1 | !!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> |
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2 | !! NEMO/OPA Configuration namelist : used to overwrite defaults values defined in SHARED/namelist_ref |
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3 | !!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> |
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4 | ! |
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5 | !----------------------------------------------------------------------- |
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6 | &namrun ! parameters of the run |
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7 | !----------------------------------------------------------------------- |
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8 | cn_exp = "ORCA1" ! AUTO - experience name |
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9 | nn_it000 = 1 ! AUTO - first time step |
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10 | nn_itend = 5475 ! AUTO - last time step (std 5475) |
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11 | nn_date0 = 010101 ! AUTO - date at nit_0000 (format yyyymmdd) used if ln_rstart=F or (ln_rstart=T and nn_rstctl=0 or 1) |
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12 | nn_leapy = 0 ! AUTO - Leap year calendar (1) or not (0) |
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13 | ln_rstart = .false. ! AUTO - start from rest (F) or from a restart file (T) |
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14 | nn_rstctl = 0 ! AUTO - restart control => activated only if ln_rstart = T |
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15 | ! = 0 nn_date0 read in namelist ; nn_it000 : read in namelist |
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16 | ! = 1 nn_date0 read in namelist ; nn_it000 : check consistancy between namelist and restart |
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17 | ! = 2 nn_date0 read in restart ; nn_it000 : check consistancy between namelist and restart |
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18 | cn_ocerst_in = "restartopa" ! suffix of ocean restart name (input) |
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19 | cn_ocerst_out = "restart" ! suffix of ocean restart name (output) |
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20 | nn_istate = 0 ! output the initial state (1) or not (0) |
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21 | nn_stock = 5475 ! AUTO - frequency of creation of a restart file (modulo referenced to 1) |
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22 | nn_write = 5475 ! AUTO - frequency of write in the output file (modulo referenced to nn_it000) |
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23 | ln_mskland = .true. ! Masks land points in NetCDF outputs |
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24 | / |
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25 | !----------------------------------------------------------------------- |
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26 | &namcfg ! parameters of the configuration |
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27 | !----------------------------------------------------------------------- |
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28 | cp_cfg = "orca" ! name of the configuration |
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29 | jp_cfg = 1 ! resolution of the configuration |
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30 | jpidta = 362 ! 1st lateral dimension ( >= jpi ) |
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31 | jpjdta = 292 ! 2nd " " ( >= jpj ) |
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32 | jpkdta = 75 ! number of levels ( >= jpk ) |
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33 | jpiglo = 362 ! 1st dimension of global domain --> i =jpidta |
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34 | jpjglo = 292 ! 2nd - - --> j =jpjdta |
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35 | jpizoom = 1 ! left bottom (i,j) indices of the zoom |
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36 | jpjzoom = 1 ! in data domain indices |
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37 | jperio = 6 ! lateral cond. type (between 0 and 6) |
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38 | / |
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39 | !----------------------------------------------------------------------- |
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40 | &namzgr ! vertical coordinate |
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41 | !----------------------------------------------------------------------- |
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42 | / |
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43 | !----------------------------------------------------------------------- |
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44 | &namzgr_sco ! s-coordinate or hybrid z-s-coordinate |
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45 | !----------------------------------------------------------------------- |
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46 | rn_sbot_min = 300. ! minimum depth of s-bottom surface (>0) (m) |
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47 | rn_sbot_max = 5250. ! maximum depth of s-bottom surface (= ocean depth) (>0) (m) |
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48 | rn_theta = 6.0 ! surface control parameter (0<=rn_theta<=20) |
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49 | rn_thetb = 0.75 ! bottom control parameter (0<=rn_thetb<= 1) |
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50 | rn_rmax = 0.15 ! maximum cut-off r-value allowed (0<rn_max<1) |
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51 | rn_bb = 0.8 ! stretching with s-sigma |
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52 | rn_hc = 150.0 ! critical depth with s-sigma |
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53 | / |
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54 | !----------------------------------------------------------------------- |
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55 | &namdom ! space and time domain (bathymetry, mesh, timestep) |
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56 | !----------------------------------------------------------------------- |
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57 | nn_msh = 0 ! AUTO - create (=1) a mesh file or not (=0) |
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58 | rn_rdt = 3600. ! time step for the dynamics (and tracer if nn_acc=0) |
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59 | nn_closea = 1 ! remove (=0) or keep (=1) closed seas and lakes (ORCA) |
