1 | ! |
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2 | ! $Id: aeropt_5wv_rrtm.F90 2550 2016-06-08 20:19:36Z musat $ |
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3 | ! |
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4 | |
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5 | SUBROUTINE AEROPT_5WV_RRTM(& |
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6 | pdel, m_allaer, delt, & |
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7 | RHcl, ai, flag_aerosol, & |
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8 | pplay, t_seri, & |
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9 | tausum, tau ) |
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10 | |
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11 | USE DIMPHY |
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12 | USE aero_mod |
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13 | USE phys_local_var_mod, only: od550aer,od865aer,ec550aer,od550lt1aer |
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14 | |
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15 | ! |
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16 | ! Yves Balkanski le 12 avril 2006 |
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17 | ! Celine Deandreis |
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18 | ! Anne Cozic Avril 2009 |
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19 | ! a partir d'une sous-routine de Johannes Quaas pour les sulfates |
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20 | ! Olivier Boucher mars 2014 pour adaptation RRTM |
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21 | ! |
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22 | ! Refractive indices for seasalt come from Shettle and Fenn (1979) |
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23 | ! |
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24 | ! Refractive indices from water come from Hale and Querry (1973) |
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25 | ! |
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26 | ! Refractive indices from Ammonium Sulfate Toon and Pollack (1976) |
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27 | ! |
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28 | ! Refractive indices for Dust, internal mixture of minerals coated with 1.5% hematite |
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29 | ! by Volume (Balkanski et al., 2006) |
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30 | ! |
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31 | ! Refractive indices for POM: Kinne (pers. Communication |
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32 | ! |
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33 | ! Refractive index for BC from Shettle and Fenn (1979) |
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34 | ! |
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35 | ! Shettle, E. P., & Fenn, R. W. (1979), Models for the aerosols of the lower atmosphere and |
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36 | ! the effects of humidity variations on their optical properties, U.S. Air Force Geophysics |
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37 | ! Laboratory Rept. AFGL-TR-79-0214, Hanscomb Air Force Base, MA. |
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38 | ! |
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39 | ! Hale, G. M. and M. R. Querry, Optical constants of water in the 200-nm to 200-m |
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40 | ! wavelength region, Appl. Opt., 12, 555-563, 1973. |
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41 | ! |
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42 | ! Toon, O. B. and J. B. Pollack, The optical constants of several atmospheric aerosol species: |
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43 | ! Ammonium sulfate, aluminum oxide, and sodium chloride, J. Geohys. Res., 81, 5733-5748, |
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44 | ! 1976. |
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45 | ! |
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46 | ! Balkanski, Y., M. Schulz, T. Claquin And O. Boucher, Reevaluation of mineral aerosol |
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47 | ! radiative forcings suggests a better agreement with satellite and AERONET data, Atmospheric |
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48 | ! Chemistry and Physics Discussions., 6, pp 8383-8419, 2006. |
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49 | ! |
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50 | IMPLICIT NONE |
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51 | INCLUDE "YOMCST.h" |
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52 | ! |
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53 | ! Input arguments: |
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54 | ! |
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55 | REAL, DIMENSION(klon,klev), INTENT(in) :: pdel |
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56 | REAL, INTENT(in) :: delt |
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57 | REAL, DIMENSION(klon,klev,naero_tot), INTENT(in) :: m_allaer |
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58 | REAL, DIMENSION(klon,klev), INTENT(in) :: RHcl ! humidite relative ciel clair |
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59 | INTEGER,INTENT(in) :: flag_aerosol |
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60 | REAL, DIMENSION(klon,klev), INTENT(in) :: pplay |
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61 | REAL, DIMENSION(klon,klev), INTENT(in) :: t_seri |
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62 | ! |
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63 | ! Output arguments: |
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64 | ! |
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65 | REAL, DIMENSION(klon), INTENT(out) :: ai ! POLDER aerosol index |
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66 | REAL, DIMENSION(klon,nwave,naero_tot), INTENT(out) :: tausum |
