1 | ! |
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2 | ! $Id: splaeropt_6bands_rrtm.F90 2644 2016-10-02 16:55:08Z oboucher $ |
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3 | ! |
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4 | SUBROUTINE SPLAEROPT_6BANDS_RRTM ( & |
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5 | zdm, tr_seri, RHcl, & |
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6 | tau_allaer, piz_allaer, cg_allaer ) |
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7 | |
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8 | USE clesphys_mod_h |
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9 | USE dimphy |
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10 | USE aero_mod |
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11 | USE infotrac_phy, ONLY: nqtot, nbtr, tracers |
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12 | USE phys_local_var_mod, ONLY: abs550aer |
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13 | |
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14 | ! Olivier Boucher Jan 2017 |
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15 | ! based on Mie routines on ciclad CMIP6 |
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16 | ! |
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17 | IMPLICIT NONE |
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18 | |
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19 | ! |
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20 | ! Input arguments: |
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21 | ! |
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22 | REAL, DIMENSION(klon,klev), INTENT(IN) :: zdm !--hauteur des couches en kg/m2 |
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23 | REAL, DIMENSION(klon,klev), INTENT(IN) :: RHcl ! humidite relative ciel clair |
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24 | REAL, DIMENSION(klon,klev,nbtr),INTENT(IN) :: tr_seri |
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25 | ! |
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26 | ! Output arguments: |
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27 | ! 2= total aerosols |
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28 | ! 1= natural aerosols |
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29 | ! |
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30 | REAL, DIMENSION(klon,klev,2,nbands_sw_rrtm), INTENT(OUT) :: tau_allaer ! epaisseur optique aerosol |
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31 | REAL, DIMENSION(klon,klev,2,nbands_sw_rrtm), INTENT(OUT) :: piz_allaer ! single scattering albedo aerosol |
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32 | REAL, DIMENSION(klon,klev,2,nbands_sw_rrtm), INTENT(OUT) :: cg_allaer ! asymmetry parameter aerosol |
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33 | ! |
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34 | ! Local |
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35 | ! |
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36 | LOGICAL :: soluble |
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37 | INTEGER :: i, k, irh, iq, itr, inu |
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38 | INTEGER :: aerindex, spsol, spinsol |
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39 | INTEGER :: RH_num(klon,klev) |
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40 | |
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41 | INTEGER, PARAMETER :: naero_soluble=2 ! 1- accumulation soluble; 2- coarse soluble |
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42 | INTEGER, PARAMETER :: naero_insoluble=2 ! 1- coarse dust; 2- supercoarse dust |
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43 | INTEGER, PARAMETER :: naero=naero_soluble+naero_insoluble |
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44 | |
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45 | INTEGER, PARAMETER :: nbre_RH=12 |
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46 | REAL,PARAMETER :: RH_tab(nbre_RH)=(/0.,10.,20.,30.,40.,50.,60.,70.,80.,85.,90.,95./) |
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47 | REAL, PARAMETER :: RH_MAX=95. |
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48 | REAL :: delta(klon,klev), rh(klon,klev) |
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49 | REAL :: tau_ae2b_int ! Intermediate computation of epaisseur optique aerosol |
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50 | REAL :: piz_ae2b_int ! Intermediate computation of Single scattering albedo |
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51 | REAL :: cg_ae2b_int ! Intermediate computation of Assymetry parameter |
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52 | REAL :: fact_RH(nbre_RH), tmp_var |
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53 | ! |
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54 | REAL, DIMENSION(klon,klev,naero_tot,nbands_sw_rrtm) :: tau_ae |
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55 | REAL, DIMENSION(klon,klev,naero_tot,nbands_sw_rrtm) :: piz_ae |
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56 | REAL, DIMENSION(klon,klev,naero_tot,nbands_sw_rrtm) :: cg_ae |
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57 | ! |
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58 | ! Proprietes optiques |
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59 | ! |
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60 | REAL:: alpha_aers_6bands(nbre_RH,nbands_sw_rrtm,naero_soluble) !--unit m2/g aer |
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61 | REAL:: alpha_aeri_6bands(nbands_sw_rrtm,naero_insoluble) !--unit m2/g aer |
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62 | REAL:: cg_aers_6bands(nbre_RH,nbands_sw_rrtm,naero_soluble) !--unitless |
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63 | REAL:: cg_aeri_6bands(nbands_sw_rrtm,naero_insoluble) !--unitless |
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64 | REAL:: piz_aers_6bands(nbre_RH,nbands_sw_rrtm,naero_soluble) !--unitless |
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65 | REAL:: piz_aeri_6bands(nbands_sw_rrtm,naero_insoluble) !--unitless |
