[3875] | 1 | !!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> |
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[7467] | 2 | !! NEMO/OPA Configuration namelist : used to overwrite defaults values defined in SHARED/namelist_ref |
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[3875] | 3 | !!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> |
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[7467] | 4 | ! |
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[3875] | 5 | !----------------------------------------------------------------------- |
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[9490] | 6 | &namusr_def ! Wetting and Drying TEST CASE |
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[7467] | 7 | !----------------------------------------------------------------------- |
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[9490] | 8 | rn_dx = 1000.0 ! horizontal resolution |
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| 9 | rn_dz = 1.0 ! vertical resolution |
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| 10 | nn_wad_test = 1 ! ??? |
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[7467] | 11 | / |
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| 12 | !----------------------------------------------------------------------- |
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[3875] | 13 | &namrun ! parameters of the run |
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| 14 | !----------------------------------------------------------------------- |
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[7412] | 15 | cn_exp = "WAD" ! experience name |
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[4044] | 16 | nn_it000 = 1 ! first time step |
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[9169] | 17 | nn_itend = 3840 ! last time step |
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| 18 | !nn_itend = 6 ! last time step |
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[3875] | 19 | nn_leapy = 30 ! Leap year calendar (1) or not (0) |
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[7412] | 20 | nn_stock = 48000 ! frequency of creation of a restart file (modulo referenced to 1) |
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[4990] | 21 | |
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| 22 | ln_clobber = .true. ! clobber (overwrite) an existing file |
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[7412] | 23 | nn_istate = 0 ! output the initial state (1) or not (0) |
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[3875] | 24 | / |
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[3973] | 25 | !----------------------------------------------------------------------- |
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[9356] | 26 | &namcfg ! parameters of the configuration (default: user defined GYRE) |
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[3973] | 27 | !----------------------------------------------------------------------- |
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[7467] | 28 | ln_read_cfg = .false. ! (=T) read the domain configuration file |
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| 29 | ! ! (=F) user defined configuration ==>>> see usrdef(_...) modules |
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[7527] | 30 | ln_write_cfg= .true. ! (=T) create the domain configuration file |
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[3973] | 31 | / |
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| 32 | !----------------------------------------------------------------------- |
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[9356] | 33 | &namdom ! time and space domain |
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[3875] | 34 | !----------------------------------------------------------------------- |
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[7467] | 35 | ln_linssh = .false. ! =T linear free surface ==>> model level are fixed in time |
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| 36 | ! |
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[9169] | 37 | ln_meshmask = .true. ! create (>0) a mesh file or not (=0) |
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[7467] | 38 | rn_rdt = 18. ! time step for the dynamics |
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[3875] | 39 | / |
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| 40 | !----------------------------------------------------------------------- |
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[9490] | 41 | &namwad ! Wetting and Drying (WaD) (default: NO) |
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[9356] | 42 | !----------------------------------------------------------------------- |
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[9490] | 43 | ln_wd_il = .false ! T/F activation of iterative limiter |
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| 44 | ln_wd_dl = .true. ! T/F activation of directional limiter |
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| 45 | ln_wd_dl_bc = .true. ! T/F Directional limiteer Baroclinic option |
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| 46 | ln_wd_dl_rmp= .true. ! T/F Turn on directional limiter ramp |
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| 47 | rn_wdmin0 = 0.30 ! depth at which WaD starts |
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| 48 | rn_wdmin1 = 0.2 ! Minimum wet depth on dried cells |
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| 49 | rn_wdmin2 = 0.0001 ! Tolerance of min wet depth on dried cells |
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| 50 | rn_wdld = 2.5 ! Land elevation below which WaD is allowed |
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| 51 | nn_wdit = 20 ! Max iterations for WaD limiter |
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[9356] | 52 | / |
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[9490] | 53 | |
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| 54 | !!====================================================================== |
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| 55 | !! *** Surface Boundary Condition namelists *** !! |
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| 56 | !!====================================================================== |
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| 57 | ! |
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[9356] | 58 | !----------------------------------------------------------------------- |
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[3875] | 59 | &namsbc ! Surface Boundary Condition (surface module) |
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| 60 | !----------------------------------------------------------------------- |
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| 61 | nn_fsbc = 1 ! frequency of surface boundary condition computation |
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[4990] | 62 | ! ! (also = the frequency of sea-ice model call) |