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67 | REAL, DIMENSION(klon,klev,nwave,naero_tot), INTENT(out) :: tau |
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68 | |
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69 | ! |
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70 | ! Local |
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71 | ! |
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72 | INTEGER, PARAMETER :: las = nwave_sw |
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73 | LOGICAL :: soluble |
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74 | |
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75 | INTEGER :: i, k, m, aerindex |
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76 | INTEGER :: spsol, spinsol, la |
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77 | INTEGER :: RH_num(klon,klev) |
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78 | INTEGER, PARAMETER :: la443 = 1 |
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79 | INTEGER, PARAMETER :: la550 = 2 |
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80 | INTEGER, PARAMETER :: la670 = 3 |
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81 | INTEGER, PARAMETER :: la765 = 4 |
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82 | INTEGER, PARAMETER :: la865 = 5 |
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83 | INTEGER, PARAMETER :: nbre_RH=12 |
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84 | INTEGER, PARAMETER :: naero_soluble=7 ! 1- BC soluble; 2- POM soluble; 3- SO4 acc. |
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85 | ! 4- SO4 coarse; 5 seasalt super-C; 6 seasalt coarse; 7 seasalt acc. |
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86 | INTEGER, PARAMETER :: naero_insoluble=3 ! 1- Dust; 2- BC insoluble; 3- POM insoluble |
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87 | |
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88 | REAL :: zrho |
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89 | |
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90 | REAL, PARAMETER :: RH_tab(nbre_RH)=(/0.,10.,20.,30.,40.,50.,60.,70.,80.,85.,90.,95./) |
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91 | REAL, PARAMETER :: RH_MAX=95. |
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92 | REAL :: delta(klon,klev), rh(klon,klev) |
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93 | REAL :: tau_ae5wv_int ! Intermediate computation of epaisseur optique aerosol |
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94 | REAL :: od670aer(klon) ! epaisseur optique aerosol extinction 670 nm |
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95 | REAL :: fac |
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96 | REAL :: zdp1(klon,klev) |
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97 | INTEGER, ALLOCATABLE, DIMENSION(:) :: aerosol_name |
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98 | INTEGER :: nb_aer, itau |
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99 | LOGICAL :: ok_itau |
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100 | |
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101 | REAL :: dh(KLON,KLEV) |
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102 | |
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103 | ! Soluble components 1- BC soluble; 2- POM soluble; 3- SO4 acc.; 4- SO4 coarse; 5 seasalt super-coarse; 6 seasalt coarse; 7 seasalt acc. |
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104 | REAL :: alpha_aers_5wv(nbre_RH,las,naero_soluble) ! Ext. coeff. ** m2/g |
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105 | ! Insoluble components 1- Dust: 2- BC; 3- POM |
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106 | REAL :: alpha_aeri_5wv(las,naero_insoluble) ! Ext. coeff. ** m2/g |
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107 | |
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108 | REAL, DIMENSION(klon,klev,naero_tot) :: mass_temp |
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109 | |
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110 | ! |
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111 | ! Proprietes optiques |
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112 | ! |
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113 | REAL :: fact_RH(nbre_RH) |
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114 | LOGICAL :: used_tau(naero_tot) |
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115 | INTEGER :: n |
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116 | |
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117 | ! From here on we look at the optical parameters at 5 wavelengths: |
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118 | ! 443nm, 550, 670, 765 and 865 nm |
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119 | ! le 12 AVRIL 2006 |
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120 | ! |
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121 | DATA alpha_aers_5wv/ & |
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122 | ! bc soluble |
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123 | 7.930,7.930,7.930,7.930,7.930,7.930, & |
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124 | 7.930,7.930,10.893,12.618,14.550,16.613, & |
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125 | 7.658,7.658,7.658,7.658,7.658,7.658, & |
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126 | 7.658,7.658,10.351,11.879,13.642,15.510, & |
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127 | 7.195,7.195,7.195,7.195,7.195,7.195, & |
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128 | 7.195,7.195,9.551,10.847,12.381,13.994, & |
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129 | 6.736,6.736,6.736,6.736,6.736,6.736, & |
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130 | 6.736,6.736,8.818,9.938,11.283,12.687, & |
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131 | 6.277,6.277,6.277,6.277,6.277,6.277, & |
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132 | 6.277,6.277,8.123,9.094,10.275,11.501, & |
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133 | ! pom soluble |
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134 | 6.676,6.676,6.676,6.676,6.710,6.934, & |
