1 | ############################################################################### |
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2 | # |
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3 | # Input file for OASIS3 |
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4 | # |
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5 | # This version is for use with IPSL_CM4_v1 |
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6 | # |
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7 | # The file will be edited at runtime to update it for |
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8 | # - the initial date of the run |
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9 | # |
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10 | ############################################################################### |
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11 | # |
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12 | # Input delimiters have to occupy position 1 to 9 ! |
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13 | # No blank lines allowed ! |
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14 | # Length of input lines <= 80 ! |
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15 | # |
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16 | ############################################################################### |
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17 | # |
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18 | # SEQMODE : 1 if all models run simultaneously |
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19 | # n if n models run sequentially |
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20 | $SEQMODE |
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21 | 1 |
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22 | $END |
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23 | ############################################################################### |
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24 | # |
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25 | # CHANNEL (CHAR*4) |
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26 | # PIPE if named pipes + binary files are used |
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27 | # for synchro and data respectively (not tested); |
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28 | # MPI1/2 if MPI message passing is used for data exchange; |
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29 | # |
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30 | $CHANNEL |
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31 | <lib_mpi> |
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32 | <nproc_atm> <nproc_atm> |
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33 | <nproc_oce> <nproc_oce> |
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34 | $END |
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35 | ############################################################################### |
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36 | # |
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37 | # NFIELDS : total number of fields being exchanged. |
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38 | # |
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39 | $NFIELDS |
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40 | 21 |
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41 | $END |
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42 | ############################################################################### |
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43 | # |
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44 | # JOBNAME : acronym for the given simulation (CHAR*3) |
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45 | # |
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46 | $JOBNAME |
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47 | EXP |
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48 | $END |
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49 | ############################################################################### |
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50 | # |
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51 | # NBMODEL : number of models and their names (CHAR*6). |
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52 | # |
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53 | $NBMODEL |
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54 | 2 lmdz.x opa.xx |
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55 | $END |
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56 | ############################################################################### |
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57 | # |
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58 | # RUNTIME: total simulated time for the actual run in seconds (<I8) |
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59 | # |
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60 | $RUNTIME |
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61 | <total_time> |
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62 | $END |
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63 | ############################################################################### |
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64 | # |
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65 | # INIDATE (I8) |
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66 | # initial date of the run (YYYYMMDD) |
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67 | # |
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68 | $INIDATE |
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69 | <initial_date> |
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70 | $END |
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71 | ############################################################################### |
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72 | # |
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73 | # MODINFO (YES or NOT) |
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74 | # Indicates whether a header is encapsulated within the field |
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75 | # |
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76 | $MODINFO |
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77 | NOT |
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78 | $END |
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79 | ############################################################################### |
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80 | # |
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81 | # NLOGPRT: printing level in output file cplout: |
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82 | # 0 = no printing |
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83 | # 1 = main routines and field names when treated |
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84 | # 2 = complete output |
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85 | # |
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86 | $NLOGPRT |
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87 | 2 |
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88 | $END |
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89 | ############################################################################### |
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90 | # |
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91 | # CALTYPE: Calendar type |
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92 | # 0 = 365 day calendar (no leap years) |
