1 | !!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> |
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2 | !! NEMO/OPA : Configuration namelist used to overwrite SHARED/1_namelist_ref |
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3 | !!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> |
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4 | !----------------------------------------------------------------------- |
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5 | &namrun ! parameters of the run |
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6 | !----------------------------------------------------------------------- |
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7 | cn_exp = "Nordic" ! experience name |
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8 | nn_it000 = 1 ! first time step |
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9 | nn_itend = 240 ! last time step |
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10 | ln_clobber = .true. ! clobber (overwrite) an existing file |
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11 | / |
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12 | !----------------------------------------------------------------------- |
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13 | &namcfg ! parameters of the configuration |
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14 | !----------------------------------------------------------------------- |
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15 | ln_read_cfg = .true. ! (=T) read the domain configuration file |
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16 | ! ! (=F) user defined configuration ==>>> see usrdef(_...) modules |
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17 | cn_domcfg = "ORCA_R017_zps_domcfg_agrif" ! domain configuration filename |
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18 | / |
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19 | !----------------------------------------------------------------------- |
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20 | &namdom ! space and time domain (bathymetry, mesh, timestep) |
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21 | !----------------------------------------------------------------------- |
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22 | ln_linssh = .false. ! =T linear free surface ==>> model level are fixed in time |
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23 | ! |
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24 | rn_rdt = 480. ! time step for the dynamics (and tracer if nn_acc=0) |
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25 | / |
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26 | !----------------------------------------------------------------------- |
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27 | &namcrs ! coarsened grid (for outputs and/or TOP) (ln_crs =T) |
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28 | !----------------------------------------------------------------------- |
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29 | / |
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30 | !----------------------------------------------------------------------- |
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31 | &namtsd ! data : Temperature & Salinity |
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32 | !----------------------------------------------------------------------- |
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33 | / |
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34 | !----------------------------------------------------------------------- |
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35 | &namsbc ! Surface Boundary Condition (surface module) |
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36 | !----------------------------------------------------------------------- |
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37 | nn_fsbc = 1 ! frequency of surface boundary condition computation |
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38 | ln_blk = .true. ! Bulk formulation (T => fill namsbc_blk ) |
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39 | ln_rnf = .false. ! runoffs (T => fill namsbc_rnf) |
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40 | ln_ssr = .false. ! Sea Surface Restoring on T and/or S (T => fill namsbc_ssr) |
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41 | nn_fwb = 0 ! FreshWater Budget: =0 unchecked |
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42 | / |
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43 | !----------------------------------------------------------------------- |
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44 | &namsbc_blk ! namsbc_blk Bulk formulae |
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45 | !----------------------------------------------------------------------- |
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46 | ! ! file name ! frequency (hours) ! variable ! time interp. ! clim ! 'yearly'/ ! weights ! rotation ! land/sea mask ! |
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47 | ! ! ! (if <0 months) ! name ! (logical) ! (T/F) ! 'monthly' ! filename ! pairing ! filename ! |
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48 | sn_wndi = 'u_10.15JUNE2009_fill' , 6 , 'U_10_MOD', .false. , .true. , 'yearly' , 'weights_core2_nordic2_bicub.nc' , 'Uwnd' , '' |
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49 | sn_wndj = 'v_10.15JUNE2009_fill' , 6 , 'V_10_MOD', .false. , .true. , 'yearly' , 'weights_core2_nordic2_bicub.nc' , 'Vwnd' , '' |
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50 | sn_qsr = 'ncar_rad.15JUNE2009_fill' , 24 , 'SWDN_MOD', .false. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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51 | sn_qlw = 'ncar_rad.15JUNE2009_fill' , 24 , 'LWDN_MOD', .false. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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52 | sn_tair = 't_10.15JUNE2009_fill' , 6 , 'T_10_MOD', .false. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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53 | sn_humi = 'q_10.15JUNE2009_fill' , 6 , 'Q_10_MOD', .false. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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54 | sn_prec = 'ncar_precip.15JUNE2009_fill', -1 , 'PRC_MOD1', .false. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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55 | sn_snow = 'ncar_precip.15JUNE2009_fill', -1 , 'SNOW' , .false. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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56 | sn_slp = 'slp.15JUNE2009_fill' , 6 , 'SLP' , .false. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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57 | sn_tdif = 'taudif_core' , 24 , 'taudif' , .false. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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58 | ! |
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59 | ! ! bulk algorithm : |
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60 | ln_NCAR = .true. ! "NCAR" algorithm (Large and Yeager 2008) |
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61 | / |
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62 | !----------------------------------------------------------------------- |
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63 | &namtra_qsr ! penetrative solar radiation |
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64 | !----------------------------------------------------------------------- |
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65 | ! ! file name ! frequency (hours) ! variable ! time interp. ! clim ! 'yearly'/ ! weights ! rotation ! |
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66 | ! ! ! (if <0 months) ! name ! (logical) ! (T/F) ! 'monthly' ! filename ! pairing ! |
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67 | sn_chl ='chlorophyll', -1 , 'CHLA' , .true. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' |
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68 | nn_chldta = 0 ! RGB : Chl data (=1) or cst value (=0) |
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69 | / |
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70 | !----------------------------------------------------------------------- |