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135 | 7.141,7.569,8.034,8.529,9.456,10.511, & |
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136 | 5.109,5.109,5.109,5.109,5.189,5.535, & |
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137 | 5.960,6.852,8.008,9.712,12.897,19.676, & |
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138 | 3.718,3.718,3.718,3.718,3.779,4.042, & |
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139 | 4.364,5.052,5.956,7.314,9.896,15.688, & |
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140 | 2.849,2.849,2.849,2.849,2.897,3.107, & |
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141 | 3.365,3.916,4.649,5.760,7.900,12.863, & |
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142 | 2.229,2.229,2.229,2.229,2.268,2.437, & |
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143 | 2.645,3.095,3.692,4.608,6.391,10.633, & |
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144 | ! Sulfate (Accumulation) |
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145 | 5.751,6.215,6.690,7.024,7.599,8.195, & |
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146 | 9.156,10.355,12.660,14.823,18.908,24.508, & |
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147 | 4.320,4.675,5.052,5.375,5.787,6.274, & |
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148 | 7.066,8.083,10.088,12.003,15.697,21.133, & |
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149 | 3.079,3.351,3.639,3.886,4.205,4.584, & |
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150 | 5.206,6.019,7.648,9.234,12.391,17.220, & |
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151 | 2.336,2.552,2.781,2.979,3.236,3.540, & |
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152 | 4.046,4.711,6.056,7.388,10.093,14.313, & |
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153 | 1.777,1.949,2.134,2.292,2.503,2.751, & |
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154 | 3.166,3.712,4.828,5.949,8.264,11.922, & |
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155 | ! Sulfate (Coarse) |
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156 | 5.751,6.215,6.690,7.024,7.599,8.195, & |
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157 | 9.156,10.355,12.660,14.823,18.908,24.508, & |
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158 | 4.320,4.675,5.052,5.375,5.787,6.274, & |
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159 | 7.066,8.083,10.088,12.003,15.697,21.133, & |
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160 | 3.079,3.351,3.639,3.886,4.205,4.584, & |
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161 | 5.206,6.019,7.648,9.234,12.391,17.220, & |
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162 | 2.336,2.552,2.781,2.979,3.236,3.540, & |
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163 | 4.046,4.711,6.056,7.388,10.093,14.313, & |
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164 | 1.777,1.949,2.134,2.292,2.503,2.751, & |
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165 | 3.166,3.712,4.828,5.949,8.264,11.922, & |
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166 | ! seasalt seasalt Super Coarse Soluble (SS) |
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167 | 0.218, 0.272, 0.293, 0.316, 0.343, 0.380, & |
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168 | 0.429, 0.501, 0.636, 0.755, 0.967, 1.495, & |
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169 | 0.221, 0.275, 0.297, 0.320, 0.348, 0.383, & |
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170 | 0.432, 0.509, 0.640, 0.759, 0.972, 1.510, & |
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171 | 0.224, 0.279, 0.301, 0.324, 0.352, 0.388, & |
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172 | 0.438, 0.514, 0.647, 0.768, 0.985, 1.514, & |
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173 | 0.227, 0.282, 0.303, 0.327, 0.356, 0.392, & |
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174 | 0.441, 0.518, 0.652, 0.770, 0.987, 1.529, & |
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175 | 0.230, 0.285, 0.306, 0.330, 0.359, 0.396, & |
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176 | 0.446, 0.522, 0.656, 0.777, 0.993, 1.539, & |
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177 | ! seasalt seasalt Coarse Soluble (CS) |
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178 | 0.578, 0.706, 0.756, 0.809, 0.876, 0.964, & |
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179 | 1.081, 1.256, 1.577, 1.858, 2.366, 3.613, & |
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180 | 0.598, 0.725, 0.779, 0.833, 0.898, 0.990, & |
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181 | 1.109, 1.290, 1.609, 1.889, 2.398, 3.682, & |
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182 | 0.619, 0.750, 0.802, 0.857, 0.927, 1.022, & |
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183 | 1.141, 1.328, 1.648, 1.939, 2.455, 3.729, & |
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184 | 0.633, 0.767, 0.820, 0.879, 0.948, 1.044, & |
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185 | 1.167, 1.353, 1.683, 1.969, 2.491, 3.785, & |
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186 | 0.648, 0.785, 0.838, 0.896, 0.967, 1.066, & |
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187 | 1.192, 1.381, 1.714, 2.006, 2.531, 3.836, & |
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188 | ! seasalt seasalt Accumulation Soluble (AS) |
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189 | 4.432, 5.899, 6.505, 7.166, 7.964, 7.962, & |
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190 | 9.232,11.257,14.979,18.337,24.223,37.811, & |
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191 | 3.298, 4.569, 5.110, 5.709, 6.446, 6.268, & |
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192 | 7.396, 9.246,12.787,16.113,22.197,37.136, & |
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193 | 2.340, 3.358, 3.803, 4.303, 4.928, 4.696, & |
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194 | 5.629, 7.198,10.308,13.342,19.120,34.296, & |
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195 | 1.789, 2.626, 2.999, 3.422, 3.955, 3.730, & |