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93 | # 1 = 365 day, or 366 days for leap years, calendar |
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94 | # n (>1) = n day month calendar |
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95 | # |
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96 | $CALTYPE |
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97 | 0 |
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98 | $END |
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99 | # |
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100 | # |
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101 | ############################################################################### |
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102 | $STRINGS |
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103 | ############################################################################### |
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104 | # |
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105 | # OCEAN --->>> ATMOS |
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106 | # -------------------- |
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107 | ############################################################################### |
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108 | # |
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109 | # Field 1 : Weighted sea surface temperature (o->a 1) |
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110 | # |
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111 | O_SSTSST SISUTESW 1 86400 5 sstoc.nc <output_mode> |
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112 | torc tlmd LAG=5760 |
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113 | P 2 P 0 |
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114 | LOCTRANS CHECKIN MOZAIC CHECKOUT REVERSE |
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115 | # LOCTRANS: AVERAGE to average value over coupling period |
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116 | AVERAGE |
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117 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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118 | INT=1 |
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119 | # Mozaic: 1) mapping filename 2) connected unit 3) dataset rank 4) Maximum |
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120 | # number of overlapped neighbors |
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121 | wo2a.tsg 93 1 15 |
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122 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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123 | INT=1 |
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124 | # |
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125 | NORSUD WSTEST |
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126 | # |
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127 | ############################################################################ |
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128 | # |
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129 | # Field 2 : Sea ice extent (o->a 2) |
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130 | # |
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131 | OIceFrac SIICECOV 2 86400 5 sstoc.nc <output_mode> |
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132 | torc tlmd LAG=5760 |
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133 | P 2 P 0 |
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134 | # |
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135 | LOCTRANS CHECKIN MOZAIC CHECKOUT REVERSE |
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136 | AVERAGE |
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137 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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138 | INT=1 |
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139 | # |
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140 | wo2a.tsg 93 1 15 |
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141 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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142 | INT=1 |
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143 | # |
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144 | NORSUD WSTEST |
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145 | # |
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146 | ############################################################################ |
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147 | # |
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148 | # Field 4 : Weighted Sea Ice Temperature (o->a 3) |
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149 | # |
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150 | O_TepIce SIICTEMW 34 86400 5 sstoc.nc <output_mode> |
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151 | torc tlmd LAG=5760 |
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152 | P 2 P 0 |
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153 | LOCTRANS CHECKIN MOZAIC CHECKOUT REVERSE |
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154 | AVERAGE |
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155 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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156 | INT=1 |
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157 | # |
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158 | wo2a.tsg 93 1 15 |
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159 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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160 | INT=1 |
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161 | # |
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162 | NORSUD WSTEST |
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163 | ############################################################################ |
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164 | # |
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165 | # Field 3 : Weighted Sea ice albedo (o->a 4) |
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166 | # |
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167 | O_AlbIce SIICEALW 17 86400 5 sstoc.nc <output_mode> |
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168 | torc tlmd LAG=5760 |
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169 | P 2 P 0 |
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170 | # |
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171 | LOCTRANS CHECKIN MOZAIC CHECKOUT REVERSE |
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172 | AVERAGE |
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173 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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174 | INT=1 |
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175 | # |
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176 | wo2a.tsg 93 1 15 |
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177 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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178 | INT=1 |
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179 | # |
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180 | NORSUD WSTEST |
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181 | # |
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182 | ############################################################################ |
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183 | # |
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184 | # ATMOSPHERE --->>> OCEAN |
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185 | # ------------------------- |
