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namelist_cfg in trunk/NEMOGCM/CONFIG/AMM12/EXP00 – NEMO

source: trunk/NEMOGCM/CONFIG/AMM12/EXP00/namelist_cfg @ 6140

Last change on this file since 6140 was 6140, checked in by timgraham, 8 years ago

Merge of branches/2015/dev_merge_2015 back into trunk. Merge excludes NEMOGCM/TOOLS/OBSTOOLS/ for now due to issues with the change of file type. Will sort these manually with further commits.

Branch merged as follows:
In the working copy of branch ran:
svn merge svn+ssh://forge.ipsl.jussieu.fr/ipsl/forge/projets/nemo/svn/trunk@HEAD
Small conflicts due to bug fixes applied to trunk since the dev_merge_2015 was copied. Bug fixes were applied to the branch as well so these were easy to resolve.
Branch committed at this stage

In working copy run:
svn switch svn+ssh://forge.ipsl.jussieu.fr/ipsl/forge/projets/nemo/svn/trunk
to switch working copy

Run:
svn merge --reintegrate svn+ssh://forge.ipsl.jussieu.fr/ipsl/forge/projets/nemo/svn/branches/2015/dev_merge_2015
to merge the branch into the trunk and then commit - no conflicts at this stage.

File size: 28.1 KB
Line 
1!!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
2!! NEMO/OPA  : AMM12 configuration namelist used to overwrite defaults values defined in SHARED/namelist_ref
3!!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
4!-----------------------------------------------------------------------
5&namrun        !   parameters of the run
6!-----------------------------------------------------------------------
7   cn_exp      =  "AMM12"  !  experience name
8   nn_it000    =       1   !  first time step
9   nn_itend    =    1296   !  last  time step (std 1 day = 144)
10   nn_date0    =  20120102 !  date at nit_0000 (format yyyymmdd) used if ln_rstart=F or (ln_rstart=T and nn_rstctl=0 or 1)
11   nn_leapy    =       1   !  Leap year calendar (1) or not (0)
12   ln_rstart   =  .true.  !  start from rest (F) or from a restart file (T)
13   nn_euler    =       1   !  = 0 : start with forward time step if ln_rstart=.true.
14   cn_ocerst_in   = "amm12_restart_oce"   !  suffix of ocean restart name (input)
15   cn_ocerst_out  = "restart_oce_out"   !  suffix of ocean restart name (input)
16   nn_stock    =    1296   !  frequency of creation of a restart file (modulo referenced to 1)
17   nn_write    =     144   !  frequency of write in the output file   (modulo referenced to nit000)
18/
19!-----------------------------------------------------------------------
20&namcfg        !   parameters of the configuration
21!-----------------------------------------------------------------------
22   cp_cfg      =  "amm"                !  name of the configuration
23   jp_cfg      =     011               !  resolution of the configuration
24   jpidta      =     198               !  1st lateral dimension ( >= jpi )
25   jpjdta      =     224               !  2nd    "         "    ( >= jpj )
26   jpkdta      =      51               !  number of levels      ( >= jpk )
27   jpiglo      =     198               !  1st dimension of global domain --> i =jpidta
28   jpjglo      =     224               !  2nd    -                  -    --> j  =jpjdta
29   jpizoom     =       1               !  left bottom (i,j) indices of the zoom
30   jpjzoom     =       1               !  in data domain indices
31   jperio      =       0               !  lateral cond. type (between 0 and 6)
32/
33!-----------------------------------------------------------------------
34&namzgr        !   vertical coordinate
35!-----------------------------------------------------------------------
36   ln_sco      = .true.    !  s- or hybrid z-s-coordinate
37/
38!-----------------------------------------------------------------------
39&namzgr_sco    !   s-coordinate or hybrid z-s-coordinate
40!-----------------------------------------------------------------------
41   ln_s_sh94   = .false.   !  Song & Haidvogel 1994 hybrid S-sigma   (T)|
42   ln_s_sf12   = .true.    !  Siddorn & Furner 2012 hybrid S-z-sigma (T)| if both are false the NEMO tanh stretching is applied