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196 | 4.519, 5.864, 8.593,11.319,16.653,31.331, & |
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197 | 1.359, 2.037, 2.343, 2.693, 3.139, 2.940, & |
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198 | 3.596, 4.729, 7.076, 9.469,14.266,28.043 / |
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199 | |
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200 | DATA alpha_aeri_5wv/ & |
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201 | ! dust insoluble |
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202 | 0.759, 0.770, 0.775, 0.775, 0.772, & |
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203 | !!jb bc insoluble |
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204 | 11.536,10.033, 8.422, 7.234, 6.270, & |
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205 | ! pom insoluble |
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206 | 5.042, 3.101, 1.890, 1.294, 0.934/ |
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207 | ! |
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208 | ! Initialisations |
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209 | ai(:) = 0. |
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210 | tausum(:,:,:) = 0. |
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211 | |
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212 | DO k=1, klev |
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213 | DO i=1, klon |
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214 | zrho=pplay(i,k)/t_seri(i,k)/RD ! kg/m3 |
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215 | dh(i,k)=pdel(i,k)/(RG*zrho) |
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216 | !CDIR UNROLL=naero_spc |
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217 | mass_temp(i,k,:) = m_allaer(i,k,:) / zrho / 1.e+9 |
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218 | zdp1(i,k)=pdel(i,k)/(RG*delt) ! air mass auxiliary variable --> zdp1 [kg/(m^2 *s)] |
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219 | ENDDO |
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220 | ENDDO |
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221 | |
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222 | IF (flag_aerosol .EQ. 1) THEN |
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223 | nb_aer = 2 |
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224 | ALLOCATE (aerosol_name(nb_aer)) |
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225 | aerosol_name(1) = id_ASSO4M_phy |
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226 | aerosol_name(2) = id_CSSO4M_phy |
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227 | ELSEIF (flag_aerosol .EQ. 2) THEN |
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228 | nb_aer = 2 |
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229 | ALLOCATE (aerosol_name(nb_aer)) |
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230 | aerosol_name(1) = id_ASBCM_phy |
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231 | aerosol_name(2) = id_AIBCM_phy |
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232 | ELSEIF (flag_aerosol .EQ. 3) THEN |
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233 | nb_aer = 2 |
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234 | ALLOCATE (aerosol_name(nb_aer)) |
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235 | aerosol_name(1) = id_ASPOMM_phy |
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236 | aerosol_name(2) = id_AIPOMM_phy |
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237 | ELSEIF (flag_aerosol .EQ. 4) THEN |
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238 | nb_aer = 3 |
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239 | ALLOCATE (aerosol_name(nb_aer)) |
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240 | aerosol_name(1) = id_CSSSM_phy |
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241 | aerosol_name(2) = id_SSSSM_phy |
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242 | aerosol_name(3) = id_ASSSM_phy |
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243 | ELSEIF (flag_aerosol .EQ. 5) THEN |
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244 | nb_aer = 1 |
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245 | ALLOCATE (aerosol_name(nb_aer)) |
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246 | aerosol_name(1) = id_CIDUSTM_phy |
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247 | ELSEIF (flag_aerosol .EQ. 6) THEN |
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248 | nb_aer = 10 |
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249 | ALLOCATE (aerosol_name(nb_aer)) |
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250 | aerosol_name(1) = id_ASSO4M_phy |
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251 | aerosol_name(2) = id_ASBCM_phy |
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252 | aerosol_name(3) = id_AIBCM_phy |
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253 | aerosol_name(4) = id_ASPOMM_phy |
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254 | aerosol_name(5) = id_AIPOMM_phy |
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255 | aerosol_name(6) = id_CSSSM_phy |
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256 | aerosol_name(7) = id_SSSSM_phy |
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257 | aerosol_name(8) = id_ASSSM_phy |
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258 | aerosol_name(9) = id_CIDUSTM_phy |
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259 | aerosol_name(10) = id_CSSO4M_phy |
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260 | ENDIF |
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261 | |
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262 | ! |
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263 | ! Loop over modes, use of precalculated nmd and corresponding sigma |
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264 | ! loop over wavelengths |
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265 | ! for each mass species in mode |
