1 | !!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> |
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2 | !! NEMO/TOP1 : 1 - tracer definition (namtrc ) |
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3 | !! namelists 2 - dynamical tracer trends (namtrc_trd) |
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4 | !! 3 - tracer advection (namtrc_adv) |
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5 | !! 4 - tracer lateral diffusion (namtrc_ldf) |
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6 | !! 5 - tracer vertical physics (namtrc_zdf) |
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7 | !! 6 - tracer newtonian damping (namtrc_dmp) |
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8 | !>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> |
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9 | !''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''''' |
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10 | &namtrc ! tracers definition |
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11 | !,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,, |
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12 | nn_dttrc = 1 ! time step frequency for passive sn_tracers |
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13 | nn_writetrc = 1460 ! time step frequency for sn_tracer outputs |
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14 | ln_rsttr = .false. ! start from a restart file (T) or not (F) |
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15 | nn_rsttr = 0 ! restart control = 0 initial time step is not compared to the restart file value |
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16 | ! = 1 do not use the value in the restart file |
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17 | ! = 2 calendar parameters read in the restart file |
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18 | cn_trcrst_in = "restart_trc" ! suffix of pass. sn_tracer restart name (input) |
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19 | cn_trcrst_out = "restart_trc" ! suffix of pass. sn_tracer restart name (output) |
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20 | ! |
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21 | ! ! name ! title of the field ! units ! initial data ! save ! |
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22 | ! ! ! ! ! from file ! or not ! |
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23 | ! ! ! ! ! or not ! ! |
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24 | sn_tracer(1) = 'DIC ' , 'Dissolved inorganic Concentration ', 'mol-C/L' , .true. , .true. |
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25 | sn_tracer(2) = 'Alkalini' , 'Total Alkalinity Concentration ', 'eq/L ' , .true. , .true. |
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26 | sn_tracer(3) = 'O2 ' , 'Dissolved Oxygen Concentration ', 'mol-C/L' , .true. , .true. |
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27 | sn_tracer(4) = 'CaCO3 ' , 'Calcite Concentration ', 'mol-C/L' , .false. , .true. |
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28 | sn_tracer(5) = 'PO4 ' , 'Phosphate Concentration ', 'mol-C/L' , .true. , .true. |
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29 | sn_tracer(6) = 'POC ' , 'Small organic carbon Concentration ', 'mol-C/L' , .false. , .true. |
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30 | sn_tracer(7) = 'Si ' , 'Silicate Concentration ', 'mol-C/L' , .true. , .true. |
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31 | sn_tracer(8) = 'PHY ' , 'Nanophytoplankton Concentration ', 'mol-C/L' , .false. , .true. |
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32 | sn_tracer(9) = 'ZOO ' , 'Microzooplankton Concentration ', 'mol-C/L' , .false. , .true. |
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33 | sn_tracer(10) = 'DOC ' , 'Dissolved organic Concentration ', 'mol-C/L' , .false. , .true. |
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34 | sn_tracer(11) = 'PHY2 ' , 'Diatoms Concentration ', 'mol-C/L' , .false. , .true. |
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35 | sn_tracer(12) = 'ZOO2 ' , 'Mesozooplankton Concentration ', 'mol-C/L' , .false. , .true. |
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36 | sn_tracer(13) = 'BSi ' , 'Diatoms Silicate Concentration ', 'mol-C/L' , .false. , .true. |
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37 | sn_tracer(14) = 'Fer ' , 'Dissolved Iron Concentration ', 'mol-C/L' , .true. , .true. |
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38 | sn_tracer(15) = 'BFe ' , 'Big iron particles Concentration ', 'mol-C/L' , .false. , .true. |
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39 | sn_tracer(16) = 'GOC ' , 'Big organic carbon Concentration ', 'mol-C/L' , .false. , .true. |
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40 | sn_tracer(17) = 'SFe ' , 'Small iron particles Concentration ', 'mol-C/L' , .false. , .true. |
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41 | sn_tracer(18) = 'DFe ' , 'Diatoms iron Concentration ', 'mol-C/L' , .false. , .true. |
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42 | sn_tracer(19) = 'DSi ' , 'Sinking biogenic Silicate Concentration', 'mol-C/L' , .false. , .true. |
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43 | sn_tracer(20) = 'NFe ' , 'Nano iron Concentration ', 'mol-C/L' , .false. , .true. |
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44 | sn_tracer(21) = 'NCHL ' , 'Nano chlorophyl Concentration ', 'mol-C/L' , .false. , .true. |
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45 | sn_tracer(22) = 'DCHL ' , 'Diatoms chlorophyl Concentration ', 'mol-C/L' , .false. , .true. |
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46 | sn_tracer(23) = 'NO3 ' , 'Nitrates Concentration ', 'mol-C/L' , .true. , .true. |
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47 | sn_tracer(24) = 'NH4 ' , 'Ammonium Concentration ', 'mol-C/L' , .false. , .true. |
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48 | / |
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49 | !----------------------------------------------------------------------- |
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50 | &namtrc_adv ! advection scheme for passive tracer |
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51 | !----------------------------------------------------------------------- |
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52 | ln_trcadv_cen2 = .false. ! 2nd order centered scheme |
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53 | ln_trcadv_tvd = .false. ! TVD scheme |
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54 | ln_trcadv_muscl = .true. ! MUSCL scheme |
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55 | ln_trcadv_muscl2 = .false. ! MUSCL2 scheme + cen2 at boundaries |
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56 | ln_trcadv_ubs = .false. ! UBS scheme |
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57 | ln_trcadv_qck = .false. ! QUICKEST scheme |
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58 | / |
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59 | !----------------------------------------------------------------------- |
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60 | &namtrc_ldf ! lateral diffusion scheme for passive tracer |