43   ln_sigcrit  = .true.    !  use sigma coordinates below critical depth (T) or Z coordinates (F) for Siddorn & Furner stretch
44                           !  stretching coefficients for all functions
45   rn_hc       =   50.0    !  critical depth for transition to stretched coordinates
46/
47!-----------------------------------------------------------------------
48&namdom        !   space and time domain (bathymetry, mesh, timestep)
49!-----------------------------------------------------------------------
50   rn_rdt      =   600.    !  time step for the dynamics (and tracer if nn_acc=0)
51   ppglam0     =  999999.0             !  longitude of first raw and column T-point (jphgr_msh = 1)
52   ppgphi0     =  999999.0             ! latitude  of first raw and column T-point (jphgr_msh = 1)
53   ppe1_deg    =  999999.0             !  zonal      grid-spacing (degrees)
54   ppe2_deg    =  999999.0             !  meridional grid-spacing (degrees)
55   ppe1_m      =  999999.0             !  zonal      grid-spacing (degrees)
56   ppe2_m      =  999999.0             !  meridional grid-spacing (degrees)
57   ppsur       =  999999.0             !  ORCA r4, r2 and r05 coefficients
58   ppa0        =  999999.0             ! (default coefficients)
59   ppa1        =  999999.0             !
60   ppkth       =      23.563           !
61   ppacr       =       9.0             !
62   ppdzmin     =       6.0             !  Minimum vertical spacing
63   pphmax      =    5720.              !  Maximum depth
64   ldbletanh   =  .FALSE.              !  Use/do not use double tanf function for vertical coordinates
65   ppa2        =  999999.              !  Double tanh function parameters
66   ppkth2      =  999999.              !
67   ppacr2      =  999999.
68/
69!-----------------------------------------------------------------------
70&namcrs        !   Grid coarsening for dynamics output and/or
71               !   passive tracer coarsened online simulations
72!-----------------------------------------------------------------------
73/
74!-----------------------------------------------------------------------
75&namtsd    !   data : Temperature  & Salinity
76!-----------------------------------------------------------------------
77   ln_tsd_init   = .false.   !  Initialisation of ocean T & S with T &S input data (T) or not (F)
78   ln_tsd_tradmp = .false.   !  damping of ocean T & S toward T &S input data (T) or not (F)
79/
80!-----------------------------------------------------------------------
81&namsbc        !   Surface Boundary Condition (surface module)
82!-----------------------------------------------------------------------
83   nn_fsbc     = 1         !  frequency of surface boundary condition computation
84                           !     (also = the frequency of sea-ice model call)
85   ln_flx      = .true.    !  flux formulation       (T => fill namsbc_flx )
86   ln_blk_core = .false.   !  CORE bulk formulation                     (T => fill namsbc_core)
87   nn_ice      = 0         !  =0 no ice boundary condition   ,
88   ln_ssr      = .false.   !  Sea Surface Restoring on T and/or S       (T => fill namsbc_ssr)
89   nn_fwb      = 0         !  FreshWater Budget: =0 unchecked
90   ln_apr_dyn  = .false.    !  Patm gradient added in ocean & ice Eqs.   (T => fill namsbc_apr )
91   ln_traqsr   = .false.   !  Light penetration (T) or not (F)
92
93/
94!-----------------------------------------------------------------------
95&namsbc_ana    !   analytical surface boundary condition
96!-----------------------------------------------------------------------
97/
98!-----------------------------------------------------------------------
99&namsbc_flx    !   surface boundary condition : flux formulation
100!-----------------------------------------------------------------------
101!          !  file name  ! frequency (hours) ! variable  ! time interp. !  clim  ! 'yearly'/ ! weights  ! rotation ! land/sea mask !
102!          !             !  (if <0  months)  !   name    !   (logical)  !  (T/F) ! 'monthly' ! filename ! pairing  ! filename      !