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186 | ############################################################################ |
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187 | # |
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188 | # Field 5 : wind stress along X axis (a->o tau 1) |
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189 | # |
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190 | COTAUXXU O_OTaux1 23 86400 6 flxat.nc <output_mode> |
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191 | tlmd uorc LAG=1800 |
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192 | P 0 P 2 |
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193 | INVERT CHECKIN MASK EXTRAP INTERP CHECKOUT |
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194 | # Reverse |
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195 | NORSUD WSTEST |
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196 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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197 | INT=1 |
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198 | # Mask value |
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199 | 888888. |
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200 | # Extrapolation method |
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201 | NINENN 2 1 1 |
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202 | # Interpolation method |
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203 | BICUBIPS Z SCALAR |
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204 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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205 | INT=1 |
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206 | # |
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207 | ########################################################################### |
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208 | # |
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209 | # Field 6 : stress along Y axis (a->o tau 1) |
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210 | # |
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211 | COTAUYYU O_OTauy1 23 86400 6 flxat.nc <output_mode> |
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212 | tlmd uorc LAG=1800 |
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213 | P 0 P 2 |
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214 | INVERT CHECKIN MASK EXTRAP INTERP CHECKOUT |
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215 | # Reverse |
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216 | NORSUD WSTEST |
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217 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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218 | INT=1 |
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219 | # Mask value |
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220 | 888888. |
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221 | # Extrapolation method |
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222 | NINENN 2 1 1 |
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223 | # Interpolation method |
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224 | BICUBIPS Z SCALAR |
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225 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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226 | INT=1 |
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227 | # |
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228 | ########################################################################### |
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229 | # |
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230 | # Field 7 :wind stress along Z axis (a->o tau 1) |
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231 | # |
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232 | COTAUZZU O_OTauz1 23 86400 6 flxat.nc <output_mode> |
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233 | tlmd uorc LAG=1800 |
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234 | P 0 P 2 |
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235 | INVERT CHECKIN MASK EXTRAP INTERP CHECKOUT |
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236 | # Reverse |
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237 | NORSUD WSTEST |
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238 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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239 | INT=1 |
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240 | # Mask value |
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241 | 888888. |
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242 | # Extrapolation method |
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243 | NINENN 2 1 1 |
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244 | # Interpolation method |
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245 | BICUBIPS Z SCALAR |
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246 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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247 | INT=1 |
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248 | # |
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249 | ########################################################################## |
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250 | # |
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251 | # Field 8 : wind stress along X axis 2 (a->o tau 2) |
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252 | # |
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253 | COTAUXXV O_OTaux2 24 86400 6 flxat.nc <output_mode> |
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254 | tlmd vorc LAG=1800 |
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255 | P 0 P 2 |
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256 | INVERT CHECKIN MASK EXTRAP INTERP CHECKOUT |
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257 | # Reverse |
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258 | NORSUD WSTEST |
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259 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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260 | INT=1 |
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261 | # Mask value |
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262 | 888888. |
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263 | # Extrapolation method |
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264 | NINENN 2 1 1 |
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265 | # Interpolation method |
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266 | BICUBIPS Z SCALAR |
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267 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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268 | INT=1 |
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269 | # |
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270 | ########################################################################## |
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271 | # |
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272 | # Field 9 : wind stress along Y axis 2 (a->o tau 2) |
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273 | # |
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274 | COTAUYYV O_OTauy2 24 86400 6 flxat.nc <output_mode> |
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275 | tlmd vorc LAG=1800 |
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276 | P 0 P 2 |
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277 | INVERT CHECKIN MASK EXTRAP INTERP CHECKOUT |
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278 | # Reverse |