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60 | ! |
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61 | jphgr_msh = 0 ! type of horizontal mesh |
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62 | ppglam0 = 999999.0 ! longitude of first raw and column T-point (jphgr_msh = 1) |
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63 | ppgphi0 = 999999.0 ! latitude of first raw and column T-point (jphgr_msh = 1) |
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64 | ppe1_deg = 999999.0 ! zonal grid-spacing (degrees) |
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65 | ppe2_deg = 999999.0 ! meridional grid-spacing (degrees) |
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66 | ppe1_m = 999999.0 ! zonal grid-spacing (degrees) |
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67 | ppe2_m = 999999.0 ! meridional grid-spacing (degrees) |
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68 | ppsur = -3958.951371276829 ! ORCA r4, r2 and r05 coefficients |
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69 | ppa0 = 103.9530096000000 ! (default coefficients) |
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70 | ppa1 = 2.415951269000000 ! |
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71 | ppkth = 15.35101370000000 ! |
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72 | ppacr = 7.0 ! |
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73 | ppdzmin = 999999.0 ! Minimum vertical spacing |
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74 | pphmax = 999999.0 ! Maximum depth |
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75 | ldbletanh = .TRUE. ! Use/do not use double tanf function for vertical coordinates |
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76 | ppa2 = 100.7609285000000 ! Double tanh function parameters |
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77 | ppkth2 = 48.02989372000000 ! |
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78 | ppacr2 = 13.00000000000 ! |
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79 | rn_hmin = 20. |
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80 | / |
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81 | !----------------------------------------------------------------------- |
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82 | &namcrs ! Grid coarsening for dynamics output and/or |
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83 | ! passive tracer coarsened online simulations |
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84 | !----------------------------------------------------------------------- |
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85 | / |
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86 | !----------------------------------------------------------------------- |
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87 | &namtsd ! data : Temperature & Salinity |
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88 | !----------------------------------------------------------------------- |
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89 | ln_tsd_init = .true. ! Initialisation of ocean T & S with T &S input data (T) or not (F) |
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90 | ln_tsd_tradmp = .false. ! damping of ocean T & S toward T &S input data (T) or not (F) |
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91 | / |
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92 | !----------------------------------------------------------------------- |
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93 | &namsbc ! Surface Boundary Condition (surface module) |
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94 | !----------------------------------------------------------------------- |
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95 | nn_fsbc = 6 ! frequency of surface boundary condition computation |
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96 | ! (also = the frequency of sea-ice model call) |
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97 | ln_blk_core = .false. ! CORE bulk formulation (T => fill namsbc_core) |
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98 | ln_cpl = .true. ! Coupled formulation (T => fill namsbc_cpl ) |
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99 | ln_apr_dyn = .false. ! Patm gradient added in ocean & ice Eqs. (T => fill namsbc_apr ) |
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100 | nn_ice = 2 ! =0 no ice boundary condition , |
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101 | ! =1 use observed ice-cover , |
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102 | ! =2 ice-model used ("key_lim3" or "key_lim2") |
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103 | cn_iceflx = 'linear' ! AUTO - |
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104 | ! ="ave" - Average flux over all ice categories ("key_lim3") |
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105 | ! ="linear" - Linear repartition of fluxes over ice categories ("key_lim3") |
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106 | nn_ice_embd = 0 ! AUTO - |
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107 | ! =0 levitating ice (no mass exchange, concentration/dilution effect) |
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108 | ! =1 levitating ice with mass and salt exchange but no presure effect |
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109 | ! =2 embedded sea-ice (full salt and mass exchanges and pressure) |
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110 | ln_dm2dc = .false. ! daily mean to diurnal cycle on short wave |
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111 | ln_rnf = .false. ! runoffs (T => fill namsbc_rnf) |
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112 | ln_ssr = .false. ! Sea Surface Restoring on T and/or S (T => fill namsbc_ssr) |
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113 | nn_fwb = 0 ! FreshWater Budget: =0 unchecked |
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114 | ! =1 global mean of e-p-r set to zero at each time step |
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115 | / |
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116 | !----------------------------------------------------------------------- |
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117 | &namsbc_core ! namsbc_core CORE bulk formulae |
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118 | !----------------------------------------------------------------------- |
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119 | / |
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120 | !----------------------------------------------------------------------- |