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[9019] | 63 | ln_usr = .true. ! analytical formulation (T => check usrdef_sbc) |
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[3875] | 64 | nn_ice = 0 ! =0 no ice boundary condition , |
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[9019] | 65 | ln_rnf = .false. ! runoffs (T => fill namsbc_rnf ) |
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| 66 | ln_ssr = .false. ! Sea Surface Restoring on T and/or S (T => fill namsbc_ssr ) |
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[3875] | 67 | nn_fwb = 0 ! FreshWater Budget: =0 unchecked |
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| 68 | / |
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| 69 | !----------------------------------------------------------------------- |
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[9356] | 70 | &namsbc_flx ! surface boundary condition : flux formulation |
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| 71 | !----------------------------------------------------------------------- |
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| 72 | / |
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| 73 | !----------------------------------------------------------------------- |
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| 74 | &namsbc_blk ! namsbc_blk generic Bulk formula (ln_blk =T) |
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| 75 | !----------------------------------------------------------------------- |
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| 76 | / |
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| 77 | !----------------------------------------------------------------------- |
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[5407] | 78 | &namsbc_cpl ! coupled ocean/atmosphere model ("key_oasis3") |
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[3875] | 79 | !----------------------------------------------------------------------- |
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| 80 | / |
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| 81 | !----------------------------------------------------------------------- |
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[9356] | 82 | &namsbc_sas ! Stand-Alone Surface boundary condition |
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[3875] | 83 | !----------------------------------------------------------------------- |
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[9356] | 84 | / |
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| 85 | !----------------------------------------------------------------------- |
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| 86 | &namsbc_iif ! Ice-IF : use observed ice cover (nn_ice = 1) |
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| 87 | !----------------------------------------------------------------------- |
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| 88 | / |
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| 89 | !----------------------------------------------------------------------- |
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| 90 | &namtra_qsr ! penetrative solar radiation (ln_traqsr =T) |
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| 91 | !----------------------------------------------------------------------- |
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[3875] | 92 | ln_qsr_rgb = .false. ! RGB (Red-Green-Blue) light penetration |
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| 93 | ln_qsr_2bd = .true. ! 2 bands light penetration |
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| 94 | nn_chldta = 0 ! RGB : Chl data (=1) or cst value (=0) |
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| 95 | / |
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| 96 | !----------------------------------------------------------------------- |
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[9356] | 97 | &namsbc_rnf ! runoffs namelist surface boundary condition (ln_rnf =T) |
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[3875] | 98 | !----------------------------------------------------------------------- |
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| 99 | ln_rnf_mouth = .false. ! specific treatment at rivers mouths |
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| 100 | / |
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| 101 | !----------------------------------------------------------------------- |
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[9356] | 102 | &namsbc_isf ! Top boundary layer (ISF) (nn_isf >0) |
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[3875] | 103 | !----------------------------------------------------------------------- |
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| 104 | / |
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| 105 | !----------------------------------------------------------------------- |
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[9356] | 106 | &namsbc_iscpl ! land ice / ocean coupling option |
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[3875] | 107 | !----------------------------------------------------------------------- |
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[9356] | 108 | / |
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| 109 | !----------------------------------------------------------------------- |
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| 110 | &namsbc_apr ! Atmospheric pressure used as ocean forcing (ln_apr_dyn =T) |
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| 111 | !----------------------------------------------------------------------- |
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| 112 | / |
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| 113 | !----------------------------------------------------------------------- |
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| 114 | &namsbc_ssr ! surface boundary condition : sea surface restoring (ln_ssr =T) |
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| 115 | !----------------------------------------------------------------------- |
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[3875] | 116 | nn_sssr = 0 ! add a damping term in the surface freshwater flux (=2) |
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| 117 | rn_deds = -27.7 ! magnitude of the damping on salinity [mm/day] |
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| 118 | ln_sssr_bnd = .false. ! flag to bound erp term (associated with nn_sssr=2) |
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| 119 | / |
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| 120 | !----------------------------------------------------------------------- |
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[9356] | 121 | &namsbc_wave ! External fields from wave model (ln_wave=T) |
