagcm:',trim(datadir) |
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112 | write(*,*)' is correct. You can change it in callphys.def with:' |
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113 | write(*,*)' datadir = /absolute/path/to/datagcm' |
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114 | write(*,*)' Check that there is a H2O-AIR_continuum_MT_CKD3.3.cia' |
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115 | write(*,*)'Continuum file available here:' |
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116 | write(*,*)' https://www.lmd.jussieu.fr/~lmdz/planets/LMDZ.GENERIC/datagcm/continuum_data/' |
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117 | call abort |
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118 | else |
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119 | do iT=1,nT |
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120 | read(35,fmat2) dummy_var2,nres,Ttemp |
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121 | if(nS.ne.nres)then |
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122 | print*,'Resolution given in file: ',trim(dt_file) |
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123 | print*,'is ',nres,', which does not match nS.' |
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124 | print*,'Adjust nS value in interpolateH2O_MTCKD...F90' |
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125 | stop |
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126 | endif |
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127 | temp_arr(iT)=Ttemp |
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128 | !write(*,*) 'H2O_AIR' |
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129 | do k=1,nS |
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130 | read(35,*) wn_arr(k),abs_arrF(k,it) |
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131 | !write(*,*) nres,temp_arr(iT),wn_arr(k),abs_arrF(k,it) |
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132 | end do |
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133 | end do |
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134 | endif |
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135 | close(35) |
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136 | |
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137 | print*,'interpolateH2O_MTCKDcont: At wavenumber ',wn,' cm^-1' |
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138 | print*,' temperature ',temp,' K' |
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139 | print*,' H2O pressure ',presS,' Pa' |
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140 | print*,' air pressure ',presF,' Pa' |
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141 | !$OMP END MASTER |
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142 | !$OMP BARRIER |
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143 | |
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144 | endif |
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145 | |
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146 | call bilinearbig(nS,nT,wn_arr,temp_arr,abs_arrS,wn,temp,abcoefS,ind) |
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147 | !print*,'MTCKD - self absorption is ',abcoefS,' cm^2 molecule^-1' |
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148 | |
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149 | call bilinearbig(nS,nT,wn_arr,temp_arr,abs_arrF,wn,temp,abcoefF,ind) |
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150 | !print*,'MTCKD - foreign absorption is ',abcoefF,' cm^2 molecule^-1' |
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151 | |
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152 | ! abcoefS and abcoefF are in cm-1 amagat-2 |
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153 | ! First we multiply by amagat^2 |
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154 | abcoef = abcoefS*amagatS + abcoefF*amagatF |
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155 | abcoef = abcoef*amagatS |
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156 | ! Then we convert cm-1 in m-1 |
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157 | abcoef = 100.*abcoef |
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158 | |
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159 | !print*,'MTCKD_v3.3 : So the total absorption is ',abcoef,' m^-1' |
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160 | !print*,'for PH2O/PN2/TEMP/wn=',presS,presF,temp,wn |
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161 | |
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162 | return |
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163 | end subroutine interpolateH2O_self_foreign |
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164 | |
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165 | |
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