1 | MODULE par_oce |
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2 | !!====================================================================== |
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3 | !! *** par_oce *** |
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4 | !! Ocean : set the ocean parameters |
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5 | !!====================================================================== |
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6 | !! History : OPA ! 1991 (Imbard, Levy, Madec) Original code |
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7 | !! NEMO 1.0 ! 2004-01 (G. Madec, J.-M. Molines) Free form and module |
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8 | !! 3.3 ! 2010-09 (C. Ethe) TRA-TRC merge: add jpts, jp_tem & jp_sal |
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9 | !!---------------------------------------------------------------------- |
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10 | USE par_kind ! kind parameters |
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11 | |
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12 | IMPLICIT NONE |
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13 | PUBLIC |
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14 | |
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15 | !!---------------------------------------------------------------------- |
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16 | !! Domain decomposition |
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17 | !!---------------------------------------------------------------------- |
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18 | !! if we dont use massively parallel computer (parameters jpni=jpnj=1) so jpiglo=jpi and jpjglo=jpj |
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19 | INTEGER, PUBLIC :: jpni !: number of processors following i |
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20 | INTEGER, PUBLIC :: jpnj !: number of processors following j |
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21 | INTEGER, PUBLIC :: jpnij !: nb of local domain = nb of processors ( <= jpni x jpnj ) |
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22 | INTEGER, PUBLIC, PARAMETER :: jpr2di = 0 !: number of columns for extra outer halo |
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23 | INTEGER, PUBLIC, PARAMETER :: jpr2dj = 0 !: number of rows for extra outer halo |
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24 | INTEGER, PUBLIC, PARAMETER :: jpreci = 1 !: number of columns for overlap |
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25 | INTEGER, PUBLIC, PARAMETER :: jprecj = 1 !: number of rows for overlap |
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26 | |
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27 | !! Ocean Domain sizes |
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28 | !! ------------------ |
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29 | !! data domain (jpidta,jpjdta) |
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30 | !! global or zoom domain (jpiglo,jpjglo) |
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31 | !! local domain ( jpi , jpj ) |
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32 | |
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33 | !#if defined key_orca_r4 |
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34 | ! !!--------------------------------------------------------------------- |
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35 | ! !! 'key_orca_r4' : global ocean : ORCA R4 |
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36 | ! !!--------------------------------------------------------------------- |
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37 | !# include "par_ORCA_R4.h90" |
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38 | !#elif defined key_orca_r2 |
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39 | ! !!--------------------------------------------------------------------- |
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40 | ! !! 'key_orca_r2' : global ocean : ORCA R4 |
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41 | ! !!--------------------------------------------------------------------- |
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42 | !# include "par_ORCA_R2.h90" |
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43 | !#elif defined key_orca_r1 |
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44 | ! !!--------------------------------------------------------------------- |
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45 | ! !! 'key_orca_r1' : global ocean : ORCA R1 |
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46 | ! !!--------------------------------------------------------------------- |
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47 | !# include "par_ORCA_R1.h90" |
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48 | !#elif defined key_orca_r05 |
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49 | ! !!--------------------------------------------------------------------- |
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50 | ! !! 'key_orca_r05' : global ocean : ORCA R05 |
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51 | ! !!--------------------------------------------------------------------- |
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52 | !# include "par_ORCA_R05.h90" |
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53 | !#elif defined key_orca_r025 |
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54 | ! !!--------------------------------------------------------------------- |
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55 | ! !! 'key_orca_r025' : global ocean : ORCA R025 |
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56 | ! !!--------------------------------------------------------------------- |
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57 | !# include "par_ORCA_R025.h90" |
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58 | !#elif defined key_eel_r2 |
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59 | ! !!--------------------------------------------------------------------- |
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60 | ! !! 'key_eel_r2' : channel : EEL R2 |
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61 | ! !!--------------------------------------------------------------------- |
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62 | !# include "par_EEL_R2.h90" |
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63 | !#elif defined key_eel_r5 |
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64 | ! !!--------------------------------------------------------------------- |
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65 | ! !! 'key_eel_r5' : channel : EEL R5 |
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66 | ! !!--------------------------------------------------------------------- |
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67 | !# include "par_EEL_R5.h90" |
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68 | !#elif defined key_eel_r6 |
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69 | ! !!--------------------------------------------------------------------- |