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[3875] | 122 | !----------------------------------------------------------------------- |
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| 123 | / |
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| 124 | !----------------------------------------------------------------------- |
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[9356] | 125 | &namberg ! iceberg parameters (default: No iceberg) |
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[3875] | 126 | !----------------------------------------------------------------------- |
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| 127 | / |
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| 128 | !----------------------------------------------------------------------- |
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| 129 | &namlbc ! lateral momentum boundary condition |
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| 130 | !----------------------------------------------------------------------- |
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| 131 | rn_shlat = 0. ! shlat = 0 ! 0 < shlat < 2 ! shlat = 2 ! 2 < shlat |
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| 132 | / |
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| 133 | !----------------------------------------------------------------------- |
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| 134 | &namagrif ! AGRIF zoom ("key_agrif") |
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| 135 | !----------------------------------------------------------------------- |
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| 136 | / |
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| 137 | !----------------------------------------------------------------------- |
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[9356] | 138 | &nam_tide ! tide parameters |
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[3875] | 139 | !----------------------------------------------------------------------- |
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| 140 | / |
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| 141 | !----------------------------------------------------------------------- |
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[9356] | 142 | &nambdy ! unstructured open boundaries |
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[3875] | 143 | !----------------------------------------------------------------------- |
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[7609] | 144 | ln_bdy = .false. |
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[7412] | 145 | nb_bdy = 0 ! number of open boundary sets |
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| 146 | ln_coords_file = .false. ! =T : read bdy coordinates from file |
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| 147 | cn_coords_file = 'coordinates.bdy.nc' ! bdy coordinates files |
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| 148 | ln_mask_file = .false. ! =T : read mask from file |
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| 149 | cn_mask_file = '' ! name of mask file (if ln_mask_file=.TRUE.) |
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| 150 | cn_dyn2d = 'flather' ! |
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| 151 | nn_dyn2d_dta = 1 ! = 0, bdy data are equal to the initial state |
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| 152 | ! = 1, bdy data are read in 'bdydata .nc' files |
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| 153 | ! = 2, use tidal harmonic forcing data from files |
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| 154 | ! = 3, use external data AND tidal harmonic forcing |
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| 155 | cn_dyn3d = 'none' ! |
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| 156 | nn_dyn3d_dta = 0 ! = 0, bdy data are equal to the initial state |
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| 157 | ! = 1, bdy data are read in 'bdydata .nc' files |
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| 158 | cn_tra = 'frs' ! |
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| 159 | nn_tra_dta = 0 ! = 0, bdy data are equal to the initial state |
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| 160 | ! = 1, bdy data are read in 'bdydata .nc' files |
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| 161 | cn_ice_lim = 'none' ! |
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| 162 | nn_ice_lim_dta = 0 ! = 0, bdy data are equal to the initial state |
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| 163 | ! = 1, bdy data are read in 'bdydata .nc' files |
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| 164 | rn_ice_tem = 270. ! lim3 only: arbitrary temperature of incoming sea ice |
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| 165 | rn_ice_sal = 10. ! lim3 only: -- salinity -- |
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| 166 | rn_ice_age = 30. ! lim3 only: -- age -- |
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| 167 | |
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| 168 | ln_tra_dmp =.false. ! open boudaries conditions for tracers |
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| 169 | ln_dyn3d_dmp =.false. ! open boundary condition for baroclinic velocities |
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| 170 | rn_time_dmp = 1. ! Damping time scale in days |
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| 171 | rn_time_dmp_out = 1. ! Outflow damping time scale |
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| 172 | nn_rimwidth = 10 ! width of the relaxation zone |
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| 173 | ln_vol = .false. ! total volume correction (see nn_volctl parameter) |
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| 174 | nn_volctl = 1 ! = 0, the total water flux across open boundaries is zero |
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[3875] | 175 | / |
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| 176 | !----------------------------------------------------------------------- |
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[7412] | 177 | &nambdy_index |
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[3875] | 178 | !----------------------------------------------------------------------- |
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[7412] | 179 | ctypebdy = 'E' |
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[7609] | 180 | nbdyind = 50 |
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[7412] | 181 | nbdybeg = 1 |
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| 182 | nbdyend = 34 |
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| 183 | !ctypebdy = 'W' |
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| 184 | !nbdyind = 2 |
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| 185 | !nbdybeg = 1 |
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| 186 | !nbdyend = 34 |