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61 | !----------------------------------------------------------------------- |
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62 | ln_trcldf_diff = .true. ! performs lateral diffusion (T) or not (F) |
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63 | ! ! Type of the operator : |
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64 | ln_trcldf_lap = .true. ! laplacian operator |
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65 | ln_trcldf_bilap = .false. ! bilaplacian operator |
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66 | ! Direction of action : |
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67 | ln_trcldf_level = .false. ! iso-level |
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68 | ln_trcldf_hor = .false. ! horizontal (geopotential) (require "key_ldfslp" when ln_sco=T) |
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69 | ln_trcldf_iso = .true. ! iso-neutral (require "key_ldfslp") |
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70 | ! ! Coefficient |
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71 | rn_ahtrb_0 = 0. ! background eddy diffusivity for ldf_iso [m2/s] |
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72 | / |
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73 | !----------------------------------------------------------------------- |
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74 | &namtrc_zdf ! vertical physics |
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75 | !----------------------------------------------------------------------- |
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76 | ln_trczdf_exp = .false. ! split explicit (T) or implicit (F) time stepping |
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77 | nn_trczdf_exp = 3 ! number of sub-timestep for ln_trczdfexp=T |
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78 | / |
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79 | !----------------------------------------------------------------------- |
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80 | &namtrc_rad ! treatment of negative concentrations |
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81 | !----------------------------------------------------------------------- |
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82 | ln_trcrad = .true. ! artificially correct negative concentrations (T) or not (F) |
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83 | / |
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84 | !----------------------------------------------------------------------- |
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85 | &namtrc_dmp ! passive tracer newtonian damping ('key_tradmp && key_trcdmp') |
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86 | !----------------------------------------------------------------------- |
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87 | nn_hdmp_tr = -1 ! horizontal shape =-1, damping in Med and Red Seas only |
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88 | ! =XX, damping poleward of XX degrees (XX>0) |
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89 | ! + F(distance-to-coast) + Red and Med Seas |
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90 | nn_zdmp_tr = 1 ! vertical shape =0 damping throughout the water column |
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91 | ! =1 no damping in the mixing layer (kz criteria) |
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92 | ! =2 no damping in the mixed layer (rho crieria) |
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93 | rn_surf_tr = 50. ! surface time scale of damping [days] |
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94 | rn_bot_tr = 360. ! bottom time scale of damping [days] |
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95 | rn_dep_tr = 800. ! depth of transition between rn_surf and rn_bot [meters] |
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96 | nn_file_tr = 0 ! create a damping.coeff NetCDF file (=1) or not (=0) |
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97 | / |
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98 | !----------------------------------------------------------------------- |
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99 | &namtrc_trd ! diagnostics on tracer trends ('key_trdtrc') |
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100 | ! or mixed-layer trends ('key_trdmld_trc') |
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101 | !---------------------------------------------------------------------- |
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102 | nn_trd_trc = 5475 ! time step frequency and tracers trends |
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103 | nn_ctls_trc = 0 ! control surface type in mixed-layer trends (0,1 or n<jpk) |
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104 | rn_ucf_trc = 1 ! unit conversion factor (=1 -> /seconds ; =86400. -> /day) |
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105 | ln_trdmld_trc_restart = .false. ! restart for ML diagnostics |
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106 | ln_trdmld_trc_instant = .true. ! flag to diagnose trends of instantantaneous or mean ML T/S |
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107 | ln_trdtrc(1) = .true. |
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108 | ln_trdtrc(2) = .true. |
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109 | ln_trdtrc(3) = .false. |
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110 | ln_trdtrc(4) = .false. |
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111 | ln_trdtrc(5) = .false. |
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112 | ln_trdtrc(6) = .false. |
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113 | ln_trdtrc(7) = .false. |
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114 | ln_trdtrc(8) = .false. |
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115 | ln_trdtrc(9) = .false. |
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116 | ln_trdtrc(10) = .false. |
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117 | ln_trdtrc(11) = .false. |
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118 | ln_trdtrc(12) = .false. |
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119 | ln_trdtrc(13) = .false. |
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120 | ln_trdtrc(14) = .false. |
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121 | ln_trdtrc(15) = .false. |
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122 | ln_trdtrc(16) = .false. |
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123 | ln_trdtrc(17) = .false. |
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124 | ln_trdtrc(18) = .false. |
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125 | ln_trdtrc(19) = .false. |
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126 | ln_trdtrc(20) = .false. |
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127 | ln_trdtrc(21) = .false. |
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128 | ln_trdtrc(22) = .false. |
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129 | ln_trdtrc(23) = .true. |
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130 | ln_trdtrc(24) = .false. |
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131 | / |
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