103   sn_utau     = 'amm12_utau'     ,          1        ,  'utau'      , .false.      , .false. , 'daily'   ,  ''      ,  ''  , ''
104   sn_vtau     = 'amm12_vtau'     ,          1        ,  'vtau'      , .false.      , .false. , 'daily'   ,  ''      ,  ''  , ''
105   sn_qtot     = 'amm12_flx'      ,          3        ,  'sonsfldo'  ,  .true.      , .false. , 'daily'   ,  ''      ,  ''  , ''
106   sn_qsr      = 'amm12_flx'      ,          3        ,  'soshfldo'  ,  .true.      , .false. , 'daily'   ,  ''      ,  ''  , ''
107   sn_emp      = 'amm12_flx'      ,          3        ,  'sowafldo'  ,  .true.      , .false. , 'daily'   ,  ''      ,  ''  , ''
108   cn_dir      = './fluxes/'        !  root directory for the location of the flux files
109/
110!-----------------------------------------------------------------------
111&namsbc_clio   !   namsbc_clio  CLIO bulk formulae
112!-----------------------------------------------------------------------
113/
114!-----------------------------------------------------------------------
115&namsbc_core   !   namsbc_core  CORE bulk formulae
116!-----------------------------------------------------------------------
117/
118!-----------------------------------------------------------------------
119&namsbc_mfs   !   namsbc_mfs  MFS bulk formulae
120!-----------------------------------------------------------------------
121/
122!-----------------------------------------------------------------------
123&namsbc_cpl    !   coupled ocean/atmosphere model                       ("key_oasis3")
124!-----------------------------------------------------------------------
125/
126!-----------------------------------------------------------------------
127&namtra_qsr    !   penetrative solar radiation
128!-----------------------------------------------------------------------
129   nn_chldta   =      0    !  RGB : Chl data (=1) or cst value (=0)
130/
131!-----------------------------------------------------------------------
132&namsbc_rnf    !   runoffs namelist surface boundary condition
133!-----------------------------------------------------------------------
134!          !  file name  ! frequency (hours) ! variable  ! time interp. !  clim  ! 'yearly'/ ! weights  ! rotation ! land/sea mask !
135!          !             !  (if <0  months)  !   name    !   (logical)  !  (T/F) ! 'monthly' ! filename ! pairing  ! filename      !
136   sn_rnf      = 'amm12_rivers'       ,        24         , 'rorunoff',   .false.    , .true. , 'yearly'  , ''       , ''  , ''
137   sn_cnf      = 'runoff_1m_nomask'   ,         0         , 'socoefr0',   .false.    , .true. , 'yearly'  , ''       , ''  , ''
138   sn_s_rnf    = 'amm12_rivers'       ,        24         , 'rosaline',   .false.    , .true. , 'yearly'  , ''       , ''  , ''
139   sn_t_rnf    = 'amm12_rivers'       ,        24         , 'rotemper',   .false.    , .true. , 'yearly'  , ''       , ''  , ''
140   sn_dep_rnf  = 'amm12_rivers'       ,        24         , 'rodepth' ,   .false.    , .true. , 'yearly'  , ''       , ''  , ''
141   ln_rnf_mouth = .false.   !  specific treatment at rivers mouths
142   ln_rnf_depth = .true.    !  read in depth information for runoff
143   ln_rnf_tem   = .true.    !  read in temperature information for runoff
144   ln_rnf_sal   = .true.    !  read in salinity information for runoff
145/
146!-----------------------------------------------------------------------
147&namsbc_apr    !   Atmospheric pressure used as ocean forcing or in bulk
148!-----------------------------------------------------------------------
149!          !  file name  ! frequency (hours) ! variable  ! time interp. !  clim  ! 'yearly'/ ! weights  ! rotation ! land/sea mask !
150!          !             !  (if <0  months)  !   name    !   (logical)  !  (T/F) ! 'monthly' ! filename ! pairing  ! filename      !