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[3875] | 187 | / |
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| 188 | !----------------------------------------------------------------------- |
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[9356] | 189 | &nambdy_dta ! open boundaries - external data |
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[7412] | 190 | !----------------------------------------------------------------------- |
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| 191 | ! ! file name ! frequency (hours) ! variable ! time interp. ! clim ! 'yearly'/ ! weights ! rotation ! land/sea mask ! |
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| 192 | ! ! ! (if <0 months) ! name ! (logical) ! (T/F ) ! 'monthly' ! filename ! pairing ! filename ! |
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[7609] | 193 | bn_ssh = 'bdyssh_tc7' , 1 , 'sshbdy', .true. , .true. , 'daily' , '' , '' , '' |
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| 194 | bn_u2d = 'bdyuv_tc7' , 1 , 'ubdy' , .true. , .true. , 'daily' , '' , '' , '' |
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| 195 | bn_v2d = 'bdyuv_tc7' , 1 , 'vbdy' , .true. , .true. , 'daily' , '' , '' , '' |
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[7412] | 196 | cn_dir = './' ! root directory for the location of the bulk files |
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| 197 | ln_full_vel = .false. ! |
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| 198 | / |
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| 199 | !----------------------------------------------------------------------- |
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[9356] | 200 | &nambdy_tide ! tidal forcing at open boundaries |
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[3875] | 201 | !----------------------------------------------------------------------- |
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| 202 | / |
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| 203 | !----------------------------------------------------------------------- |
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[9356] | 204 | &namdrg ! top/bottom drag coefficient (default: NO selection) |
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[3875] | 205 | !----------------------------------------------------------------------- |
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[9019] | 206 | ln_loglayer= .false. ! logarithmic drag: Cd = vkarmn/log(z/z0) |U| |
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[3875] | 207 | / |
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| 208 | !----------------------------------------------------------------------- |
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[9356] | 209 | &namdrg_top ! TOP friction (ln_isfcav=T) |
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[9019] | 210 | !----------------------------------------------------------------------- |
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[9356] | 211 | / |
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| 212 | !----------------------------------------------------------------------- |
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| 213 | &namdrg_bot ! BOTTOM friction |
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| 214 | !----------------------------------------------------------------------- |
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[9019] | 215 | rn_Cd0 = 1.e-4 ! drag coefficient [-] |
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| 216 | rn_Uc0 = 0.1 ! ref. velocity [m/s] (linear drag=Cd0*Uc0) |
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| 217 | rn_Cdmax = 1.e-4 ! drag value maximum [-] (logarithmic drag) |
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| 218 | rn_ke0 = 2.5e-3 ! background kinetic energy [m2/s2] (non-linear cases) |
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| 219 | rn_z0 = 3.e-3 ! roughness [m] (ln_loglayer=T) |
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| 220 | ln_boost = .false. ! =T regional boost of Cd0 ; =F constant |
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| 221 | rn_boost= 50. ! local boost factor [-] |
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| 222 | / |
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| 223 | !----------------------------------------------------------------------- |
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[9356] | 224 | &nambbc ! bottom temperature boundary condition (default: NO) |
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[3875] | 225 | !----------------------------------------------------------------------- |
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| 226 | ln_trabbc = .false. ! Apply a geothermal heating at the ocean bottom |
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| 227 | nn_geoflx = 0 ! geothermal heat flux: = 0 no flux |
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| 228 | / |
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| 229 | !----------------------------------------------------------------------- |
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[9356] | 230 | &nambbl ! bottom boundary layer scheme (default: NO) |
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[3875] | 231 | !----------------------------------------------------------------------- |
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| 232 | / |
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| 233 | !----------------------------------------------------------------------- |
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[9356] | 234 | &nameos ! ocean Equation Of Seawater (default: NO) |
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[3875] | 235 | !----------------------------------------------------------------------- |
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[7467] | 236 | ln_teos10 = .false. ! = Use TEOS-10 equation of state |
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| 237 | ln_eos80 = .false. ! = Use EOS80 equation of state |
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| 238 | ln_seos = .true. ! = Use simplified equation of state (S-EOS) |
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| 239 | ! |
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| 240 | ! ! S-EOS coefficients (ln_seos=T): |
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[4990] | 241 | ! ! rd(T,S,Z)*rau0 = -a0*(1+.5*lambda*dT+mu*Z+nu*dS)*dT+b0*dS |
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| 242 | rn_a0 = 1.6550e-1 ! thermal expension coefficient (nn_eos= 1) |
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| 243 | rn_b0 = 7.6554e-1 ! saline expension coefficient (nn_eos= 1) |
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| 244 | rn_lambda1 = 5.9520e-2 ! cabbeling coeff in T^2 (=0 for linear eos) |
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| 245 | rn_lambda2 = 7.4914e-4 ! cabbeling coeff in S^2 (=0 for linear eos) |
