1 | !SFX_LIC Copyright 1994-2014 CNRS, Meteo-France and Universite Paul Sabatier |
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2 | !SFX_LIC This is part of the SURFEX software governed by the CeCILL-C licence |
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3 | !SFX_LIC version 1. See LICENSE, CeCILL-C_V1-en.txt and CeCILL-C_V1-fr.txt |
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4 | !SFX_LIC for details. version 1. |
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5 | ! ######### |
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6 | SUBROUTINE INI_CSTS |
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7 | ! ################## |
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8 | ! |
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9 | !!**** *INI_CSTS * - routine to initialize the module MODD_CST |
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10 | !! |
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11 | !! PURPOSE |
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12 | !! ------- |
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13 | ! The purpose of this routine is to initialize the physical constants |
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14 | ! stored in module MODD_CST. |
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15 | ! |
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16 | ! |
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17 | !!** METHOD |
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18 | !! ------ |
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19 | !! The physical constants are set to their numerical values |
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20 | !! |
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21 | !! |
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22 | !! EXTERNAL |
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23 | !! -------- |
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24 | !! FMLOOK : to retrieve logical unit number associated to a file |
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25 | !! |
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26 | !! IMPLICIT ARGUMENTS |
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27 | !! ------------------ |
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28 | !! Module MODD_CST : contains physical constants |
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29 | !! |
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30 | !! REFERENCE |
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31 | !! --------- |
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32 | !! Book2 of the documentation (module MODD_CST, routine INI_CSTS) |
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33 | !! |
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34 | !! |
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35 | !! AUTHOR |
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36 | !! ------ |
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37 | !! V. Ducrocq * Meteo France * |
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38 | !! |
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39 | !! MODIFICATIONS |
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40 | !! ------------- |
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41 | !! Original 18/05/94 |
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42 | !! J. Stein 02/01/95 add the volumic mass of liquid water |
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43 | !! J.-P. Pinty 13/12/95 add the water vapor pressure over solid ice |
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44 | !! J. Stein 29/06/97 add XTH00 |
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45 | !! V. Masson 05/10/98 add XRHOLI |
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46 | !! C. Mari 31/10/00 add NDAYSEC |
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47 | !! V. Masson 01/03/03 add XCONDI |
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48 | !! A. Voldoire 01/12/09 add XTTSI, XICEC, XTTS for ESM |
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49 | !! J. Escobar 28/03/2014 for pb with emissivity/aerosol reset XSURF_TINY=1.0e-80 in real8 case |
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50 | !! |
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51 | !------------------------------------------------------------------------------- |
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52 | ! |
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53 | !* 0. DECLARATIONS |
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54 | ! ------------ |
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55 | ! |
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56 | USE MODD_CSTS |
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57 | ! |
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58 | ! |
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59 | !USE YOMHOOK ,ONLY : LHOOK, DR_HOOK |
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60 | !USE PARKIND1 ,ONLY : JPRB |
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61 | ! |
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62 | !USE MODI_INI_CTURBS |
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63 | ! |
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64 | !USE MODI_INI_OCEAN_CSTS |
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65 | ! |
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66 | !USE MODI_INI_SURF_CSTS |
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67 | ! |
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68 | IMPLICIT NONE |
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69 | ! |
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70 | !------------------------------------------------------------------------------- |
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71 | ! |
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72 | !* 1. FUNDAMENTAL CONSTANTS |
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73 | ! --------------------- |
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74 | ! |
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75 | |
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76 | !REAL(KIND=JPRB) :: ZHOOK_HANDLE |
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77 | |
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78 | !IF (LHOOK) CALL DR_HOOK('INI_CSTS',0,ZHOOK_HANDLE) |
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79 | |
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80 | !#ifdef SFX_MNH |
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81 | !#ifdef MNH_MPI_DOUBLE_PRECISION |
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82 | XSURF_TINY = 1.0e-80 |
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83 | !#else |
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84 | !XSURF_TINY = TINY (XSURF_TINY ) |
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85 | !#endif |
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86 | !#else |
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87 | XSURF_TINY = 1.0e-80 |
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88 | !#endif |
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89 | XSURF_TINY_12 = SQRT (XSURF_TINY ) |
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90 | XSURF_EPSILON = EPSILON (XSURF_EPSILON ) * 10.0 |
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91 | |
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92 | XPI = 2.*ASIN(1.) |
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93 | XKARMAN = 0.4 |
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94 | XBOLTZ = 1.380658E-23 |
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95 | XLIGHTSPEED = 299792458. |
