Changeset 12495 for NEMO/branches/2020/dev_r12472_ASINTER-05_Masson_CurrentFeedback/cfgs/SHARED/namelist_ref
- Timestamp:
- 2020-03-02T09:10:34+01:00 (4 years ago)
- File:
-
- 1 edited
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NEMO/branches/2020/dev_r12472_ASINTER-05_Masson_CurrentFeedback/cfgs/SHARED/namelist_ref
r12472 r12495 42 42 nn_leapy = 0 ! Leap year calendar (1) or not (0) 43 43 ln_rstart = .false. ! start from rest (F) or from a restart file (T) 44 nn_euler = 1 ! = 0 : start with forward time step if ln_rstart=T45 nn_rstctl = 0! restart control ==> activated only if ln_rstart=T44 ln_1st_euler = .false. ! =T force a start with forward time step (ln_rstart=T) 45 nn_rstctl = 0 ! restart control ==> activated only if ln_rstart=T 46 46 ! ! = 0 nn_date0 read in namelist ; nn_it000 : read in namelist 47 47 ! ! = 1 nn_date0 read in namelist ; nn_it000 : check consistancy between namelist and restart … … 72 72 ln_linssh = .false. ! =T linear free surface ==>> model level are fixed in time 73 73 ! 74 rn_ rdt = 5400. ! time step for the dynamics and tracer74 rn_Dt = 5400. ! time step for the dynamics and tracer 75 75 rn_atfp = 0.1 ! asselin time filter parameter 76 76 ! … … 269 269 ln_Cd_L12 = .false. ! air-ice drags = F(ice conc.) (Lupkes et al. 2012) 270 270 ln_Cd_L15 = .false. ! air-ice drags = F(ice conc.) (Lupkes et al. 2015) 271 ! ! - module of the mean stress" data 271 ln_crt_fbk = .false. ! Add surface current feedback to the wind stress (Renault et al. 2020): 272 rn_stau_a = -2.9e-3 ! Alpha from eq. 10: Stau = Alpha * Wnd + Beta 273 rn_stau_b = 8.0e-3 ! Beta 272 274 rn_pfac = 1. ! multipl. factor for precipitation (total & snow) 273 275 rn_efac = 1. ! multipl. factor for evaporation (0. or 1.) 274 rn_vfac = 0. ! multipl. factor for ocean & ice velocity275 ! ! used to calculate the wind stress276 ! ! (0. => absolute or 1. => relative winds)277 276 ln_skin_cs = .false. ! use the cool-skin parameterization 278 277 ln_skin_wl = .false. ! use the warm-layer parameterization … … 292 291 sn_tair = 't_10.15JUNE2009_fill' , 6. , 'T_10_MOD', .false. , .true. , 'yearly' , 'weights_core_orca2_bilinear_noc.nc' , '' , '' 293 292 sn_humi = 'q_10.15JUNE2009_fill' , 6. , 'Q_10_MOD', .false. , .true. , 'yearly' , 'weights_core_orca2_bilinear_noc.nc' , '' , '' 294 sn_hpgi = 'NONE' , 24. , 'uhpg' , .false. , .false., 'monthly' , 'weights_ERAI3D_F128_2_ORCA2_bicubic', 'UG' , ''295 sn_hpgj = 'NONE' , 24. , 'vhpg' , .false. , .false., 'monthly' , 'weights_ERAI3D_F128_2_ORCA2_bicubic', 'VG' , ''296 293 sn_prec = 'ncar_precip.15JUNE2009_fill', -1. , 'PRC_MOD1', .false. , .true. , 'yearly' , 'weights_core_orca2_bilinear_noc.nc' , '' , '' 297 294 sn_snow = 'ncar_precip.15JUNE2009_fill', -1. , 'SNOW' , .false. , .true. , 'yearly' , 'weights_core_orca2_bilinear_noc.nc' , '' , '' 298 295 sn_slp = 'slp.15JUNE2009_fill' , 6. , 'SLP' , .false. , .true. , 'yearly' , 'weights_core_orca2_bilinear_noc.nc' , '' , '' 296 sn_uoatm = 'NOT USED' , 6. , 'UOATM' , .false. , .true. , 'yearly' , 'weights_core_orca2_bilinear_noc.nc' , 'Uoceatm', '' 297 sn_voatm = 'NOT USED' , 6. , 'VOATM' , .false. , .true. , 'yearly' , 'weights_core_orca2_bilinear_noc.nc' , 'Voceatm', '' 298 sn_hpgi = 'NOT USED' , 24. , 'uhpg' , .false. , .false., 'monthly' , 'weights_ERAI3D_F128_2_ORCA2_bicubic', 'UG' , '' 299 sn_hpgj = 'NOT USED' , 24. , 'vhpg' , .false. , .false., 'monthly' , 'weights_ERAI3D_F128_2_ORCA2_bicubic', 'VG' , '' 299 300 / 300 301 !----------------------------------------------------------------------- … … 995 996 ln_bt_av = .true. ! Time filtering of barotropic variables 996 997 nn_bt_flt = 1 ! Time filter choice = 0 None 997 ! ! = 1 Boxcar over nn_ barosub-steps998 ! ! = 2 Boxcar over 2*nn_ baro" "998 ! ! = 1 Boxcar over nn_e sub-steps 999 ! ! = 2 Boxcar over 2*nn_e " " 999 1000 ln_bt_auto = .true. ! Number of sub-step defined from: 1000 1001 rn_bt_cmax = 0.8 ! =T : the Maximum Courant Number allowed 1001 nn_ baro = 30 ! =F : the number of sub-step in rn_rdt seconds1002 nn_e = 30 ! =F : the number of sub-step in rn_Dt seconds 1002 1003 rn_bt_alpha = 0. ! Temporal diffusion parameter (if ln_bt_av=F) 1003 1004 /
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