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| 246 | rn_mu1 = 1.4970e-4 ! thermobaric coeff. in T (=0 for linear eos) |
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| 247 | rn_mu2 = 1.1090e-5 ! thermobaric coeff. in S (=0 for linear eos) |
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| 248 | rn_nu = 2.4341e-3 ! cabbeling coeff in T*S (=0 for linear eos) |
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| 249 | !!org GYRE rn_alpha = 2.0e-4 ! thermal expension coefficient (nn_eos= 1 or 2) |
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| 250 | !!org GYRE rn_beta = 7.7e-4 ! saline expension coefficient (nn_eos= 2) |
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| 251 | !!org caution now a0 = alpha / rau0 with rau0 = 1026 |
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[3875] | 252 | / |
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| 253 | !----------------------------------------------------------------------- |
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[9356] | 254 | &namtra_adv ! advection scheme for tracer (default: NO selection) |
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[3875] | 255 | !----------------------------------------------------------------------- |
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[9019] | 256 | ln_traadv_NONE= .false. ! No tracer advection |
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[7412] | 257 | ln_traadv_cen = .false. ! 2nd order centered scheme |
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| 258 | ln_traadv_mus = .false. ! MUSCL scheme |
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[5836] | 259 | ln_traadv_fct = .true. ! FCT scheme |
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| 260 | nn_fct_h = 2 ! =2/4, horizontal 2nd / 4th order |
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| 261 | nn_fct_v = 2 ! =2/4, vertical 2nd / COMPACT 4th order |
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[3875] | 262 | / |
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[4253] | 263 | !----------------------------------------------------------------------- |
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[9356] | 264 | &namtra_ldf ! lateral diffusion scheme for tracers (default: NO selection) |
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| 265 | !----------------------------------------------------------------------- |
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[5836] | 266 | ! ! Operator type: |
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| 267 | ln_traldf_lap = .true. ! laplacian operator |
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| 268 | ln_traldf_blp = .false. ! bilaplacian operator |
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| 269 | ! ! Direction of action: |
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| 270 | ln_traldf_lev = .false. ! iso-level |
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| 271 | ln_traldf_hor = .false. ! horizontal (geopotential) |
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| 272 | ln_traldf_iso = .true. ! iso-neutral |
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| 273 | ln_traldf_triad = .false. ! iso-neutral using Griffies triads |
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| 274 | ! |
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| 275 | ! ! iso-neutral options: |
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| 276 | ln_traldf_msc = .false. ! Method of Stabilizing Correction (both operators) |
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| 277 | rn_slpmax = 0.01 ! slope limit (both operators) |
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| 278 | ln_triad_iso = .false. ! pure horizontal mixing in ML (triad only) |
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| 279 | rn_sw_triad = 1 ! =1 switching triad ; =0 all 4 triads used (triad only) |
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| 280 | ln_botmix_triad = .false. ! lateral mixing on bottom (triad only) |
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| 281 | ! |
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| 282 | ! ! Coefficients: |
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| 283 | nn_aht_ijk_t = 0 ! space/time variation of eddy coef |
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[9490] | 284 | ! ! = 0 constant |
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| 285 | ! ! time invariant coefficients : aht = 1/2 Uv*Lv (lap case) |
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| 286 | ! ! or = 1/12 Uv*Lv^3 (blp case) |
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| 287 | rn_Ud = 0.2 ! lateral diffusive velocity [m/s] (nn_aht_ijk_t= 0, 10, 20, 30) |
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| 288 | rn_Ld = 10.e+3 ! lateral diffusive length [m] (nn_aht_ijk_t= 0, 10) |
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[3875] | 289 | / |
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[9490] | 290 | |
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| 291 | !!====================================================================== |
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| 292 | !! *** Dynamics namelists *** !! |
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| 293 | !!====================================================================== |
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| 294 | ! |
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[9356] | 295 | !----------------------------------------------------------------------- |
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| 296 | &nam_vvl ! vertical coordinate options (default: z-star) |
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| 297 | !----------------------------------------------------------------------- |
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| 298 | / |
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| 299 | !----------------------------------------------------------------------- |
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[9019] | 300 | &namdyn_adv ! formulation of the momentum advection (default: NO selection) |
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[3875] | 301 | !----------------------------------------------------------------------- |
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[9019] | 302 | ln_dynadv_NONE= .false. ! linear dynamics (no momentum advection) |
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| 303 | ln_dynadv_vec = .true. ! vector form - 2nd centered scheme |
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| 304 | nn_dynkeg = 0 ! grad(KE) scheme: =0 C2 ; =1 Hollingsworth correction |
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| 305 | ln_dynadv_cen2= .false. ! flux form - 2nd order centered scheme |
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| 306 | ln_dynadv_ubs = .false. ! flux form - 3rd order UBS scheme |