151   sn_apr     = 'amm12_mslp'     ,          1        ,  'p_msl'      , .false.      , .false. , 'daily'   ,  ''      ,  ''  , ''
152
153   cn_dir      = './fluxes/' !  root directory for the location of the bulk files
154   rn_pref     = 101000.     !  reference atmospheric pressure   [N/m2]/
155   ln_ref_apr  = .false.    !  ref. pressure: global mean Patm (T) or a constant (F)
156   ln_apr_obc  = .true.    !  inverse barometer added to OBC ssh data
157/
158!-----------------------------------------------------------------------
159&namsbc_ssr    !   surface boundary condition : sea surface restoring
160!-----------------------------------------------------------------------
161!          !  file name  ! frequency (hours) ! variable  ! time interp. !  clim  ! 'yearly'/ ! weights  ! rotation ! land/sea mask !
162!          !             !  (if <0  months)  !   name    !   (logical)  !  (T/F) ! 'monthly' ! filename ! pairing  ! filename      !
163   sn_sst      = 'amm12_sstref'    ,        24         ,  'sst'     ,     .true.     , .false. , 'daily'   , .false. , ''       , '' , ''
164   sn_sss      = 'sss_data'        ,        -1         ,  'sss'     ,     .true.     , .true.  , 'yearly'  , .false. , ''       , '' , ''
165
166   cn_dir      = 'fluxes/' !  root directory for the location of the runoff files
167   nn_sstr     =     1     !  add a retroaction term in the surface heat       flux (=1) or not (=0)
168   nn_sssr     =     0     !  add a damping     term in the surface freshwater flux (=2)
169                           !  or to SSS only (=1) or no damping term (=0)
170   rn_deds     =  -27.7    !  magnitude of the damping on salinity   [mm/day]
171/
172!-----------------------------------------------------------------------
173&namsbc_alb    !   albedo parameters
174!-----------------------------------------------------------------------
175/
176!-----------------------------------------------------------------------
177&namberg       !   iceberg parameters
178!-----------------------------------------------------------------------
179/
180!-----------------------------------------------------------------------
181&namlbc        !   lateral momentum boundary condition
182!-----------------------------------------------------------------------
183   rn_shlat    =     0     !  shlat = 0  !  0 < shlat < 2  !  shlat = 2  !  2 < shlat
184                           !  free slip  !   partial slip  !   no slip   ! strong slip
185/
186!-----------------------------------------------------------------------
187&namagrif      !  AGRIF zoom                                            ("key_agrif")
188!-----------------------------------------------------------------------
189/
190!-----------------------------------------------------------------------
191&nam_tide      !   tide parameters (#ifdef key_tide)
192!-----------------------------------------------------------------------
193   clname(1)     =   'Q1'   !  name of constituent
194   clname(2)     =   'O1'
195   clname(3)     =   'P1'
196   clname(4)     =   'S1'
197   clname(5)     =   'K1'
198   clname(6)     =   '2N2'
199   clname(7)     =   'MU2'
200   clname(8)     =   'N2'
201   clname(9)     =   'NU2'
202   clname(10)    =   'M2'
203   clname(11)    =   'L2'
204   clname(12)    =   'T2'
205   clname(13)    =   'S2'
206   clname(14)    =   'K2'
207   clname(15)    =   'M4'
208/
209!-----------------------------------------------------------------------
210&nambdy        !  unstructured open boundaries                          ("key_bdy")
211    nb_bdy         =  1
212    cn_dyn2d       = 'flather'
213    nn_dyn2d_dta   =  3
214    cn_tra         =  'frs'
215    nn_tra_dta    =   1
216/
217!-----------------------------------------------------------------------
218&nambdy_dta      !  open boundaries - external data           ("key_bdy")
219!-----------------------------------------------------------------------
220!          !  file name  ! frequency (hours) ! variable  ! time interp. !  clim  ! 'yearly'/ ! weights  ! rotation ! land/sea mask !
221!          !             !  (if <0  months)  !   name    !   (logical)  !  (T/F) ! 'monthly' ! filename ! pairing  ! filename      !