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66 | ! |
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67 | REAL, PARAMETER :: tau_min = 1.e-8 |
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68 | CHARACTER*20 modname |
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69 | |
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70 | !*************************************************************************** |
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71 | !--the order of the soluble species has to follow the spsol index below |
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72 | !--the order of the insoluble species has to follow the spinsol index below |
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73 | |
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74 | DATA alpha_aers_6bands/ & |
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75 | ! accumulation (sulfate+2% bc) mode soluble |
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76 | 5.212, 5.212, 5.212, 5.212, 6.973, 7.581, 8.349, 9.400,11.078,12.463,14.857,20.837, & |
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77 | 4.906, 4.906, 4.906, 4.906, 6.568, 7.195, 7.989, 9.088,10.869,12.354,14.951,21.545, & |
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78 | 3.940, 3.940, 3.940, 3.940, 5.291, 5.861, 6.591, 7.620, 9.332,10.791,13.410,20.370, & |
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79 | 2.292, 2.292, 2.292, 2.292, 3.105, 3.493, 3.996, 4.724, 5.978, 7.084, 9.146,15.067, & |
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80 | 0.762, 0.762, 0.762, 0.762, 1.050, 1.201, 1.401, 1.699, 2.232, 2.721, 3.675, 6.678, & |
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81 | 0.090, 0.090, 0.090, 0.090, 0.122, 0.141, 0.166, 0.204, 0.275, 0.344, 0.484, 0.973, & |
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82 | ! coarse seasalt |
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83 | 0.547, 0.657, 0.705, 0.754, 0.817, 0.896, 1.008, 1.169, 1.456, 1.724, 2.199, 3.358, & |
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84 | 0.566, 0.679, 0.727, 0.776, 0.840, 0.920, 1.032, 1.196, 1.492, 1.760, 2.238, 3.416, & |
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85 | 0.596, 0.714, 0.764, 0.816, 0.882, 0.965, 1.081, 1.250, 1.552, 1.828, 2.310, 3.509, & |
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86 | 0.644, 0.771, 0.825, 0.880, 0.951, 1.040, 1.164, 1.345, 1.666, 1.957, 2.462, 3.700, & |
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87 | 0.640, 0.772, 0.829, 0.887, 0.965, 1.061, 1.198, 1.398, 1.758, 2.085, 2.658, 4.031, & |
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88 | 0.452, 0.562, 0.609, 0.659, 0.728, 0.813, 0.938, 1.125, 1.471, 1.797, 2.384, 3.855 / |
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89 | |
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90 | DATA alpha_aeri_6bands/ & |
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91 | ! coarse dust insoluble |
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92 | 0.594, 0.610, 0.619, 0.762, 0.791, 0.495, & |
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93 | ! supercoarse dust insoluble |
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94 | 0.151, 0.152, 0.155, 0.159, 0.168, 0.167 / |
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95 | |
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96 | DATA cg_aers_6bands/ & |
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97 | ! accumulation (sulfate+2% bc) mode soluble |
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98 | 0.692, 0.692, 0.692, 0.692, 0.735, 0.739, 0.744, 0.749, 0.755, 0.759, 0.765, 0.772, & |
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99 | 0.690, 0.690, 0.690, 0.690, 0.736, 0.740, 0.746, 0.752, 0.760, 0.765, 0.771, 0.779, & |
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100 | 0.678, 0.678, 0.678, 0.678, 0.727, 0.733, 0.740, 0.748, 0.759, 0.766, 0.775, 0.787, & |
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101 | 0.641, 0.641, 0.641, 0.641, 0.692, 0.700, 0.710, 0.721, 0.736, 0.746, 0.760, 0.781, & |
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102 | 0.553, 0.553, 0.553, 0.553, 0.603, 0.615, 0.627, 0.643, 0.664, 0.678, 0.699, 0.735, & |
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103 | 0.343, 0.343, 0.343, 0.343, 0.386, 0.399, 0.414, 0.433, 0.460, 0.480, 0.510, 0.569, & |
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104 | ! seasalt coarse Soluble |
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105 | 0.754, 0.770, 0.776, 0.781, 0.784, 0.791, 0.797, 0.805, 0.815, 0.822, 0.828, 0.840, & |
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106 | 0.736, 0.753, 0.759, 0.765, 0.771, 0.778, 0.785, 0.793, 0.804, 0.811, 0.820, 0.831, & |
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107 | 0.716, 0.735, 0.742, 0.748, 0.754, 0.762, 0.769, 0.778, 0.789, 0.796, 0.807, 0.819, & |
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108 | 0.704, 0.725, 0.733, 0.739, 0.745, 0.752, 0.759, 0.768, 0.778, 0.784, 0.792, 0.803, & |
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109 | 0.716, 0.737, 0.744, 0.751, 0.756, 0.763, 0.770, 0.777, 0.786, 0.790, 0.795, 0.800, & |
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110 | 0.688, 0.730, 0.741, 0.751, 0.761, 0.771, 0.782, 0.795, 0.810, 0.820, 0.833, 0.849 / |
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111 | |
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112 | DATA cg_aeri_6bands/ & |
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113 | ! coarse dust insoluble |
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114 | 0.801, 0.779, 0.709, 0.698, 0.710, 0.687, & |
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115 | ! super coarse dust insoluble |
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116 | 0.862, 0.871, 0.852, 0.799, 0.758, 0.651 / |
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117 | |
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118 | DATA piz_aers_6bands/& |
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119 | ! accumulation (sulfate+2% bc) mode soluble |