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[3875] | 307 | / |
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| 308 | !----------------------------------------------------------------------- |
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[9356] | 309 | &namdyn_vor ! Vorticity / Coriolis scheme (default: NO) |
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[3875] | 310 | !----------------------------------------------------------------------- |
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[7467] | 311 | ln_dynvor_ene = .false. ! enstrophy conserving scheme |
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[5836] | 312 | ln_dynvor_ens = .false. ! energy conserving scheme |
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| 313 | ln_dynvor_mix = .false. ! mixed scheme |
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[7467] | 314 | ln_dynvor_een = .true. ! energy & enstrophy scheme |
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| 315 | nn_een_e3f = 0 ! e3f = masked averaging of e3t divided by 4 (=0) or by the sum of mask (=1) |
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[3875] | 316 | / |
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| 317 | !----------------------------------------------------------------------- |
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[9356] | 318 | &namdyn_hpg ! Hydrostatic pressure gradient option (default: NO selection) |
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[3875] | 319 | !----------------------------------------------------------------------- |
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[7412] | 320 | ln_hpg_zco = .false. ! z-coordinate - full steps |
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[3875] | 321 | ln_hpg_zps = .false. ! z-coordinate - partial steps (interpolation) |
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[7412] | 322 | ln_hpg_sco = .true. ! s-coordinate |
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[3875] | 323 | / |
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| 324 | !----------------------------------------------------------------------- |
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[9356] | 325 | &namdyn_spg ! surface pressure gradient (default: NO) |
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[3875] | 326 | !----------------------------------------------------------------------- |
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[5930] | 327 | ln_dynspg_ts = .true. ! split-explicit free surface |
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[7467] | 328 | ln_bt_auto = .false. ! Number of sub-step defined from: |
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| 329 | nn_baro = 12 ! =F : the number of sub-step in rn_rdt seconds |
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[5930] | 330 | / |
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[3875] | 331 | !----------------------------------------------------------------------- |
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[9356] | 332 | &namdyn_ldf ! lateral diffusion on momentum (default: NO selection) |
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[3875] | 333 | !----------------------------------------------------------------------- |
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[5836] | 334 | ! ! Type of the operator : |
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| 335 | ! ! no diffusion: set ln_dynldf_lap=..._blp=F |
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| 336 | ln_dynldf_lap = .true. ! laplacian operator |
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| 337 | ln_dynldf_blp = .false. ! bilaplacian operator |
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| 338 | ! ! Direction of action : |
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| 339 | ln_dynldf_lev = .true. ! iso-level |
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| 340 | ln_dynldf_hor = .false. ! horizontal (geopotential) |
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| 341 | ln_dynldf_iso = .false. ! iso-neutral |
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| 342 | ! ! Coefficient |
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| 343 | nn_ahm_ijk_t = 0 ! space/time variation of eddy coef |
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[9490] | 344 | ! ! = 0 constant |
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| 345 | ! ! time invariant coefficients : ahm = 1/2 Uv*Lv (lap case) |
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| 346 | ! ! or = 1/12 Uv*Lv^3 (blp case) |
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| 347 | rn_Uv = 2.0 ! lateral viscous velocity [m/s] (nn_ahm_ijk_t= 0, 10, 20, 30) |
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| 348 | rn_Lv = 10.e+3 ! lateral viscous length [m] (nn_ahm_ijk_t= 0, 10) |
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[3875] | 349 | / |
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[9490] | 350 | |
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[9019] | 351 | !!====================================================================== |
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| 352 | !! vertical physics namelists !! |
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| 353 | !!====================================================================== |
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| 354 | !! namzdf vertical physics |
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| 355 | !! namzdf_ric richardson number vertical mixing (ln_zdfric=T) |
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| 356 | !! namzdf_tke TKE vertical mixing (ln_zdftke=T) |
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| 357 | !! namzdf_gls GLS vertical mixing (ln_zdfgls=T) |
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| 358 | !! namzdf_iwm tidal mixing parameterization (ln_zdfiwm=T) |
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| 359 | !!====================================================================== |
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[3875] | 360 | !----------------------------------------------------------------------- |
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[9019] | 361 | &namzdf ! vertical physics (default: NO selection) |
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[3875] | 362 | !----------------------------------------------------------------------- |
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[9019] | 363 | ! ! type of vertical closure |
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| 364 | ln_zdfcst = .false. ! constant mixing |
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| 365 | ln_zdfric = .false. ! local Richardson dependent formulation (T => fill namzdf_ric) |
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| 366 | ln_zdftke = .true. ! Turbulent Kinetic Energy closure (T => fill namzdf_tke) |
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| 367 | ln_zdfgls = .false. ! Generic Length Scale closure (T => fill namzdf_gls) |