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71 | &namsbc_rnf ! runoffs namelist surface boundary condition |
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72 | !----------------------------------------------------------------------- |
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73 | ! ! file name ! frequency (hours) ! variable ! time interp. ! clim ! 'yearly'/ ! weights ! rotation ! land/sea mask ! |
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74 | ! ! ! (if <0 months) ! name ! (logical) ! (T/F) ! 'monthly' ! filename ! pairing ! filename ! |
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75 | sn_rnf = 'runoff_core_monthly', -1 , 'sorunoff', .true. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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76 | sn_cnf = 'runoff_core_monthly', 0 , 'socoefr0', .false. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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77 | sn_s_rnf = 'runoffs' , 24 , 'rosaline', .true. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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78 | sn_t_rnf = 'runoffs' , 24 , 'rotemper', .true. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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79 | sn_dep_rnf = 'runoffs' , 0 , 'rodepth' , .false. , .true. , 'yearly' , 'weights_core2_nordic2_bilin.nc' , '' , '' |
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80 | / |
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81 | !----------------------------------------------------------------------- |
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82 | &namsbc_ssr ! surface boundary condition : sea surface restoring |
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83 | !----------------------------------------------------------------------- |
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84 | / |
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85 | !----------------------------------------------------------------------- |
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86 | &namsbc_alb ! albedo parameters |
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87 | !----------------------------------------------------------------------- |
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88 | / |
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89 | !----------------------------------------------------------------------- |
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90 | &namberg ! iceberg parameters |
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91 | !----------------------------------------------------------------------- |
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92 | ln_icebergs = .false. ! iceberg floats or not |
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93 | / |
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94 | !----------------------------------------------------------------------- |
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95 | &namlbc ! lateral momentum boundary condition |
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96 | !----------------------------------------------------------------------- |
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97 | / |
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98 | !----------------------------------------------------------------------- |
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99 | &namdrg ! top/bottom friction |
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100 | !----------------------------------------------------------------------- |
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101 | ln_non_lin = .true. |
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102 | / |
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103 | !----------------------------------------------------------------------- |
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104 | &namagrif ! AGRIF zoom ("key_agrif") |
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105 | !----------------------------------------------------------------------- |
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106 | ln_spc_dyn = .true. ! use 0 as special value for dynamics |
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107 | rn_sponge_tra = 480. ! coefficient for tracer sponge layer [m2/s] |
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108 | rn_sponge_dyn = 480. ! coefficient for dynamics sponge layer [m2/s] |
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109 | ln_chk_bathy = .FALSE. ! |
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110 | / |
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111 | !----------------------------------------------------------------------- |
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112 | &nambbc ! bottom temperature boundary condition (default: NO) |
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113 | !----------------------------------------------------------------------- |
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114 | ln_trabbc = .true. ! Apply a geothermal heating at the ocean bottom |
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115 | / |
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116 | !----------------------------------------------------------------------- |
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117 | &nambbl ! bottom boundary layer scheme (default: NO) |
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118 | !----------------------------------------------------------------------- |
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119 | ln_trabbl = .true. ! Bottom Boundary Layer parameterisation flag |
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120 | / |
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121 | !----------------------------------------------------------------------- |
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122 | &nameos ! ocean physical parameters |
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123 | !----------------------------------------------------------------------- |
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124 | ln_teos10 = .true. ! = Use TEOS-10 equation of state |
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125 | / |
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126 | !----------------------------------------------------------------------- |
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127 | &namtra_adv ! advection scheme for tracer (default: NO advection) |
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128 | !----------------------------------------------------------------------- |
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129 | ln_traadv_ubs = .true. ! UBS scheme |
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130 | nn_ubs_v = 2 ! =2 , vertical 2nd order FCT / COMPACT 4th order |
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131 | / |
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132 | !----------------------------------------------------------------------- |
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133 | &namtra_adv_mle ! mixed layer eddy parametrisation (Fox-Kemper param) |
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134 | !----------------------------------------------------------------------- |
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135 | / |
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136 | !---------------------------------------------------------------------------------- |
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137 | &namtra_ldf ! lateral diffusion scheme for tracers |
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138 | !---------------------------------------------------------------------------------- |
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139 | ! ! Operator type: |
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140 | ln_traldf_NONE = .true. ! No operator (no explicit advection) |
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141 | / |
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142 | !---------------------------------------------------------------------------------- |
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143 | &namtra_ldfeiv ! eddy induced velocity param. |
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144 | !---------------------------------------------------------------------------------- |