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70 | ! !! 'key_eel_r6' : channel : EEL R6 |
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71 | ! !!--------------------------------------------------------------------- |
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72 | !# include "par_EEL_R6.h90" |
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73 | !#elif defined key_gyre |
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74 | ! !!--------------------------------------------------------------------- |
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75 | ! !! 'key_gyre' : mid-latitude basin : GYRE |
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76 | ! !!--------------------------------------------------------------------- |
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77 | !# include "par_GYRE.h90" |
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78 | !#elif defined key_pomme_r025 |
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79 | ! !!--------------------------------------------------------------------- |
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80 | ! !! 'key_pomme_r025': regional basin : POMME025 |
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81 | ! !!--------------------------------------------------------------------- |
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82 | !# include "par_POMME_R025.h90" |
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83 | !#else |
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84 | !!--------------------------------------------------------------------- |
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85 | !! default option : small closed basin |
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86 | !!--------------------------------------------------------------------- |
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87 | CHARACTER(len=16), PUBLIC, PARAMETER :: cp_cfg = "default" !: name of the configuration |
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88 | INTEGER , PUBLIC, PARAMETER :: jp_cfg = 0 !: resolution of the configuration |
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89 | |
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90 | ! data size !!! * size of all input files * |
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91 | INTEGER, PUBLIC, PARAMETER :: jpidta = 10 !: 1st lateral dimension ( >= jpi ) |
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92 | INTEGER, PUBLIC, PARAMETER :: jpjdta = 12 !: 2nd " " ( >= jpj ) |
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93 | INTEGER, PUBLIC, PARAMETER :: jpkdta = 31 !: number of levels ( >= jpk ) |
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94 | |
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95 | ! global or zoom domain size !!! * computational domain * |
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96 | INTEGER, PUBLIC, PARAMETER :: jpiglo = jpidta !: 1st dimension of global domain --> i |
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97 | INTEGER, PUBLIC, PARAMETER :: jpjglo = jpjdta !: 2nd - - --> j |
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98 | INTEGER, PUBLIC :: jpk = jpkdta !: number of vertical levels |
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99 | ! zoom starting position |
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100 | INTEGER, PUBLIC, PARAMETER :: jpizoom = 1 !: left bottom (i,j) indices of the zoom |
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101 | INTEGER, PUBLIC, PARAMETER :: jpjzoom = 1 !: in data domain indices |
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102 | |
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103 | ! Domain characteristics |
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104 | INTEGER, PUBLIC, PARAMETER :: jperio = 0 !: lateral cond. type (between 0 and 6) |
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105 | ! ! = 0 closed ; = 1 cyclic East-West |
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106 | ! ! = 2 equatorial symmetric ; = 3 North fold T-point pivot |
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107 | ! ! = 4 cyclic East-West AND North fold T-point pivot |
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108 | ! ! = 5 North fold F-point pivot |
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109 | ! ! = 6 cyclic East-West AND North fold F-point pivot |
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110 | |
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111 | !! Values set to pp_not_used indicates that this parameter is not used in THIS config. |
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112 | !! Values set to pp_to_be_computed indicates that variables will be computed in domzgr |
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113 | REAL(wp), PUBLIC, PARAMETER :: pp_not_used = 999999._wp !: vertical grid parameter |
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114 | REAL(wp), PUBLIC, PARAMETER :: pp_to_be_computed = 999999._wp !: - - - |
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115 | |
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116 | |
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117 | !! Horizontal grid parameters for domhgr |
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118 | !! ===================================== |
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119 | INTEGER, PUBLIC, PARAMETER :: jphgr_msh = 0 !: type of horizontal mesh |
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120 | ! ! = 0 curvilinear coordinate on the sphere read in coordinate.nc |
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121 | ! ! = 1 geographical mesh on the sphere with regular grid-spacing |
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122 | ! ! = 2 f-plane with regular grid-spacing |
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123 | ! ! = 3 beta-plane with regular grid-spacing |
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124 | ! ! = 4 Mercator grid with T/U point at the equator |
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125 | |
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126 | REAL(wp) , PUBLIC, PARAMETER :: ppglam0 = 0.0_wp !: longitude of first raw and column T-point (jphgr_msh = 1) |
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127 | REAL(wp) , PUBLIC, PARAMETER :: ppgphi0 = -35.0_wp !: latitude of first raw and column T-point (jphgr_msh = 1) |
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128 | ! ! used for Coriolis & Beta parameters (jphgr_msh = 2 or 3) |
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129 | REAL(wp) , PUBLIC, PARAMETER :: ppe1_deg = 1.0_wp !: zonal grid-spacing (degrees) |
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130 | REAL(wp) , PUBLIC, PARAMETER :: ppe2_deg = 0.5_wp !: meridional grid-spacing (degrees) |
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131 | REAL(wp) , PUBLIC, PARAMETER :: ppe1_m = 5000.0_wp !: zonal grid-spacing (degrees) |
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132 | REAL(wp) , PUBLIC, PARAMETER :: ppe2_m = 5000.0_wp !: meridional grid-spacing (degrees) |
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133 | |
