1 | SUBROUTINE SUAERSN (KTSW, KSW) |
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2 | |
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3 | !**** *SUAERS* - INITIALIZE COMMON YOEAER |
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4 | |
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5 | ! PURPOSE. |
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6 | ! -------- |
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7 | ! INITIALIZE YOEAER, THE COMMON THAT CONTAINS THE |
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8 | ! RADIATIVE CHARACTERISTICS OF THE AEROSOLS |
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9 | |
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10 | !** INTERFACE. |
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11 | ! ---------- |
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12 | ! ----- ----- |
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13 | |
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14 | ! EXPLICIT ARGUMENTS : |
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15 | ! -------------------- |
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16 | ! NONE |
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17 | |
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18 | ! IMPLICIT ARGUMENTS : |
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19 | ! -------------------- |
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20 | ! COMMON YOEAER |
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21 | |
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22 | ! METHOD. |
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23 | ! ------- |
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24 | ! SEE DOCUMENTATION |
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25 | |
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26 | ! EXTERNALS. |
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27 | ! ---------- |
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28 | |
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29 | ! REFERENCE. |
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30 | ! ---------- |
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31 | ! ECMWF RESEARCH DEPARTMENT DOCUMENTATION OF THE "IFS MODEL" |
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32 | |
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33 | ! AUTHOR. |
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34 | ! ------- |
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35 | ! JEAN-JACQUES MORCRETTE *ECMWF* |
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36 | |
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37 | ! MODIFICATIONS. |
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38 | ! -------------- |
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39 | ! ORIGINAL : 88-02-15 |
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40 | ! 96-01-27 JJ Morcrette Various spectral resolutions |
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41 | ! 99-05-25 JJMorcrette Revised aerosol optical properties |
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42 | ! 00-10-25 JJMorcrette 6 spectral intervals |
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43 | ! M.Hamrud 01-Oct-2003 CY28 Cleaning |
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44 | |
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45 | ! ------------------------------------------------------------------ |
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46 | |
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47 | USE PARKIND1 ,ONLY : JPIM ,JPRB |
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48 | USE YOMHOOK ,ONLY : LHOOK, DR_HOOK |
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49 | |
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50 | USE YOESW , ONLY : RTAUA ,RPIZA ,RCGA |
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51 | |
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52 | ! ---------------------------------------------------------------- |
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53 | |
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54 | IMPLICIT NONE |
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55 | |
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56 | INTEGER(KIND=JPIM),INTENT(IN) :: KTSW |
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57 | INTEGER(KIND=JPIM),INTENT(IN) :: KSW |
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58 | REAL(KIND=JPRB) :: ZTAUA2(2,6) ,ZPIZA2(2,6) ,ZCGA2(2,6) |
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59 | REAL(KIND=JPRB) :: ZTAUA4(4,6) ,ZPIZA4(4,6) ,ZCGA4(4,6) |
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60 | REAL(KIND=JPRB) :: ZTAUA6(6,6) ,ZPIZA6(6,6) ,ZCGA6(6,6) |
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61 | |
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62 | INTEGER(KIND=JPIM) :: JAER, JNU |
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63 | REAL(KIND=JPRB) :: ZHOOK_HANDLE |
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64 | |