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145 | ln_ldfeiv =.false. ! use eddy induced velocity parameterization |
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146 | / |
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147 | !----------------------------------------------------------------------- |
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148 | &namtra_dmp ! tracer: T & S newtonian damping (default: NO) |
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149 | !----------------------------------------------------------------------- |
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150 | ln_tradmp = .false. ! add a damping termn (T) or not (F) |
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151 | / |
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152 | !----------------------------------------------------------------------- |
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153 | &namdyn_adv ! formulation of the momentum advection (default: No selection) |
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154 | !----------------------------------------------------------------------- |
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155 | ln_dynadv_ubs = .true. ! flux form - 3rd order UBS scheme |
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156 | / |
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157 | !----------------------------------------------------------------------- |
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158 | &namdyn_vor ! option of physics/algorithm (not control by CPP keys) |
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159 | !----------------------------------------------------------------------- |
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160 | ln_dynvor_ens = .true. ! energy conserving scheme |
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161 | / |
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162 | !----------------------------------------------------------------------- |
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163 | &namdyn_hpg ! Hydrostatic pressure gradient option |
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164 | !----------------------------------------------------------------------- |
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165 | ln_hpg_sco = .true. ! s-coordinate (standard jacobian formulation) |
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166 | / |
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167 | !----------------------------------------------------------------------- |
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168 | &namdyn_spg ! surface pressure gradient |
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169 | !----------------------------------------------------------------------- |
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170 | ln_dynspg_ts = .true. ! split-explicit free surface |
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171 | / |
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172 | !----------------------------------------------------------------------- |
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173 | &namdyn_ldf ! lateral diffusion on momentum |
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174 | !----------------------------------------------------------------------- |
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175 | ln_dynldf_NONE= .true. ! No operator (i.e. no explicit diffusion) |
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176 | / |
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177 | !!====================================================================== |
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178 | !! vertical physics namelists !! |
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179 | !!====================================================================== |
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180 | !----------------------------------------------------------------------- |
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181 | &namzdf ! vertical physics (default: NO selection) |
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182 | !----------------------------------------------------------------------- |
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183 | ln_zdftke = .true. ! Turbulent Kinetic Energy closure (T => fill namzdf_tke) |
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184 | ln_zdfevd = .true. ! Enhanced Vertical Diffusion scheme |
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185 | ln_zdfddm = .true. ! double diffusive mixing |
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186 | nn_havtb = 1 ! horizontal shape for avtb (=1) or not (=0) |
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187 | / |
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188 | !----------------------------------------------------------------------- |
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189 | &namzdf_tke ! turbulent eddy kinetic dependent vertical diffusion |
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190 | !----------------------------------------------------------------------- |
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191 | / |
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192 | !----------------------------------------------------------------------- |
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193 | &namzdf_iwm ! tidal mixing parameterization (ln_zdfiwm =T) |
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194 | !----------------------------------------------------------------------- |
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195 | / |
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196 | !----------------------------------------------------------------------- |
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197 | &nammpp ! Massively Parallel Processing ("key_mpp_mpi) |
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198 | !----------------------------------------------------------------------- |
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199 | / |
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200 | !----------------------------------------------------------------------- |
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201 | &namctl ! Control prints & Benchmark |
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202 | !----------------------------------------------------------------------- |
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203 | / |
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204 | !----------------------------------------------------------------------- |
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205 | &namptr ! Poleward Transport Diagnostic |
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206 | !----------------------------------------------------------------------- |
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207 | / |
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208 | !----------------------------------------------------------------------- |
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209 | &namhsb ! Heat and salt budgets (default F) |
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210 | !----------------------------------------------------------------------- |
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211 | / |
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212 | !----------------------------------------------------------------------- |
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213 | &namobs ! observation usage ('key_diaobs') |
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214 | !----------------------------------------------------------------------- |
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215 | / |
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216 | !----------------------------------------------------------------------- |
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217 | &nam_asminc ! assimilation increments ('key_asminc') |
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218 | !----------------------------------------------------------------------- |
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219 | / |
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