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266 | ! interpolate from Sext to retrieve Sext_at_gridpoint_per_species |
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267 | ! compute optical_thickness_at_gridpoint_per_species |
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268 | ! |
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269 | ! Calculations that need to be done since we are not in the subroutines INCA |
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270 | ! |
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271 | |
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272 | !CDIR ON_ADB(RH_tab) |
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273 | !CDIR ON_ADB(fact_RH) |
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274 | !CDIR NOVECTOR |
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275 | DO n=1,nbre_RH-1 |
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276 | fact_RH(n)=1./(RH_tab(n+1)-RH_tab(n)) |
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277 | ENDDO |
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278 | |
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279 | DO k=1, KLEV |
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280 | !CDIR ON_ADB(RH_tab) |
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281 | !CDIR ON_ADB(fact_RH) |
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282 | DO i=1, KLON |
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283 | rh(i,k)=MIN(RHcl(i,k)*100.,RH_MAX) |
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284 | RH_num(i,k) = INT( rh(i,k)/10. + 1.) |
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285 | IF (rh(i,k).GT.85.) RH_num(i,k)=10 |
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286 | IF (rh(i,k).GT.90.) RH_num(i,k)=11 |
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287 | delta(i,k)=(rh(i,k)-RH_tab(RH_num(i,k)))*fact_RH(RH_num(i,k)) |
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288 | ENDDO |
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289 | ENDDO |
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290 | |
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291 | !CDIR SHORTLOOP |
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292 | used_tau(:)=.FALSE. |
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293 | |
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294 | DO m=1,nb_aer ! tau is only computed for each mass |
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295 | fac=1.0 |
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296 | IF (aerosol_name(m).EQ.id_ASBCM_phy) THEN |
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297 | soluble=.TRUE. |
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298 | spsol=1 |
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299 | ELSEIF (aerosol_name(m).EQ.id_ASPOMM_phy) THEN |
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300 | soluble=.TRUE. |
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301 | spsol=2 |
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302 | ELSEIF (aerosol_name(m).EQ.id_ASSO4M_phy) THEN |
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303 | soluble=.TRUE. |
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304 | spsol=3 |
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305 | fac=1.375 ! (NH4)2-SO4/SO4 132/96 mass conversion factor for OD |
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306 | ELSEIF (aerosol_name(m).EQ.id_CSSO4M_phy) THEN |
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307 | soluble=.TRUE. |
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308 | spsol=4 |
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309 | fac=1.375 ! (NH4)2-SO4/SO4 132/96 mass conversion factor for OD |
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310 | ELSEIF (aerosol_name(m).EQ.id_SSSSM_phy) THEN |
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311 | soluble=.TRUE. |
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312 | spsol=5 |
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313 | ELSEIF (aerosol_name(m).EQ.id_CSSSM_phy) THEN |
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314 | soluble=.TRUE. |
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315 | spsol=6 |
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316 | ELSEIF (aerosol_name(m).EQ.id_ASSSM_phy) THEN |
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317 | soluble=.TRUE. |
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318 | spsol=7 |
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319 | ELSEIF (aerosol_name(m).EQ.id_CIDUSTM_phy) THEN |
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320 | soluble=.FALSE. |
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321 | spinsol=1 |
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322 | ELSEIF (aerosol_name(m).EQ.id_AIBCM_phy) THEN |
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323 | soluble=.FALSE. |
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324 | spinsol=2 |
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325 | ELSEIF (aerosol_name(m).EQ.id_AIPOMM_phy) THEN |
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326 | soluble=.FALSE. |
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327 | spinsol=3 |
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328 | ELSE |
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329 | CYCLE |
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330 | ENDIF |
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331 | |
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332 | IF (soluble) then |
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333 | used_tau(spsol)=.TRUE. |
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334 | ELSE |
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335 | used_tau(naero_soluble+spinsol)=.TRUE. |
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336 | ENDIF |
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337 | |
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338 | aerindex=aerosol_name(m) |
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339 | |
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340 | DO la=1,las |
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341 | |