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120 | 0.941, 0.941, 0.941, 0.941, 0.958, 0.961, 0.965, 0.969, 0.974, 0.977, 0.981, 0.987, & |
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121 | 0.941, 0.941, 0.941, 0.941, 0.959, 0.963, 0.967, 0.971, 0.976, 0.979, 0.983, 0.988, & |
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122 | 0.953, 0.953, 0.953, 0.953, 0.967, 0.971, 0.974, 0.978, 0.982, 0.984, 0.988, 0.992, & |
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123 | 0.955, 0.955, 0.955, 0.955, 0.969, 0.972, 0.976, 0.980, 0.984, 0.986, 0.989, 0.994, & |
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124 | 0.936, 0.936, 0.936, 0.936, 0.955, 0.961, 0.966, 0.972, 0.978, 0.982, 0.987, 0.993, & |
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125 | 0.792, 0.792, 0.792, 0.792, 0.848, 0.867, 0.887, 0.907, 0.931, 0.944, 0.960, 0.980, & |
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126 | ! seasalt coarse soluble |
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127 | 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.001, 1.000, & |
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128 | 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, & |
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129 | 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, & |
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130 | 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, 1.000, & |
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131 | 0.994, 0.994, 0.995, 0.995, 0.995, 0.995, 0.996, 0.996, 0.996, 0.996, 0.996, 0.996, & |
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132 | 0.976, 0.867, 0.837, 0.814, 0.796, 0.774, 0.754, 0.735, 0.713, 0.702, 0.690, 0.675 / |
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133 | |
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134 | DATA piz_aeri_6bands/ & |
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135 | ! coarse dust insoluble |
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136 | 0.866, 0.875, 0.915, 0.977, 0.993, 0.971, & |
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137 | ! super coarse dust insoluble |
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138 | 0.789, 0.749, 0.791, 0.918, 0.970, 0.909 / |
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139 | ! |
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140 | spsol = 0 |
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141 | spinsol = 0 |
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142 | |
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143 | modname='splaeropt_6bands_rrt' |
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144 | |
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145 | IF (NSW.NE.nbands_sw_rrtm) THEN |
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146 | CALL abort_physic(modname,'Erreur NSW doit etre egal a 6 pour cette routine',1) |
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147 | ENDIF |
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148 | |
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149 | DO irh=1,nbre_RH-1 |
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150 | fact_RH(irh)=1./(RH_tab(irh+1)-RH_tab(irh)) |
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151 | ENDDO |
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152 | |
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153 | DO k=1, klev |
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154 | DO i=1, klon |
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155 | rh(i,k)=MIN(RHcl(i,k)*100.,RH_MAX) |
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156 | RH_num(i,k) = INT(rh(i,k)/10. + 1.) |
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157 | IF (rh(i,k).GT.85.) RH_num(i,k)=10 |
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158 | IF (rh(i,k).GT.90.) RH_num(i,k)=11 |
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159 | delta(i,k)=(rh(i,k)-RH_tab(RH_num(i,k)))*fact_RH(RH_num(i,k)) |
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160 | ENDDO |
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161 | ENDDO |
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162 | |
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163 | tau_ae(:,:,:,:)=0. |
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164 | piz_ae(:,:,:,:)=0. |
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165 | cg_ae(:,:,:,:)=0. |
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166 | |
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167 | itr = 0 |
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168 | DO iq = 1, nqtot |
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169 | IF(.NOT.tracers(iq)%isInPhysics) CYCLE |
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170 | itr = itr+1 |
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171 | SELECT CASE(tracers(iq)%name) |
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172 | CASE('PREC'); CYCLE !--precursor |
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173 | CASE('FINE'); soluble=.TRUE.; spsol=1; aerindex=1 !--fine mode accumulation mode |
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174 | CASE('COSS'); soluble=.TRUE.; spsol=2; aerindex=2 !--coarse mode sea salt |
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175 | CASE('CODU'); soluble=.FALSE.; spinsol=1; aerindex=3 !--coarse mode dust |
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176 | CASE('SCDU'); soluble=.FALSE.; spinsol=2; aerindex=4 !--super coarse mode dust |
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177 | CASE DEFAULT; CALL abort_physic(modname,'I cannot do aerosol optics for '//tracers(iq)%name,1) |
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178 | END SELECT |
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179 | |
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180 | IF (soluble) THEN ! For aerosol soluble components |
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181 | |
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182 | DO k=1, klev |
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183 | DO i=1, klon |