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65 | ! ---------------------------------------------------------------- |
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66 | |
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67 | !* 1. SHORTWAVE COEFFICIENTS |
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68 | ! ---------------------- |
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69 | !======================================================================= |
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70 | !-- The (old) five aerosol types were respectively: |
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71 | |
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72 | ! 1/ continental average (+desert) 2/ maritime |
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73 | ! 3/ urban 4/ volcanic active |
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74 | ! 5/ stratospheric background |
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75 | |
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76 | !-- old values were not spectrally defined: |
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77 | ! ZTAU2 = .730719, .912819, .725059, .745405, .682188 |
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78 | ! ZPIZA2 = .872212, .982545, .623143, .944887, .997975 |
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79 | ! ZCGA2 = .647596, .739002, .580845, .662657, .624246 |
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80 | !======================================================================= |
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81 | |
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82 | !-- The six aerosol types are respectively: |
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83 | |
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84 | ! 1/ continental average 2/ maritime |
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85 | ! 3/ desert 4/ urban |
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86 | ! 5/ volcanic active 6/ stratospheric background |
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87 | |
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88 | ! The quantities given are: |
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89 | ! TAU : ratio of average optical thickness in interval to that at 0.55 |
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90 | ! micron |
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91 | ! PIZA: average single scattering albedo |
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92 | ! CGA : average asymmetry factor |
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93 | |
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94 | ! computed from Hess and Koepke (con, mar, des, urb) |
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95 | ! from Bonnel et al. (vol, str) |
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96 | |
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97 | ! 1.1 TWO SPECTRAL INTERVALS (0.25-0.69-4.00microns) |
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98 | |
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99 | IF (LHOOK) CALL DR_HOOK('SUAERSN',0,ZHOOK_HANDLE) |
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100 | ZTAUA2(1, :)= (/& |
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101 | & 1.69446_JPRB , 1.11855_JPRB , 1.09212_JPRB , 1.72145_JPRB , 1.03858_JPRB , 1.12044_JPRB /) |
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102 | ZTAUA2(2, :)= (/& |
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103 | & 0.40174_JPRB , 0.89383_JPRB , 0.89546_JPRB , 0.40741_JPRB , 0.51143_JPRB , 0.32646_JPRB /) |
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104 | |
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105 | ZPIZA2(1, :)= (/& |
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106 | & .9148907_JPRB, .9956173_JPRB, .7504584_JPRB, .8131335_JPRB, .9401905_JPRB, .9999999_JPRB/) |
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107 | ZPIZA2(2, :)= (/& |
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108 | & .8814597_JPRB, .9920407_JPRB, .9239428_JPRB, .7546879_JPRB, .9515548_JPRB, .9938563_JPRB/) |
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109 | |
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110 | ZCGA2(1, :)= (/& |
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111 | & 0.729019_JPRB, 0.803129_JPRB, 0.784592_JPRB, 0.712208_JPRB, .7008249_JPRB, .7270548_JPRB/) |
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112 | ZCGA2(2, :)= (/& |
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113 | & 0.663224_JPRB, 0.793746_JPRB, 0.696315_JPRB, 0.652612_JPRB, .6608509_JPRB, .6318786_JPRB/) |
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114 | |
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115 | ! 1.2 FOUR SPECTRAL INTERVALS (0.25-0.69-1.19-2.38-4.00microns) |
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116 | |
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117 | ZTAUA4(1, :)= (/& |
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118 | & 1.69446_JPRB , 1.11855_JPRB , 1.09212_JPRB , 1.72145_JPRB , 1.03858_JPRB , 1.12044_JPRB /) |