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| 368 | ln_zdfosm = .false. ! OSMOSIS BL closure (T => fill namzdf_osm) |
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| 369 | ! |
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| 370 | ! ! convection |
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| 371 | ln_zdfevd = .true. ! enhanced vertical diffusion |
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| 372 | nn_evdm = 1 ! apply on tracer (=0) or on tracer and momentum (=1) |
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| 373 | rn_evd = 100. ! mixing coefficient [m2/s] |
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| 374 | ln_zdfnpc = .false. ! Non-Penetrative Convective algorithm |
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| 375 | nn_npc = 1 ! frequency of application of npc |
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| 376 | nn_npcp = 365 ! npc control print frequency |
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| 377 | ! |
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| 378 | ln_zdfddm = .false. ! double diffusive mixing |
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| 379 | rn_avts = 1.e-4 ! maximum avs (vertical mixing on salinity) |
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| 380 | rn_hsbfr = 1.6 ! heat/salt buoyancy flux ratio |
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| 381 | ! |
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| 382 | ! ! gravity wave-driven vertical mixing |
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| 383 | ln_zdfiwm = .false. ! internal wave-induced mixing (T => fill namzdf_iwm) |
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| 384 | ln_zdfswm = .false. ! surface wave-induced mixing (T => ln_wave=ln_sdw=T ) |
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| 385 | ! |
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| 386 | ! ! coefficients |
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| 387 | rn_avm0 = 1.2e-4 ! vertical eddy viscosity [m2/s] (background Kz if ln_zdfcst=F) |
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| 388 | rn_avt0 = 1.2e-5 ! vertical eddy diffusivity [m2/s] (background Kz if ln_zdfcst=F) |
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| 389 | nn_avb = 0 ! profile for background avt & avm (=1) or not (=0) |
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| 390 | nn_havtb = 0 ! horizontal shape for avtb (=1) or not (=0) |
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[3875] | 391 | / |
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| 392 | !----------------------------------------------------------------------- |
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[9356] | 393 | &namzdf_ric ! richardson number dependent vertical diffusion (ln_zdfric =T) |
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| 394 | !----------------------------------------------------------------------- |
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| 395 | / |
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| 396 | !----------------------------------------------------------------------- |
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[9019] | 397 | &namzdf_tke ! turbulent eddy kinetic dependent vertical diffusion (ln_zdftke =T) |
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[3875] | 398 | !----------------------------------------------------------------------- |
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| 399 | nn_etau = 0 ! penetration of tke below the mixed layer (ML) due to internal & intertial waves |
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| 400 | / |
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| 401 | !----------------------------------------------------------------------- |
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[9356] | 402 | &namzdf_gls ! GLS vertical diffusion (ln_zdfgls =T) |
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[3875] | 403 | !----------------------------------------------------------------------- |
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| 404 | / |
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| 405 | !----------------------------------------------------------------------- |
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[9356] | 406 | &namzdf_osm ! OSM vertical diffusion (ln_zdfosm =T) |
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[3875] | 407 | !----------------------------------------------------------------------- |
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| 408 | / |
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| 409 | !----------------------------------------------------------------------- |
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[9356] | 410 | &namzdf_iwm ! internal wave-driven mixing parameterization (ln_zdfiwm =T) |
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[3875] | 411 | !----------------------------------------------------------------------- |
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| 412 | / |
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| 413 | !----------------------------------------------------------------------- |
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[9356] | 414 | &nammpp ! Massively Parallel Processing ("key_mpp_mpi") |
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[3875] | 415 | !----------------------------------------------------------------------- |
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[9356] | 416 | / |
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| 417 | !----------------------------------------------------------------------- |
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| 418 | &namctl ! Control prints |
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| 419 | !----------------------------------------------------------------------- |
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| 420 | / |
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| 421 | !----------------------------------------------------------------------- |
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| 422 | &namsto ! Stochastic parametrization of EOS (default: NO) |
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| 423 | !----------------------------------------------------------------------- |
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| 424 | / |
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| 425 | !----------------------------------------------------------------------- |
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| 426 | &namtrd ! trend diagnostics (default F) |
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| 427 | !----------------------------------------------------------------------- |
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[4990] | 428 | ln_glo_trd = .false. ! (T) global domain averaged diag for T, T^2, KE, and PE |