222   bn_ssh =     'amm12_bdyT_dyn2d' ,         24        , 'sossheig' ,     .true.     , .false. ,  'daily'  ,    ''    ,   ''  , ''
223   bn_u2d =     'amm12_bdyU_dyn2d' ,         24        , 'vobtcrtx' ,     .true.     , .false. ,  'daily'  ,    ''    ,   ''  , ''
224   bn_v2d =     'amm12_bdyV_dyn2d' ,         24        , 'vobtcrty' ,     .true.     , .false. ,  'daily'  ,    ''    ,   ''  , ''
225   bn_u3d  =    'amm12_bdyU_dyn3d' ,         24        , 'vozocrtx' ,     .true.     , .false. ,  'daily'  ,    ''    ,   ''  , ''
226   bn_v3d  =    'amm12_bdyV_dyn3d' ,         24        , 'vomecrty' ,     .true.     , .false. ,  'daily'  ,    ''    ,   ''  , ''
227   bn_tem  =    'amm12_bdyT_tra'   ,         24        , 'votemper' ,     .true.     , .false. ,  'daily'  ,    ''    ,   ''  , ''
228   bn_sal  =    'amm12_bdyT_tra'   ,         24        , 'vosaline' ,     .true.     , .false. ,  'daily'  ,    ''    ,   ''  , ''
229   cn_dir  =    './bdydta/'
230   ln_full_vel = .false.
231/
232!-----------------------------------------------------------------------
233&nambdy_tide     ! tidal forcing at open boundaries
234!-----------------------------------------------------------------------
235   filtide      = 'bdydta/amm12_bdytide_'         !  file name root of tidal forcing files
236/
237!-----------------------------------------------------------------------
238&nambfr        !   bottom friction
239!-----------------------------------------------------------------------
240   nn_bfr      =    2      !  type of bottom friction :   = 0 : free slip,  = 1 : linear friction
241                           !                              = 2 : nonlinear friction
242   rn_bfri2    =    2.5e-3 !  bottom drag coefficient (non linear case)
243   rn_bfeb2    =    0.0e0  !  bottom turbulent kinetic energy background  (m2/s2)
244   ln_loglayer =    .true. !  loglayer bottom friction (only effect when nn_bfr = 2)
245   rn_bfrz0    =    0.003  !  bottom roughness (only effect when ln_loglayer = .true.)
246/
247!-----------------------------------------------------------------------
248&nambbc        !   bottom temperature boundary condition                (default: NO)
249!-----------------------------------------------------------------------
250/
251!-----------------------------------------------------------------------
252&nambbl        !   bottom boundary layer scheme
253!-----------------------------------------------------------------------
254   nn_bbl_ldf  =  0      !  diffusive bbl (=1)   or not (=0)
255/
256!-----------------------------------------------------------------------
257&nameos        !   ocean physical parameters
258!-----------------------------------------------------------------------
259/
260!-----------------------------------------------------------------------
261&namtra_adv    !   advection scheme for tracer
262!-----------------------------------------------------------------------
263   ln_traadv_fct =  .true.   !  FCT scheme
264      nn_fct_h   =  2               !  =2/4, horizontal 2nd / 4th order
265      nn_fct_v   =  2               !  =2/4, vertical   2nd / COMPACT 4th order
266      nn_fct_zts =  0               !  >=1,  2nd order FCT scheme with vertical sub-timestepping
267      !                             !        (number of sub-timestep = nn_fct_zts)
268/
269!-----------------------------------------------------------------------
270&namtra_adv_mle !  mixed layer eddy parametrisation (Fox-Kemper param)
271!-----------------------------------------------------------------------
272/
273!----------------------------------------------------------------------------------
274&namtra_ldf    !   lateral diffusion scheme for tracers
275!----------------------------------------------------------------------------------
276   !                       !  Operator type:
277   ln_traldf_lap   =  .true.   !    laplacian operator
278   ln_traldf_blp   =  .false.  !  bilaplacian operator
279   !                       !  Direction of action:
280   ln_traldf_lev   =  .false.  !  iso-level
281   ln_traldf_hor   =  .true.   !  horizontal (geopotential)
282   ln_traldf_iso   =  .false.  !  iso-neutral
283   ln_traldf_triad =  .false.  !  iso-neutral using Griffies triads
284   !