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121 | &namtra_qsr ! penetrative solar radiation |
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122 | !----------------------------------------------------------------------- |
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123 | nn_chldta = 0 ! RGB : Chl data (=1) or cst value (=0) |
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124 | / |
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125 | !----------------------------------------------------------------------- |
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126 | &namsbc_rnf ! runoffs namelist surface boundary condition |
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127 | !----------------------------------------------------------------------- |
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128 | / |
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129 | !----------------------------------------------------------------------- |
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130 | &namsbc_ssr ! surface boundary condition : sea surface restoring |
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131 | !----------------------------------------------------------------------- |
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132 | / |
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133 | !----------------------------------------------------------------------- |
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134 | &namsbc_alb ! albedo parameters |
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135 | !----------------------------------------------------------------------- |
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136 | rn_cloud = 0.00 ! cloud correction to snow and ice albedo |
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137 | rn_albice = 0.5 ! albedo of melting ice in the arctic and antarctic |
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138 | rn_alphd = 0.80 ! coefficients for linear interpolation used to |
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139 | rn_alphc = 0.65 ! compute albedo between two extremes values |
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140 | rn_alphdi = 0.72 ! (Pyane, 1972) |
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141 | / |
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142 | !----------------------------------------------------------------------- |
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143 | &namsbc_cpl ! coupling parameters |
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144 | !----------------------------------------------------------------------- |
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145 | ! ! description ! multiple ! vector ! vector ! vector ! |
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146 | ! ! ! categories ! reference ! orientation ! grids ! |
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147 | ! send |
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148 | sn_snd_temp = 'weighted oce and ice' , 'no' , '' , '' , '' |
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149 | sn_snd_alb = 'weighted ice' , 'no' , '' , '' , '' |
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150 | sn_snd_thick = 'none' , 'no' , '' , '' , '' |
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151 | sn_snd_crt = 'mixed oce-ice' , 'no' , 'cartesian' , 'eastward-northward' , 'T' |
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152 | sn_snd_co2 = 'none' , 'no' , '' , '' , '' |
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153 | ! receive |
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154 | sn_rcv_w10m = 'coupled' , 'no' , '' , '' , '' |
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155 | sn_rcv_taumod = 'none' , 'no' , '' , '' , '' |
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156 | sn_rcv_tau = 'mixed oce-ice' , 'no' , 'cartesian' , 'eastward-northward', 'U,V' |
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157 | sn_rcv_dqnsdt = 'coupled' , 'no' , '' , '' , '' |
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158 | sn_rcv_qsr = 'conservative' , 'no' , '' , '' , '' |
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159 | sn_rcv_qns = 'conservative' , 'no' , '' , '' , '' |
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160 | sn_rcv_emp = 'conservative' , 'no' , '' , '' , '' |
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161 | sn_rcv_rnf = 'coupled' , 'no' , '' , '' , '' |
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162 | sn_rcv_cal = 'coupled' , 'no' , '' , '' , '' |
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163 | sn_rcv_co2 = 'none' , 'no' , '' , '' , '' |
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164 | / |
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165 | / |
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166 | !----------------------------------------------------------------------- |
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167 | &namberg ! iceberg parameters |
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168 | !----------------------------------------------------------------------- |
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169 | / |
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170 | !----------------------------------------------------------------------- |
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171 | &namlbc ! lateral momentum boundary condition |
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172 | !----------------------------------------------------------------------- |
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173 | rn_shlat = 0.0 ! shlat = 0 ! 0 < shlat < 2 ! shlat = 2 ! 2 < shlat |
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174 | / |
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175 | !----------------------------------------------------------------------- |
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176 | &namcla ! cross land advection |
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177 | !----------------------------------------------------------------------- |
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178 | / |
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179 | !----------------------------------------------------------------------- |
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180 | &nambfr ! bottom friction |
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181 | !----------------------------------------------------------------------- |
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182 | nn_bfr = 2 ! type of bottom friction : = 0 : free slip, = 1 : linear friction |
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183 | / |