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279 | NORSUD WSTEST |
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280 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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281 | INT=1 |
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282 | # Mask value |
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283 | 888888. |
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284 | # Extrapolation method |
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285 | NINENN 2 1 1 |
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286 | # Interpolation method |
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287 | BICUBIPS Z SCALAR |
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288 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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289 | INT=1 |
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290 | # |
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291 | ########################################################################## |
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292 | # |
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293 | # Field 10 : wind stress along Z axis 2 (a->o tau 2) |
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294 | # |
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295 | COTAUZZV O_OTauz2 24 86400 6 flxat.nc <output_mode> |
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296 | tlmd vorc LAG=1800 |
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297 | P 0 P 2 |
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298 | INVERT CHECKIN MASK EXTRAP INTERP CHECKOUT |
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299 | # Reverse |
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300 | NORSUD WSTEST |
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301 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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302 | INT=1 |
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303 | # Mask value |
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304 | 888888. |
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305 | # Extrapolation method |
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306 | NINENN 2 1 1 |
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307 | # Interpolation method |
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308 | BICUBIPS Z SCALAR |
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309 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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310 | INT=1 |
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311 | ## |
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312 | ######################################################################### |
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313 | # |
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314 | # Field 11 : emp_ice = evap_ice - ( rain_ice + snow_ice ) (a->o flx 7) |
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315 | # |
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316 | COEMPSIC OSubMPre 25 86400 4 flxat.nc <output_mode> |
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317 | tlmd torc LAG=1800 |
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318 | P 0 P 2 |
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319 | INVERT CHECKIN MOZAIC CHECKOUT |
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320 | # Reverse |
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321 | NORSUD WSTEST |
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322 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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323 | INT=1 |
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324 | # Interpolation method ou parametres mozaic |
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325 | wa2o.flx 92 2 18 |
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326 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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327 | INT=1 |
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328 | # |
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329 | ########################################################################## |
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330 | # |
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331 | # Field 12 : sprecip = evap_ice - snow_ice (o->a flx 6) |
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332 | # |
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333 | CONESOPR OISubMSn 25 86400 4 flxat.nc <output_mode> |
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334 | tlmd torc LAG=1800 |
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335 | P 0 P 2 |
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336 | INVERT CHECKIN MOZAIC CHECKOUT |
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337 | # Reverse |
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338 | NORSUD WSTEST |
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339 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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340 | INT=1 |
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341 | # Interpolation method ou parametres mozaic |
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342 | wa2o.flx 92 2 18 |
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343 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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344 | INT=1 |
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345 | # |
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346 | ######################################################################### |
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347 | # |
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348 | # Field 13 : emp = emp_oce = evap_oce - ( rain_oce + snow_oce ) (a->o flx 9) |
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349 | # |
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350 | COEMPOCE OOEvaMPr 29 86400 4 flxat.nc <output_mode> |
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351 | tlmd torc LAG=1800 |
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352 | P 0 P 2 |
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353 | INVERT CHECKIN MOZAIC CHECKOUT |
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354 | # Reverse |
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355 | NORSUD WSTEST |
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356 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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357 | INT=1 |
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358 | # Interpolation method ou parametres mozaic |
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359 | wa2o.flx 92 2 18 |
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360 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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361 | INT=1 |
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362 | # |
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363 | ########################################################################## |
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364 | # |
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365 | # Field 14 : Evaporation Ice (a->o flx 8) |
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366 | # |
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367 | COICEVAP OIceEvap 41 86400 4 flxat.nc <output_mode> |
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368 | tlmd torc LAG=1800 |
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369 | P 0 P 2 |