285   !                       !  iso-neutral options:       
286   ln_traldf_msc   =  .true.   !  Method of Stabilizing Correction (both operators)
287   rn_slpmax       =   0.01    !  slope limit                      (both operators)
288   ln_triad_iso    =  .false.  !  pure horizontal mixing in ML     (triad only)
289   rn_sw_triad     =  1        !  =1 switching triad ; =0 all 4 triads used (triad only)
290   ln_botmix_triad =  .false.  !  lateral mixing on bottom         (triad only)
291   !
292   !                       !  Coefficients:
293   nn_aht_ijk_t    = 0         !  space/time variation of eddy coef
294   !                                !   =-20 (=-30)    read in eddy_diffusivity_2D.nc (..._3D.nc) file
295   !                                !   =  0           constant
296   !                                !   = 10 F(k)      =ldf_c1d
297   !                                !   = 20 F(i,j)    =ldf_c2d
298   !                                !   = 21 F(i,j,t)  =Treguier et al. JPO 1997 formulation
299   !                                !   = 30 F(i,j,k)  =ldf_c2d + ldf_c1d
300   !                                !   = 31 F(i,j,k,t)=F(local velocity)
301   rn_aht_0        =   50.     !  lateral eddy diffusivity   (lap. operator) [m2/s]
302   rn_bht_0        = 1.e+12    !  lateral eddy diffusivity (bilap. operator) [m4/s]
303/
304!----------------------------------------------------------------------------------
305&namtra_ldfeiv !   eddy induced velocity param.
306!----------------------------------------------------------------------------------
307   ln_ldfeiv     =.false.   ! use eddy induced velocity parameterization
308/
309!-----------------------------------------------------------------------
310&namtra_dmp    !   tracer: T & S newtonian damping
311!-----------------------------------------------------------------------
312   ln_tradmp   =  .false.  !  add a damping termn (T) or not (F)
313/
314!-----------------------------------------------------------------------
315&namdyn_adv    !   formulation of the momentum advection
316!-----------------------------------------------------------------------
317/
318!-----------------------------------------------------------------------
319&namdyn_vor    !   option of physics/algorithm (not control by CPP keys)
320!-----------------------------------------------------------------------
321   ln_dynvor_ene = .false. !  enstrophy conserving scheme
322   ln_dynvor_ens = .false. !  energy conserving scheme
323   ln_dynvor_mix = .false. !  mixed scheme
324   ln_dynvor_een = .true.  !  energy & enstrophy scheme
325      nn_een_e3f = 1             !  e3f = masked averaging of e3t divided by 4 (=0) or by the sum of mask (=1)
326/
327!-----------------------------------------------------------------------
328&namdyn_hpg    !   Hydrostatic pressure gradient option
329!-----------------------------------------------------------------------
330   ln_hpg_zps  = .false.   !  z-coordinate - partial steps (interpolation)
331   ln_hpg_prj  = .true.   !  s-coordinate (Pressure Jacobian scheme)
332/
333!-----------------------------------------------------------------------
334&namdyn_spg    !   surface pressure gradient
335!-----------------------------------------------------------------------
336   ln_dynspg_ts = .true.    ! split-explicit free surface
337      ln_bt_auto    = .false.  ! Number of sub-step defined from:
338         nn_baro       = 30       ! =F : the number of sub-step in rn_rdt seconds
339/
340!-----------------------------------------------------------------------
341&namdyn_ldf    !   lateral diffusion on momentum
342!-----------------------------------------------------------------------
343   !                       !  Type of the operator :
344   !                           !  no diffusion: set ln_dynldf_lap=..._blp=F
345   ln_dynldf_lap =  .false.    !    laplacian operator
346   ln_dynldf_blp =  .true.     !  bilaplacian operator
347   !                       !  Direction of action  :
348   ln_dynldf_lev =  .true.     !  iso-level
349   ln_dynldf_hor =  .false.    !  horizontal (geopotential)
350   ln_dynldf_iso =  .false.    !  iso-neutral
351   !                       !  Coefficient
352   nn_ahm_ijk_t  = 0           !  space/time variation of eddy coef
353   !                                !  =-30  read in eddy_viscosity_3D.nc file
354   !                                !  =-20  read in eddy_viscosity_2D.nc file
355   !                                !  =  0  constant
356   !                                !  = 10  F(k)=c1d
357   !                                !  = 20  F(i,j)=F(grid spacing)=c2d
358   !                                !  = 30  F(i,j,k)=c2d*c1d
359   !                                !  = 31  F(i,j,k)=F(grid spacing and local velocity)
360   rn_ahm_0      =     60.     !  horizontal laplacian eddy viscosity   [m2/s]
361   rn_ahm_b      =      0.     !  background eddy viscosity for ldf_iso [m2/s]
362   rn_bhm_0      = 1.0e+10     !  horizontal bilaplacian eddy viscosity [m4/s]
363   !