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184 | !----------------------------------------------------------------------- |
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185 | &nambbc ! bottom temperature boundary condition |
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186 | !----------------------------------------------------------------------- |
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187 | ln_trabbc = .false. ! Apply a geothermal heating at the ocean bottom |
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188 | / |
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189 | !----------------------------------------------------------------------- |
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190 | &nambbl ! bottom boundary layer scheme |
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191 | !----------------------------------------------------------------------- |
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192 | / |
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193 | !----------------------------------------------------------------------- |
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194 | &nameos ! ocean physical parameters |
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195 | !----------------------------------------------------------------------- |
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196 | / |
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197 | !----------------------------------------------------------------------- |
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198 | &namtra_adv ! advection scheme for tracer |
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199 | !----------------------------------------------------------------------- |
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200 | / |
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201 | !----------------------------------------------------------------------- |
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202 | &namtra_adv_mle ! mixed layer eddy parametrisation (Fox-Kemper param) |
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203 | !----------------------------------------------------------------------- |
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204 | / |
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205 | !----------------------------------------------------------------------- |
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206 | &namtra_adv_mle ! mixed layer eddy parametrisation (Fox-Kemper param) |
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207 | !----------------------------------------------------------------------- |
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208 | / |
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209 | !---------------------------------------------------------------------------------- |
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210 | &namtra_ldf ! lateral diffusion scheme for tracers |
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211 | !---------------------------------------------------------------------------------- |
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212 | ln_traldf_grif = .true. ! griffies skew flux formulation (require "key_ldfslp") |
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213 | ln_traldf_gdia = .true. ! griffies operator strfn diagnostics (require "key_ldfslp") |
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214 | ln_botmix_grif = .true. ! griffies operator with lateral mixing on bottom (require "key_ldfslp") |
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215 | rn_aht_0 = 1000. ! horizontal eddy diffusivity for tracers [m2/s] |
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216 | rn_aeiv_0 = 1000. ! eddy induced velocity coefficient [m2/s] (require "key_traldf_eiv") |
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217 | / |
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218 | !----------------------------------------------------------------------- |
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219 | &namtra_dmp ! tracer: T & S newtonian damping |
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220 | !----------------------------------------------------------------------- |
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221 | ln_tradmp = .false. ! add a damping termn (T) or not (F) |
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222 | nn_zdmp = 1 ! vertical shape =0 damping throughout the water column |
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223 | |
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224 | / |
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225 | !----------------------------------------------------------------------- |
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226 | &namdyn_adv ! formulation of the momentum advection |
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227 | !----------------------------------------------------------------------- |
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228 | / |
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229 | !----------------------------------------------------------------------- |
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230 | &namdyn_vor ! option of physics/algorithm (not control by CPP keys) |
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231 | !----------------------------------------------------------------------- |
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232 | / |
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233 | !----------------------------------------------------------------------- |
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234 | &namdyn_hpg ! Hydrostatic pressure gradient option |
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235 | !----------------------------------------------------------------------- |
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236 | ln_dynhpg_imp = .true. ! time stepping: semi-implicit time scheme (T) |
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237 | ln_hpg_zps = .false. ! z-coordinate - partial steps (interpolation) |
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238 | ln_hpg_prj = .true. ! s-coordinate (Pressure Jacobian scheme) |
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239 | / |
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240 | !----------------------------------------------------------------------- |
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241 | &namdyn_ldf ! lateral diffusion on momentum |
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242 | !----------------------------------------------------------------------- |