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342 | IF (soluble) THEN ! For soluble aerosol |
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343 | |
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344 | DO k=1, KLEV |
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345 | DO i=1, KLON |
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346 | tau_ae5wv_int = alpha_aers_5wv(RH_num(i,k),la,spsol)+DELTA(i,k)* & |
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347 | (alpha_aers_5wv(RH_num(i,k)+1,la,spsol) - & |
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348 | alpha_aers_5wv(RH_num(i,k),la,spsol)) |
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349 | tau(i,k,la,aerindex) = mass_temp(i,k,aerindex)*1000.*zdp1(i,k)* & |
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350 | tau_ae5wv_int*delt*fac |
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351 | tausum(i,la,aerindex)=tausum(i,la,aerindex)+tau(i,k,la,aerindex) |
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352 | ENDDO |
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353 | ENDDO |
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354 | |
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355 | ELSE ! For insoluble aerosol |
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356 | |
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357 | DO k=1, KLEV |
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358 | DO i=1, KLON |
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359 | tau_ae5wv_int = alpha_aeri_5wv(la,spinsol) |
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360 | tau(i,k,la,aerindex) = mass_temp(i,k,aerindex)*1000.*zdp1(i,k)* & |
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361 | tau_ae5wv_int*delt*fac |
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362 | tausum(i,la,aerindex)= tausum(i,la,aerindex)+tau(i,k,la,aerindex) |
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363 | ENDDO |
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364 | ENDDO |
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365 | |
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366 | ENDIF |
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367 | |
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368 | ENDDO ! Boucle sur les longueurs d'onde |
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369 | ENDDO ! Boucle sur les masses de traceurs |
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370 | |
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371 | DO m=1,naero_tot |
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372 | IF (.NOT.used_tau(m)) tau(:,:,:,m)=0. |
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373 | ENDDO |
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374 | |
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375 | DO i=1, klon |
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376 | od550aer(i)=0. |
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377 | DO m=1,naero_tot |
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378 | od550aer(i)=od550aer(i)+tausum(i,la550,m) |
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379 | END DO |
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380 | END DO |
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381 | |
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382 | DO i=1, klon |
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383 | od670aer(i)=0. |
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384 | DO m=1,naero_tot |
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385 | od670aer(i)=od670aer(i)+tausum(i,la670,m) |
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386 | END DO |
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387 | END DO |
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388 | |
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389 | DO i=1, klon |
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390 | od865aer(i)=0. |
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391 | DO m=1,naero_tot |
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392 | od865aer(i)=od865aer(i)+tausum(i,la865,m) |
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393 | END DO |
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394 | END DO |
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395 | |
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396 | DO i=1, klon |
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397 | DO k=1, KLEV |
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398 | ec550aer(i,k)=0. |
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399 | DO m=1,naero_tot |
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400 | ec550aer(i,k)=ec550aer(i,k)+tau(i,k,la550,m)/dh(i,k) |
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401 | END DO |
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402 | END DO |
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403 | END DO |
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404 | |
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405 | DO i=1, klon |
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406 | ai(i)=-LOG(MAX(od670aer(i),1.e-8)/MAX(od865aer(i),1.e-8))/LOG(670./865.) |
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407 | ENDDO |
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408 | |
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409 | od550lt1aer(:)=tausum(:,la550,id_ASSO4M_phy)+tausum(:,la550,id_ASBCM_phy) +tausum(:,la550,id_AIBCM_phy)+ & |
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410 | tausum(:,la550,id_ASPOMM_phy)+tausum(:,la550,id_AIPOMM_phy)+tausum(:,la550,id_ASSSM_phy)+ & |
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411 | 0.03*tausum(:,la550,id_CSSSM_phy)+0.4*tausum(:,la550,id_CIDUSTM_phy) |
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412 | |
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413 | DEALLOCATE(aerosol_name) |
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414 | |
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415 | END SUBROUTINE AEROPT_5WV_RRTM |
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