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namelist_cfg in branches/2013/dev_LOCEAN_2013/NEMOGCM/CONFIG/GYRE_PISCES/EXP00 – NEMO

source: branches/2013/dev_LOCEAN_2013/NEMOGCM/CONFIG/GYRE_PISCES/EXP00/namelist_cfg @ 4147

Last change on this file since 4147 was 4147, checked in by cetlod, 10 years ago

merge in dev_LOCEAN_2013, the 1st development branch dev_r3853_CNRS9_Confsetting, from its starting point ( r3853 ) on the trunk: see ticket #1169

File size: 11.9 KB
Line 
1!!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
2!! NEMO/OPA  : GYRE_PISCES Configuration namelist to overwrite reference dynamical namelist
3!!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
4!-----------------------------------------------------------------------
5&namrun        !   parameters of the run
6!-----------------------------------------------------------------------
7   cn_exp      =  "GYRE"   !  experience name
8   nn_it000    =       1   !  first time step
9   nn_itend    =    4320   !  last  time step
10   nn_leapy    =      30   !  Leap year calendar (1) or not (0)
11   nn_stock    =    4320   !  frequency of creation of a restart file (modulo referenced to 1)
12   nn_write    =      60   !  frequency of write in the output file   (modulo referenced to nn_it000)
13/
14!-----------------------------------------------------------------------
15&namcfg     !   parameters of the configuration   
16!-----------------------------------------------------------------------
17   cp_cfg      =  "gyre"                 !  name of the configuration
18   jp_cfg      =       1                 !  resolution of the configuration
19   jpidta      =      32                 !  1st lateral dimension ( >= jpi ) = 30*jp_cfg+2
20   jpjdta      =      22                 !  2nd    "         "    ( >= jpj ) = 20*jp_cfg+2
21   jpkdta      =      31                 !  number of levels      ( >= jpk )
22   jpiglo      =      32                 !  1st dimension of global domain --> i  = jpidta
23   jpjglo      =      22                 !  2nd    -                  -    --> j  = jpjdta
24   jpizoom     =       1                 !  left bottom (i,j) indices of the zoom
25   jpjzoom     =       1                 !  in data domain indices
26   jperio      =       0                 !  lateral cond. type (between 0 and 6)
27/
28!-----------------------------------------------------------------------
29&namzgr        !   vertical coordinate
30!-----------------------------------------------------------------------
31   ln_zco      = .true.    !  z-coordinate - full    steps   (T/F)      ("key_zco" may also be defined)
32   ln_zps      = .false.   !  z-coordinate - partial steps   (T/F)
33/
34!-----------------------------------------------------------------------
35&namdom        !   space and time domain (bathymetry, mesh, timestep)
36!-----------------------------------------------------------------------
37   nn_bathy    =    0      !  compute (=0) or read (=1) the bathymetry file
38   rn_rdt      = 7200.     !  time step for the dynamics (and tracer if nn_acc=0)
39   nn_baro     =   60      !  number of barotropic time step            ("key_dynspg_ts")
40   rn_rdtmin   = 7200.           !  minimum time step on tracers (used if nn_acc=1)
41   rn_rdtmax   = 7200.           !  maximum time step on tracers (used if nn_acc=1)
42   jphgr_msh   =       5                 !  type of horizontal mesh
43   ppglam0     =       0.0               !  longitude of first raw and column T-point (jphgr_msh = 1)
44   ppgphi0     =      29.0               ! latitude  of first raw and column T-point (jphgr_msh = 1)
45   ppe1_deg    =  999999.0               !  zonal      grid-spacing (degrees)
46   ppe2_deg    =  999999.0               !  meridional grid-spacing (degrees)
47   ppe1_m      =  999999.0               !  zonal      grid-spacing (degrees)
48   ppe2_m      =  999999.0               !  meridional grid-spacing (degrees)
49   ppsur       =   -2033.194295283385    !  ORCA r4, r2 and r05 coefficients
50   ppa0        =     155.8325369664153   ! (default coefficients)
51   ppa1        =     146.3615918601890   !