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134 | !! Vertical grid parameter for domzgr |
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135 | !! ================================== |
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136 | REAL(wp), PUBLIC, PARAMETER :: ppsur = -4762.96143546300_wp !: ORCA r4, r2 and r05 coefficients |
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137 | REAL(wp), PUBLIC, PARAMETER :: ppa0 = 255.58049070440_wp !: (default coefficients) |
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138 | REAL(wp), PUBLIC, PARAMETER :: ppa1 = 245.58132232490_wp !: |
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139 | REAL(wp), PUBLIC, PARAMETER :: ppkth = 21.43336197938_wp !: |
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140 | REAL(wp), PUBLIC, PARAMETER :: ppacr = 3.00000000000_wp !: |
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141 | ! |
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142 | ! If both ppa0 ppa1 and ppsur are specified to 0, then |
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143 | ! they are computed from ppdzmin, pphmax , ppkth, ppacr in dom_zgr |
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144 | REAL(wp), PUBLIC, PARAMETER :: ppdzmin = 10._wp !: Minimum vertical spacing |
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145 | REAL(wp), PUBLIC, PARAMETER :: pphmax = 5000._wp !: Maximum depth |
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146 | ! |
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147 | LOGICAL , PUBLIC, PARAMETER :: ldbletanh = .TRUE. !: Use/do not use double tanf function for vertical coordinates |
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148 | REAL(wp), PUBLIC, PARAMETER :: ppa2 = 100.760928500000_wp !: Double tanh function parameters |
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149 | REAL(wp), PUBLIC, PARAMETER :: ppkth2= 48.029893720000_wp !: |
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150 | REAL(wp), PUBLIC, PARAMETER :: ppacr2= 13.000000000000_wp !: |
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151 | ! |
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152 | !#endif |
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153 | |
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154 | |
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155 | !!--------------------------------------------------------------------- |
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156 | !! Active tracer parameters |
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157 | !!--------------------------------------------------------------------- |
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158 | INTEGER, PUBLIC, PARAMETER :: jpts = 2 !: Number of active tracers (=2, i.e. T & S ) |
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159 | INTEGER, PUBLIC, PARAMETER :: jp_tem = 1 !: indice for temperature |
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160 | INTEGER, PUBLIC, PARAMETER :: jp_sal = 2 !: indice for salinity |
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161 | |
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162 | !!--------------------------------------------------------------------- |
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163 | !! Domain Matrix size (if AGRIF, they are not all parameters) |
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164 | !!--------------------------------------------------------------------- |
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165 | #if defined key_agrif |
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166 | INTEGER, PUBLIC, PARAMETER :: nbghostcells = 1 !: number of ghost cells |
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167 | INTEGER, PUBLIC :: nbcellsx = jpiglo - 2 - 2*nbghostcells !: number of cells in i-direction |
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168 | INTEGER, PUBLIC :: nbcellsy = jpjglo - 2 - 2*nbghostcells !: number of cells in j-direction |
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169 | ! |
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170 | #endif |
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171 | INTEGER, PUBLIC :: jpi ! = ( jpiglo-2*jpreci + (jpni-1) ) / jpni + 2*jpreci !: first dimension |
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172 | INTEGER, PUBLIC :: jpj ! = ( jpjglo-2*jprecj + (jpnj-1) ) / jpnj + 2*jprecj !: second dimension |
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173 | INTEGER, PUBLIC :: jpk ! = jpkdta !: third dimension |
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174 | INTEGER, PUBLIC :: jpim1 ! = jpi-1 !: inner domain indices |
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175 | INTEGER, PUBLIC :: jpjm1 ! = jpj-1 !: - - - |
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176 | INTEGER, PUBLIC :: jpkm1 ! = jpk-1 !: - - - |
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177 | INTEGER, PUBLIC :: jpij ! = jpi*jpj !: jpi x jpj |
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178 | |
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179 | !!--------------------------------------------------------------------- |
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180 | !! Optimization/control flags |
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181 | !!--------------------------------------------------------------------- |
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182 | #if defined key_esopa |
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183 | LOGICAL, PUBLIC, PARAMETER :: lk_esopa = .TRUE. !: flag to activate the all options |
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184 | #else |
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185 | LOGICAL, PUBLIC, PARAMETER :: lk_esopa = .FALSE. !: flag to activate the all options |
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186 | #endif |
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187 | |
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188 | #if defined key_vectopt_loop |
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189 | LOGICAL, PUBLIC, PARAMETER :: lk_vopt_loop = .TRUE. !: vector optimization flag |
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190 | #else |
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191 | LOGICAL, PUBLIC, PARAMETER :: lk_vopt_loop = .FALSE. !: vector optimization flag |
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192 | #endif |
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193 | |
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194 | !!---------------------------------------------------------------------- |
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195 | !! NEMO/OPA 3.3 , NEMO Consortium (2010) |
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196 | !! $Id: par_oce.F90 2715 2011-03-30 15:58:35Z rblod $ |
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197 | !! Software governed by the CeCILL licence (NEMOGCM/NEMO_CeCILL.txt) |
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198 | !!====================================================================== |
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199 | END MODULE par_oce |
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