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184 | |
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185 | tmp_var=tr_seri(i,k,itr)*zdm(i,k) !-- g/m2 |
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186 | |
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187 | DO inu=1,NSW |
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188 | |
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189 | tau_ae2b_int= alpha_aers_6bands(RH_num(i,k),inu,spsol)+ & |
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190 | delta(i,k)* (alpha_aers_6bands(RH_num(i,k)+1,inu,spsol) - & |
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191 | alpha_aers_6bands(RH_num(i,k),inu,spsol)) |
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192 | |
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193 | piz_ae2b_int = piz_aers_6bands(RH_num(i,k),inu,spsol) + & |
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194 | delta(i,k)* (piz_aers_6bands(RH_num(i,k)+1,inu,spsol) - & |
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195 | piz_aers_6bands(RH_num(i,k),inu,spsol)) |
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196 | |
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197 | cg_ae2b_int = cg_aers_6bands(RH_num(i,k),inu,spsol) + & |
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198 | delta(i,k)* (cg_aers_6bands(RH_num(i,k)+1,inu,spsol) - & |
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199 | cg_aers_6bands(RH_num(i,k),inu,spsol)) |
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200 | |
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201 | tau_ae(i,k,aerindex,inu) = tmp_var*tau_ae2b_int |
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202 | piz_ae(i,k,aerindex,inu) = piz_ae2b_int |
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203 | cg_ae(i,k,aerindex,inu) = cg_ae2b_int |
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204 | |
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205 | ENDDO |
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206 | ENDDO |
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207 | ENDDO |
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208 | |
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209 | ELSE ! For all aerosol insoluble components |
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210 | |
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211 | DO k=1, klev |
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212 | DO i=1, klon |
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213 | |
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214 | tmp_var=tr_seri(i,k,itr)*zdm(i,k) !-- g/m2 |
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215 | |
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216 | DO inu=1,NSW |
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217 | tau_ae2b_int = alpha_aeri_6bands(inu,spinsol) |
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218 | piz_ae2b_int = piz_aeri_6bands(inu,spinsol) |
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219 | cg_ae2b_int = cg_aeri_6bands(inu,spinsol) |
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220 | |
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221 | tau_ae(i,k,aerindex,inu) = tmp_var*tau_ae2b_int |
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222 | piz_ae(i,k,aerindex,inu) = piz_ae2b_int |
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223 | cg_ae(i,k,aerindex,inu)= cg_ae2b_int |
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224 | ENDDO |
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225 | ENDDO |
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226 | ENDDO |
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227 | |
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228 | ENDIF ! soluble / insoluble |
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229 | |
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230 | ENDDO ! nbtr |
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231 | |
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232 | !--all (natural + anthropogenic) aerosol |
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233 | tau_allaer(:,:,2,:)=SUM(tau_ae(:,:,1:naero,:),dim=3) |
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234 | tau_allaer(:,:,2,:)=MAX(tau_allaer(:,:,2,:),tau_min) |
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235 | |
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236 | piz_allaer(:,:,2,:)=SUM(tau_ae(:,:,1:naero,:)*piz_ae(:,:,1:naero,:),dim=3)/tau_allaer(:,:,2,:) |
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237 | piz_allaer(:,:,2,:)=MIN(MAX(piz_allaer(:,:,2,:),0.01),1.0) |
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238 | WHERE (tau_allaer(:,:,2,:).LE.tau_min) piz_allaer(:,:,2,:)=1.0 |
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239 | |
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240 | cg_allaer(:,:,2,:)=SUM(tau_ae(:,:,1:naero,:)*piz_ae(:,:,1:naero,:)*cg_ae(:,:,1:naero,:),dim=3)/ & |
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241 | (tau_allaer(:,:,2,:)*piz_allaer(:,:,2,:)) |
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242 | cg_allaer(:,:,2,:)=MIN(MAX(cg_allaer(:,:,2,:),0.0),1.0) |
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243 | |
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244 | !--no aerosol |
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245 | tau_allaer(:,:,1,:)=tau_min |
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246 | piz_allaer(:,:,1,:)=1.0 |
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247 | cg_allaer(:,:,1,:)=0.0 |
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248 | |
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249 | !--waveband 2 and all aerosol (third index = 2) |
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250 | inu=2 |
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251 | abs550aer(:)=SUM((1-piz_allaer(:,:,2,inu))*tau_allaer(:,:,2,inu),dim=2) |
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252 | |
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253 | END SUBROUTINE SPLAEROPT_6BANDS_RRTM |
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