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370 | INVERT CHECKIN MOZAIC CHECKOUT |
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371 | # Reverse |
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372 | NORSUD WSTEST |
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373 | # CHECKIN: indicate computation of global, land and sea field integrals. |
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374 | INT=1 |
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375 | # Interpolation method ou parametres mozaic |
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376 | wa2o.flx 92 2 18 |
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377 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
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378 | INT=1 |
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379 | # |
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380 | ########################################################################## |
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381 | # |
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382 | # Field 15 : solar heat flux on ocean (a->o flx 2) |
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383 | # |
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384 | COSHFOCE O_QsrOce 7 86400 4 flxat.nc <output_mode> |
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385 | tlmd torc LAG=1800 |
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386 | P 0 P 2 |
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387 | INVERT CHECKIN MOZAIC CHECKOUT |
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388 | # Reverse |
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389 | NORSUD WSTEST |
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390 | # CHECKIN: indicate computation of global, land and sea field integrals. |
---|
391 | INT=1 |
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392 | # Interpolation method or mozaic parameters |
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393 | wa2o.flx 92 2 18 |
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394 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
---|
395 | INT=1 |
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396 | # |
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397 | ######################################################################### |
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398 | # |
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399 | # Field 16 : Non solar heat flux on ocean (a->o flx 4) |
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400 | # |
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401 | CONSFOCE O_QnsOce 6 86400 4 flxat.nc <output_mode> |
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402 | tlmd torc LAG=1800 |
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403 | P 0 P 2 |
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404 | INVERT CHECKIN MOZAIC CHECKOUT |
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405 | # Reverse |
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406 | NORSUD WSTEST |
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407 | # CHECKIN: indicate computation of global, land and sea field integrals. |
---|
408 | INT=1 |
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409 | # Interpolation method ou parametres mozaic |
---|
410 | wa2o.flx 92 2 18 |
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411 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
---|
412 | INT=1 |
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413 | # |
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414 | ########################################################################### |
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415 | # |
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416 | # Field 17 : solar heat flux on ice (a->o flx 1) |
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417 | # |
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418 | COSHFICE O_QsrIce 7 86400 4 flxat.nc <output_mode> |
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419 | tlmd torc LAG=1800 |
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420 | P 0 P 2 |
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421 | INVERT CHECKIN MOZAIC CHECKOUT |
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422 | # Reverse |
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423 | NORSUD WSTEST |
---|
424 | # CHECKIN: indicate computation of global, land and sea field integrals. |
---|
425 | INT=1 |
---|
426 | # Interpolation method or mozaic parameters |
---|
427 | wa2o.flx 92 2 18 |
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428 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
---|
429 | INT=1 |
---|
430 | # |
---|
431 | ############################################################################ |
---|
432 | # |
---|
433 | # Field 18 : Non solar heat flux on ice (a->o flx 3) |
---|
434 | # |
---|
435 | CONSFICE O_QnsIce 6 86400 4 flxat.nc <output_mode> |
---|
436 | tlmd torc LAG=1800 |
---|
437 | P 0 P 2 |
---|
438 | INVERT CHECKIN MOZAIC CHECKOUT |
---|
439 | # Reverse |
---|
440 | NORSUD WSTEST |
---|
441 | # CHECKIN: indicate computation of global, land and sea field integrals. |
---|
442 | INT=1 |
---|
443 | # Interpolation method ou parametres mozaic |
---|
444 | wa2o.flx 92 2 18 |
---|
445 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
---|
446 | INT=1 |
---|
447 | # |
---|
448 | ############################################################################ |
---|
449 | # |
---|
450 | # Field 19 : Non solar heat flux derivative (o->a flx 5) |
---|
451 | # |
---|
452 | CODFLXDT O_dQnsdT 35 86400 4 flxat.nc <output_mode> |
---|
453 | tlmd torc LAG=1800 |
---|
454 | P 0 P 2 |
---|
455 | INVERT CHECKIN MOZAIC CHECKOUT |
---|
456 | # Reverse |
---|
457 | NORSUD WSTEST |
---|
458 | # CHECKIN: indicate computation of global, land and sea field integrals. |
---|
459 | INT=1 |
---|
460 | # Interpolation method ou parametres mozaic |
---|
461 | wa2o.flx 92 2 18 |
---|
462 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
---|
463 | INT=1 |
---|
464 | # |
---|
465 | ######################################################################### |
---|
466 | # |
---|
467 | # Field 20 : iceberg calving (a->o flx 12) |
---|
468 | # |
---|
469 | COCALVIN OCalving 36 86400 4 flxat.nc <output_mode> |
---|
470 | tlmd torc LAG=1800 |
---|
471 | P 0 P 2 |
---|
472 | INVERT CHECKIN MOZAIC CHECKOUT |
---|
473 | # Reverse |
---|
474 | NORSUD WSTEST |
---|
475 | # CHECKIN: indicate computation of global, land and sea field integrals. |
---|
476 | INT=1 |
---|
477 | # Interpolation method ou parametres mozaic |
---|
478 | wa2o.cal 98 5 47 |
---|
479 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
---|
480 | INT=1 |
---|
481 | # |
---|
482 | ######################################################################### |
---|
483 | # |
---|
484 | # Field 21 : liquid run-off (river + direct) (a->o flx 11) |
---|
485 | # |
---|
486 | COLIQRUN O_Runoff 32 86400 5 flxat.nc <output_mode> |
---|
487 | tlmd torc LAG=1800 |
---|
488 | P 0 P 2 |
---|
489 | INVERT CHECKIN MOZAIC BLASNEW CHECKOUT |
---|
490 | # Reverse |
---|
491 | NORSUD WSTEST |
---|
492 | # CHECKIN: indicate computation of global, land and sea field integrals. |
---|
493 | INT=1 |
---|
494 | # Interpolation method ou parametres mozaic |
---|
495 | wa2o.run 94 4 216 |
---|
496 | # change units from m/s to kg/s |
---|
497 | # weights convert from kg/s to kg/m^2/s |
---|
498 | 1000.0 0 |
---|
499 | # CHECKOUT: indicate computation of global, land and sea field integrals. |
---|
500 | INT=1 |
---|
501 | # |
---|
502 | ######################################################################### |
---|
503 | # |
---|
504 | $END |
---|