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96 | XPLANCK = 6.6260755E-34 |
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97 | XAVOGADRO = 6.0221367E+23 |
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98 | ! |
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99 | !------------------------------------------------------------------------------- |
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100 | ! |
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101 | !* 2. ASTRONOMICAL CONSTANTS |
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102 | ! ---------------------- |
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103 | ! |
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104 | XDAY = 86400. |
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105 | XSIYEA = 365.25*XDAY*2.*XPI/ 6.283076 |
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106 | XSIDAY = XDAY/(1.+XDAY/XSIYEA) |
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107 | XOMEGA = 2.*XPI/XSIDAY |
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108 | NDAYSEC = 24*3600 ! Number of seconds in a day |
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109 | ! |
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110 | !-------------------------------------------------------------------------------! |
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111 | ! |
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112 | ! |
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113 | !* 3. TERRESTRIAL GEOIDE CONSTANTS |
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114 | ! ---------------------------- |
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115 | ! |
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116 | XRADIUS = 6371229. |
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117 | XG = 9.80665 |
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118 | ! |
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119 | !------------------------------------------------------------------------------- |
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120 | ! |
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121 | !* 4. REFERENCE PRESSURE |
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122 | ! ------------------- |
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123 | ! |
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124 | XP00 = 1.E5 |
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125 | XTH00 = 300. |
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126 | !------------------------------------------------------------------------------- |
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127 | ! |
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128 | !* 5. RADIATION CONSTANTS |
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129 | ! ------------------- |
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130 | ! |
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131 | !JUAN OVERFLOW XSTEFAN = 2.* XPI**5 * XBOLTZ**4 / (15.* XLIGHTSPEED**2 * XPLANCK**3) |
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132 | XSTEFAN = ( 2.* XPI**5 / 15. ) * ( (XBOLTZ / XPLANCK)* XBOLTZ ) * (XBOLTZ/(XLIGHTSPEED*XPLANCK))**2 |
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133 | XI0 = 1370. |
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134 | ! |
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135 | !------------------------------------------------------------------------------- |
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136 | ! |
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137 | !* 6. THERMODYNAMIC CONSTANTS |
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138 | ! ----------------------- |
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139 | ! |
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140 | XMD = 28.9644E-3 |
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141 | XMV = 18.0153E-3 |
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142 | XRD = XAVOGADRO * XBOLTZ / XMD |
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143 | XRV = XAVOGADRO * XBOLTZ / XMV |
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144 | XCPD = 7.* XRD /2. |
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145 | XCPV = 4.* XRV |
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146 | XRHOLW = 1000. |
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147 | XRHOLI = 917. |
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148 | XCONDI = 2.22 |
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149 | XCL = 4.218E+3 |
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150 | XCI = 2.106E+3 |
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151 | XTT = 273.16 |
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152 | XTTSI = XTT - 1.8 |
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153 | XICEC = 0.5 |
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154 | XTTS = XTT*(1-XICEC) + XTTSI*XICEC |
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155 | XLVTT = 2.5008E+6 |
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156 | XLSTT = 2.8345E+6 |
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157 | XLMTT = XLSTT - XLVTT |
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158 | XESTT = 611.14 |
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159 | XGAMW = (XCL - XCPV) / XRV |
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160 | XBETAW = (XLVTT/XRV) + (XGAMW * XTT) |
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161 | XALPW = LOG(XESTT) + (XBETAW /XTT) + (XGAMW *LOG(XTT)) |
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162 | XGAMI = (XCI - XCPV) / XRV |
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163 | XBETAI = (XLSTT/XRV) + (XGAMI * XTT) |
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164 | XALPI = LOG(XESTT) + (XBETAI /XTT) + (XGAMI *LOG(XTT)) |
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165 | ! |
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166 | !------------------------------------------------------------------------------- |
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167 | ! |
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168 | !* 7. TURBULENCE CONSTANTS |
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169 | ! -------------------- |
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170 | ! |
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171 | ! CALL INI_CTURBS |
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172 | !------------------------------------------------------------------------------- |
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173 | ! |
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174 | !* 8. OCEAN CONSTANTS |
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175 | ! --------------- |
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176 | ! |
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177 | ! CALL INI_OCEAN_CSTS |
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178 | ! |
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179 | !* 9. SURFACE CONSTANTS |
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180 | ! ----------------- |
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181 | ! |
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182 | ! CALL INI_SURF_CSTS |
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183 | !IF (LHOOK) CALL DR_HOOK('INI_CSTS',1,ZHOOK_HANDLE) |
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184 | ! |
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185 | !------------------------------------------------------------------------------- |
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186 | ! |
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187 | END SUBROUTINE INI_CSTS |
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