52   ppkth       =      17.28520372419791  !
53   ppacr       =       5.0               !
54   ppdzmin     =  999999.0               !  Minimum vertical spacing
55   pphmax      =  999999.0               !  Maximum depth
56   ldbletanh   =  .FALSE.                !  Use/do not use double tanf function for vertical coordinates
57   ppa2        =  999999.0               !  Double tanh function parameters
58   ppkth2      =  999999.0               !
59   ppacr2      =  999999.0               !
60/
61!-----------------------------------------------------------------------
62&namtsd    !   data : Temperature  & Salinity
63!-----------------------------------------------------------------------
64!          ! file name ! frequency (hours)    ! variable ! time interp. ! clim  !'yearly' or ! weights  ! rotation !
65!          !           !  (if <0  months)     !   name   !  (logical)   ! (T/F) ! 'monthly'  ! filename ! pairing 
66   cn_dir        = './'      !  root directory for the location of the runoff files
67   ln_tsd_init   = .false.   !  Initialisation of ocean T & S with T &S input data (T) or not (F)
68   ln_tsd_tradmp = .false.   !  damping of ocean T & S toward T &S input data (T) or not (F)
69/
70!-----------------------------------------------------------------------
71&namsbc        !   Surface Boundary Condition (surface module)
72!-----------------------------------------------------------------------
73   nn_fsbc     = 1         !  frequency of surface boundary condition computation
74                           !     (also = the frequency of sea-ice model call)
75   ln_ana      = .true.    !  analytical formulation                    (T => fill namsbc_ana )
76   ln_blk_core = .false.   !  CORE bulk formulation                     (T => fill namsbc_core)
77   nn_ice      = 0         !  =0 no ice boundary condition   ,
78   ln_rnf      = .false.   !  runoffs                                   (T => fill namsbc_rnf)
79   ln_ssr      = .false.   !  Sea Surface Restoring on T and/or S       (T => fill namsbc_ssr)
80   nn_fwb      = 0         !  FreshWater Budget: =0 unchecked
81/
82!-----------------------------------------------------------------------
83&namtra_qsr    !   penetrative solar radiation
84!-----------------------------------------------------------------------
85   ln_qsr_rgb  = .false.   !  RGB (Red-Green-Blue) light penetration
86   ln_qsr_2bd  = .true.    !  2 bands              light penetration
87   nn_chldta   =      0    !  RGB : Chl data (=1) or cst value (=0)
88/
89
90!-----------------------------------------------------------------------
91&namberg       !   iceberg parameters
92!-----------------------------------------------------------------------
93/
94!-----------------------------------------------------------------------
95&namlbc        !   lateral momentum boundary condition
96!-----------------------------------------------------------------------
97   rn_shlat    =    0.     !  shlat = 0  !  0 < shlat < 2  !  shlat = 2  !  2 < shlat
98/
99!-----------------------------------------------------------------------
100&namcla        !   cross land advection
101!-----------------------------------------------------------------------
102/
103!-----------------------------------------------------------------------
104&nambfr        !   bottom friction
105!-----------------------------------------------------------------------
106   nn_bfr      =    2      !  type of bottom friction :   = 0 : free slip,  = 1 : linear friction
107/
108!-----------------------------------------------------------------------
109&nambbc        !   bottom temperature boundary condition
110!-----------------------------------------------------------------------
111   ln_trabbc   = .false.   !  Apply a geothermal heating at the ocean bottom
112   nn_geoflx   =    0      !  geothermal heat flux: = 0 no flux
113/
114!-----------------------------------------------------------------------
115&nameos        !   ocean physical parameters
116!-----------------------------------------------------------------------
117   nn_eos      =   2       !  type of equation of state and Brunt-Vaisala frequency
118/
119!-----------------------------------------------------------------------
120&namtra_adv    !   advection scheme for tracer
121!-----------------------------------------------------------------------
122   ln_traadv_msc_ups=  .false.  !  use upstream scheme within muscl
123/