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243 | rn_ahm_0_lap = 20000. ! horizontal laplacian eddy viscosity [m2/s] |
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244 | / |
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245 | !----------------------------------------------------------------------- |
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246 | &namzdf ! vertical physics |
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247 | !----------------------------------------------------------------------- |
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248 | / |
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249 | !----------------------------------------------------------------------- |
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250 | &namzdf_tke ! turbulent eddy kinetic dependent vertical diffusion ("key_zdftke") |
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251 | !----------------------------------------------------------------------- |
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252 | / |
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253 | !----------------------------------------------------------------------- |
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254 | &namzdf_ddm ! double diffusive mixing parameterization ("key_zdfddm") |
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255 | !----------------------------------------------------------------------- |
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256 | / |
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257 | !----------------------------------------------------------------------- |
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258 | &namzdf_tmx ! tidal mixing parameterization ("key_zdftmx") |
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259 | !----------------------------------------------------------------------- |
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260 | / |
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261 | !----------------------------------------------------------------------- |
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262 | &namsol ! elliptic solver / island / free surface |
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263 | !----------------------------------------------------------------------- |
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264 | / |
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265 | !----------------------------------------------------------------------- |
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266 | &nammpp ! Massively Parallel Processing ("key_mpp_mpi) |
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267 | !----------------------------------------------------------------------- |
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268 | jpni = 1 ! jpni number of processors following i (set automatically if < 1) |
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269 | jpnj = 29 ! jpnj number of processors following j (set automatically if < 1) |
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270 | jpnij = 29 ! jpnij number of local domains (set automatically if < 1) |
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271 | / |
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272 | !----------------------------------------------------------------------- |
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273 | &namctl ! Control prints & Benchmark |
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274 | !----------------------------------------------------------------------- |
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275 | / |
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276 | !----------------------------------------------------------------------- |
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277 | &namptr ! Poleward Transport Diagnostic |
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278 | !----------------------------------------------------------------------- |
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279 | ln_diaptr = .false. ! Poleward heat and salt transport (T) or not (F) |
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280 | ln_diaznl = .false. ! Add zonal means and meridional stream functions |
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281 | ln_subbas = .false. ! Atlantic/Pacific/Indian basins computation (T) or not |
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282 | ! (orca configuration only, need input basins mask file named "subbasins.nc" |
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283 | ln_ptrcomp = .false. ! Add decomposition : overturning |
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284 | nn_fptr = 1 ! Frequency of ptr computation [time step] |
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285 | nn_fwri = 15 ! AUTO - Frequency of ptr outputs [time step] |
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286 | / |
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287 | !----------------------------------------------------------------------- |
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288 | &nam_asminc ! assimilation increments ('key_asminc') |
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289 | !----------------------------------------------------------------------- |
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290 | / |
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291 | !----------------------------------------------------------------------- |
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292 | &namsbc_wave ! External fields from wave model |
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293 | !----------------------------------------------------------------------- |
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294 | / |
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295 | !----------------------------------------------------------------------- |
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296 | &namhsb ! Heat and salt budgets |
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297 | !----------------------------------------------------------------------- |
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298 | / |
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299 | !----------------------------------------------------------------------- |
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300 | &namdyn_nept ! Neptune effect (simplified: lateral and vertical diffusions removed) |
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301 | !----------------------------------------------------------------------- |
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302 | / |
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