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| 429 | ln_dyn_trd = .false. ! (T) 3D momentum trend output |
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| 430 | ln_dyn_mxl = .FALSE. ! (T) 2D momentum trends averaged over the mixed layer (not coded yet) |
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| 431 | ln_vor_trd = .FALSE. ! (T) 2D barotropic vorticity trends (not coded yet) |
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| 432 | ln_KE_trd = .false. ! (T) 3D Kinetic Energy trends |
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| 433 | ln_PE_trd = .false. ! (T) 3D Potential Energy trends |
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| 434 | ln_tra_trd = .false. ! (T) 3D tracer trend output |
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| 435 | ln_tra_mxl = .false. ! (T) 2D tracer trends averaged over the mixed layer (not coded yet) |
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| 436 | nn_trd = 365 ! print frequency (ln_glo_trd=T) (unit=time step) |
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[3875] | 437 | / |
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| 438 | !----------------------------------------------------------------------- |
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[9356] | 439 | &namptr ! Poleward Transport Diagnostic (default F) |
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[3875] | 440 | !----------------------------------------------------------------------- |
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| 441 | / |
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| 442 | !----------------------------------------------------------------------- |
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[9356] | 443 | &namhsb ! Heat and salt budgets (default F) |
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[3875] | 444 | !----------------------------------------------------------------------- |
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[9356] | 445 | / |
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| 446 | !----------------------------------------------------------------------- |
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| 447 | &namdiu ! Cool skin and warm layer models (default F) |
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| 448 | !----------------------------------------------------------------------- |
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| 449 | / |
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| 450 | !----------------------------------------------------------------------- |
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| 451 | &namflo ! float parameters ("key_float") |
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| 452 | !----------------------------------------------------------------------- |
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| 453 | / |
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| 454 | !----------------------------------------------------------------------- |
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| 455 | &nam_diaharm ! Harmonic analysis of tidal constituents ("key_diaharm") |
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| 456 | !----------------------------------------------------------------------- |
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| 457 | / |
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| 458 | !----------------------------------------------------------------------- |
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| 459 | &namdct ! transports through some sections ("key_diadct") |
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| 460 | !----------------------------------------------------------------------- |
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[3875] | 461 | nn_dct = 60 ! time step frequency for transports computing |
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| 462 | nn_dctwri = 60 ! time step frequency for transports writing |
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| 463 | nn_secdebug = 0 ! 0 : no section to debug |
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| 464 | / |
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| 465 | !----------------------------------------------------------------------- |
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[9356] | 466 | &nam_diatmb ! Top Middle Bottom Output (default F) |
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[3875] | 467 | !----------------------------------------------------------------------- |
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| 468 | / |
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| 469 | !----------------------------------------------------------------------- |
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[9356] | 470 | &nam_dia25h ! 25h Mean Output (default F) |
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[3875] | 471 | !----------------------------------------------------------------------- |
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| 472 | / |
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| 473 | !----------------------------------------------------------------------- |
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[9356] | 474 | &namnc4 ! netcdf4 chunking and compression settings ("key_netcdf4") |
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[3875] | 475 | !----------------------------------------------------------------------- |
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| 476 | / |
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[7412] | 477 | !----------------------------------------------------------------------- |
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[9356] | 478 | &namobs ! observation usage switch |
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[7412] | 479 | !----------------------------------------------------------------------- |
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| 480 | / |
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[9356] | 481 | !----------------------------------------------------------------------- |
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| 482 | &nam_asminc ! assimilation increments ('key_asminc') |
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| 483 | !----------------------------------------------------------------------- |
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| 484 | / |
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| 485 | !----------------------------------------------------------------------- |
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| 486 | &namdta_dyn ! offline dynamics read in files ("key_offline") |
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| 487 | !----------------------------------------------------------------------- |
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| 488 | / |
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