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119 | ZTAUA4(2, :)= (/& |
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120 | & 0.52838_JPRB , 0.93285_JPRB , 0.93449_JPRB , 0.53078_JPRB , 0.67148_JPRB , 0.46608_JPRB /) |
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121 | ZTAUA4(3, :)= (/& |
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122 | & 0.20543_JPRB , 0.84642_JPRB , 0.84958_JPRB , 0.21673_JPRB , 0.28270_JPRB , 0.10915_JPRB /) |
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123 | ZTAUA4(4, :)= (/& |
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124 | & 0.10849_JPRB , 0.66699_JPRB , 0.65255_JPRB , 0.11600_JPRB , 0.06529_JPRB , 0.04468_JPRB /) |
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125 | |
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126 | ZPIZA4(1, :)= (/& |
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127 | & .9148907_JPRB, .9956173_JPRB, .7504584_JPRB, .8131335_JPRB, .9401905_JPRB, .9999999_JPRB/) |
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128 | ZPIZA4(2, :)= (/& |
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129 | & .8970131_JPRB, .9984940_JPRB, .9245594_JPRB, .7768385_JPRB, .9532763_JPRB, .9999999_JPRB/) |
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130 | ZPIZA4(3, :)= (/& |
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131 | & .8287144_JPRB, .9949396_JPRB, .9279543_JPRB, .6765051_JPRB, .9467578_JPRB, .9955938_JPRB/) |
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132 | ZPIZA4(4, :)= (/& |
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133 | & .5230504_JPRB, .7868518_JPRB, .8531531_JPRB, .4048149_JPRB, .8748231_JPRB, .2355667_JPRB/) |
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134 | |
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135 | ZCGA4(1, :)= (/& |
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136 | & 0.729019_JPRB, 0.803129_JPRB, 0.784592_JPRB, 0.712208_JPRB, .7008249_JPRB, .7270548_JPRB/) |
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137 | ZCGA4(2, :)= (/& |
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138 | & 0.668431_JPRB, 0.788530_JPRB, 0.698682_JPRB, 0.657422_JPRB, .6735182_JPRB, .6519706_JPRB/) |
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139 | ZCGA4(3, :)= (/& |
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140 | & 0.636342_JPRB, 0.802467_JPRB, 0.691305_JPRB, 0.627497_JPRB, .6105750_JPRB, .4760794_JPRB/) |
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141 | ZCGA4(4, :)= (/& |
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142 | & 0.700610_JPRB, 0.818871_JPRB, 0.702399_JPRB, 0.689886_JPRB, .4629866_JPRB, .1907639_JPRB/) |
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143 | |
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144 | ! 1.3 SIX SPECTRAL INTERVALS (0.185-0.25-0.44-0.69-1.19-2.38-4.00microns) |
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145 | |
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146 | ZTAUA6(1, :)= (/& |
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147 | & 1.69446_JPRB , 1.11855_JPRB , 1.09212_JPRB , 1.72145_JPRB , 1.03858_JPRB , 1.12044_JPRB /) |
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148 | ZTAUA6(2, :)= (/& |
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149 | & 1.69446_JPRB , 1.11855_JPRB , 1.09212_JPRB , 1.72145_JPRB , 1.03858_JPRB , 1.12044_JPRB /) |
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150 | ZTAUA6(3, :)= (/& |
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151 | & 1.69446_JPRB , 1.11855_JPRB , 1.09212_JPRB , 1.72145_JPRB , 1.03858_JPRB , 1.12044_JPRB /) |
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152 | ZTAUA6(4, :)= (/& |
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153 | & 0.52838_JPRB , 0.93285_JPRB , 0.93449_JPRB , 0.53078_JPRB , 0.67148_JPRB , 0.46608_JPRB /) |
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154 | ZTAUA6(5, :)= (/& |
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155 | & 0.20543_JPRB , 0.84642_JPRB , 0.84958_JPRB , 0.21673_JPRB , 0.28270_JPRB , 0.10915_JPRB /) |
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156 | ZTAUA6(6, :)= (/& |
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157 | & 0.10849_JPRB , 0.66699_JPRB , 0.65255_JPRB , 0.11600_JPRB , 0.06529_JPRB , 0.04468_JPRB /) |
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158 | |
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159 | ZPIZA6(1, :)= (/& |
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160 | & .9148907_JPRB, .9956173_JPRB, .7504584_JPRB, .8131335_JPRB, .9401905_JPRB, .9999999_JPRB/) |
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161 | ZPIZA6(2, :)= (/& |
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162 | & .9148907_JPRB, .9956173_JPRB, .7504584_JPRB, .8131335_JPRB, .9401905_JPRB, .9999999_JPRB/) |
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163 | ZPIZA6(3, :)= (/& |
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164 | & .9148907_JPRB, .9956173_JPRB, .7504584_JPRB, .8131335_JPRB, .9401905_JPRB, .9999999_JPRB/) |
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165 | ZPIZA6(4, :)= (/& |