124!----------------------------------------------------------------------------------
125&namtra_ldf    !   lateral diffusion scheme for tracers
126!----------------------------------------------------------------------------------
127   rn_aeiv_0        =     0.    !  eddy induced velocity coefficient [m2/s]
128   rn_aht_0         =  1000.    !  horizontal eddy diffusivity for tracers [m2/s]
129/
130!-----------------------------------------------------------------------
131&namtra_dmp    !   tracer: T & S newtonian damping
132!-----------------------------------------------------------------------
133   ln_tradmp   =  .false.  !  add a damping termn (T) or not (F)
134   nn_zdmp     =    1      !  vertical   shape =0    damping throughout the water column
135   nn_file     =    1      !  create a damping.coeff NetCDF file (=1) or not (=0)
136/
137!-----------------------------------------------------------------------
138&namdyn_adv    !   formulation of the momentum advection
139!-----------------------------------------------------------------------
140/
141!-----------------------------------------------------------------------
142&namdyn_vor    !   option of physics/algorithm (not control by CPP keys)
143!-----------------------------------------------------------------------
144   ln_dynvor_ene = .true.  !  energy    conserving scheme 
145   ln_dynvor_ens = .false. !  enstrophy conserving scheme   
146   ln_dynvor_een = .false. !  energy & enstrophy scheme
147/
148!-----------------------------------------------------------------------
149&namdyn_hpg    !   Hydrostatic pressure gradient option
150!-----------------------------------------------------------------------
151   ln_hpg_zco  = .true.    !  z-coordinate - full steps
152   ln_hpg_zps  = .false.   !  z-coordinate - partial steps (interpolation)
153/
154!-----------------------------------------------------------------------
155&namdyn_ldf    !   lateral diffusion on momentum
156!-----------------------------------------------------------------------
157   rn_ahm_0_lap     = 100000.   !  horizontal laplacian eddy viscosity   [m2/s]
158/
159!-----------------------------------------------------------------------
160&namzdf        !   vertical physics
161!-----------------------------------------------------------------------
162   nn_evdm     =    1      !  evd apply on tracer (=0) or on tracer and momentum (=1)
163/
164!-----------------------------------------------------------------------
165&namzdf_tke    !   turbulent eddy kinetic dependent vertical diffusion  ("key_zdftke")
166!-----------------------------------------------------------------------
167   nn_etau     =   0       !  penetration of tke below the mixed layer (ML) due to internal & intertial waves
168/
169!-----------------------------------------------------------------------
170&namsol        !   elliptic solver / island / free surface
171!-----------------------------------------------------------------------
172   nn_solv     =      2    !  elliptic solver: =1 preconditioned conjugate gradient (pcg)
173   nn_nmin     =    210    !  minimum of iterations for the SOR solver
174   rn_sor      =  1.96     !  optimal coefficient for SOR solver (to be adjusted with the domain)
175/
176!-----------------------------------------------------------------------
177&nammpp        !   Massively Parallel Processing                        ("key_mpp_mpi)
178!-----------------------------------------------------------------------
179/
180!-----------------------------------------------------------------------
181&namctl        !   Control prints & Benchmark
182!-----------------------------------------------------------------------
183/
184!-----------------------------------------------------------------------
185&namptr       !   Poleward Transport Diagnostic
186!-----------------------------------------------------------------------
187/
188!-----------------------------------------------------------------------
189&namhsb       !  Heat and salt budgets
190!-----------------------------------------------------------------------
191/
192!-----------------------------------------------------------------------
193&namdyn_nept  !   Neptune effect (simplified: lateral and vertical diffusions removed)
194!-----------------------------------------------------------------------
195   ln_neptramp       = .false.  ! ramp down Neptune velocity in shallow water
196/
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