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166 | & .8970131_JPRB, .9984940_JPRB, .9245594_JPRB, .7768385_JPRB, .9532763_JPRB, .9999999_JPRB/) |
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167 | ZPIZA6(5, :)= (/& |
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168 | & .8287144_JPRB, .9949396_JPRB, .9279543_JPRB, .6765051_JPRB, .9467578_JPRB, .9955938_JPRB/) |
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169 | ZPIZA6(6, :)= (/& |
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170 | & .5230504_JPRB, .7868518_JPRB, .8531531_JPRB, .4048149_JPRB, .8748231_JPRB, .2355667_JPRB/) |
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171 | |
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172 | ZCGA6(1, :)= (/& |
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173 | & 0.729019_JPRB, 0.803129_JPRB, 0.784592_JPRB, 0.712208_JPRB, .7008249_JPRB, .7270548_JPRB/) |
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174 | ZCGA6(2, :)= (/& |
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175 | & 0.729019_JPRB, 0.803129_JPRB, 0.784592_JPRB, 0.712208_JPRB, .7008249_JPRB, .7270548_JPRB/) |
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176 | ZCGA6(3, :)= (/& |
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177 | & 0.729019_JPRB, 0.803129_JPRB, 0.784592_JPRB, 0.712208_JPRB, .7008249_JPRB, .7270548_JPRB/) |
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178 | ZCGA6(4, :)= (/& |
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179 | & 0.668431_JPRB, 0.788530_JPRB, 0.698682_JPRB, 0.657422_JPRB, .6735182_JPRB, .6519706_JPRB/) |
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180 | ZCGA6(5, :)= (/& |
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181 | & 0.636342_JPRB, 0.802467_JPRB, 0.691305_JPRB, 0.627497_JPRB, .6105750_JPRB, .4760794_JPRB/) |
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182 | ZCGA6(6, :)= (/& |
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183 | & 0.700610_JPRB, 0.818871_JPRB, 0.702399_JPRB, 0.689886_JPRB, .4629866_JPRB, .1907639_JPRB/) |
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184 | |
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185 | ! ---------------------------------------------------------------- |
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186 | |
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187 | IF (KSW == 2) THEN |
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188 | DO JNU=1,KSW |
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189 | DO JAER=1,6 |
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190 | RTAUA(JNU,JAER)=ZTAUA2(JNU,JAER) |
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191 | RPIZA(JNU,JAER)=ZPIZA2(JNU,JAER) |
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192 | RCGA(JNU,JAER) =ZCGA2 (JNU,JAER) |
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193 | ENDDO |
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194 | ENDDO |
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195 | ELSEIF (KSW == 4) THEN |
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196 | DO JNU=1,KSW |
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197 | DO JAER=1,6 |
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198 | RTAUA(JNU,JAER)=ZTAUA4(JNU,JAER) |
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199 | RPIZA(JNU,JAER)=ZPIZA4(JNU,JAER) |
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200 | RCGA(JNU,JAER) =ZCGA4 (JNU,JAER) |
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201 | ENDDO |
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202 | ENDDO |
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203 | ELSEIF (KSW == 6) THEN |
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204 | DO JNU=1,KSW |
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205 | DO JAER=1,6 |
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206 | RTAUA(JNU,JAER)=ZTAUA6(JNU,JAER) |
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207 | RPIZA(JNU,JAER)=ZPIZA6(JNU,JAER) |
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208 | RCGA(JNU,JAER) =ZCGA6 (JNU,JAER) |
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209 | ENDDO |
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210 | ENDDO |
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211 | ELSEIF (KSW == 14 .AND. KTSW == 14) THEN |
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212 | PRINT *,'SUAERSN: 14-SPECTRAL INTERVALS --> RRTM_SW' |
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213 | ELSE |
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214 | STOP 'SUAERSN: WRONG NUMBER OF SPECTRAL INTERVALS' |
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215 | ENDIF |
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216 | |
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217 | ! ---------------------------------------------------------------- |
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218 | |
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219 | IF (LHOOK) CALL DR_HOOK('SUAERSN',1,ZHOOK_HANDLE) |
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220 | END SUBROUTINE SUAERSN |
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