364   ! Caution in 20 and 30 cases the coefficient have to be given for a 1 degree grid (~111km)
365/
366!-----------------------------------------------------------------------
367&namzdf        !   vertical physics
368!-----------------------------------------------------------------------
369   rn_avm0     =   0.1e-6  !  vertical eddy viscosity   [m2/s]          (background Kz if not "key_zdfcst")
370   rn_avt0     =   0.1e-6  !  vertical eddy diffusivity [m2/s]          (background Kz if not "key_zdfcst")
371   ln_zdfevd   = .false.   !  enhanced vertical diffusion (evd) (T) or not (F)
372   nn_evdm     =    1      !  evd apply on tracer (=0) or on tracer and momentum (=1)
373/
374!-----------------------------------------------------------------------
375&namzdf_ric    !   richardson number dependent vertical diffusion       ("key_zdfric" )
376!-----------------------------------------------------------------------
377/
378!-----------------------------------------------------------------------
379&namzdf_tke    !   turbulent eddy kinetic dependent vertical diffusion  ("key_zdftke")
380!-----------------------------------------------------------------------
381/
382!-----------------------------------------------------------------------
383&namzdf_gls                !   GLS vertical diffusion                   ("key_zdfgls")
384!-----------------------------------------------------------------------
385   rn_charn =  100000.     !  Charnock constant for wb induced roughness length
386   nn_z0_met = 1           !  Method for surface roughness computation (0/1/2)
387/
388!-----------------------------------------------------------------------
389&namzdf_ddm    !   double diffusive mixing parameterization             ("key_zdfddm")
390!-----------------------------------------------------------------------
391/
392!-----------------------------------------------------------------------
393&namzdf_tmx    !   tidal mixing parameterization                        ("key_zdftmx")
394!-----------------------------------------------------------------------
395   ln_tmx_itf  = .FALSE.   !  ITF specific parameterisation
396/
397!-----------------------------------------------------------------------
398&nammpp        !   Massively Parallel Processing                        ("key_mpp_mpi)
399!-----------------------------------------------------------------------
400/
401!-----------------------------------------------------------------------
402&namctl        !   Control prints & Benchmark
403!-----------------------------------------------------------------------
404/
405!-----------------------------------------------------------------------
406&namnc4        !   netcdf4 chunking and compression settings            ("key_netcdf4")
407!-----------------------------------------------------------------------
408/
409!-----------------------------------------------------------------------
410&namtrd        !   diagnostics on dynamics and/or tracer trends         ("key_trddyn" and/or "key_trdtra")
411!              !       or mixed-layer trends or barotropic vorticity    ("key_trdmld" or     "key_trdvor")
412!-----------------------------------------------------------------------
413/
414!-----------------------------------------------------------------------
415&namflo       !   float parameters                                      ("key_float")
416!-----------------------------------------------------------------------
417/
418!-----------------------------------------------------------------------
419&namptr       !   Poleward Transport Diagnostic
420!-----------------------------------------------------------------------
421/
422&namhsb       !  Heat and salt budgets
423!-----------------------------------------------------------------------
424/
425!-----------------------------------------------------------------------
426&nam_diaharm   !   Harmonic analysis of tidal constituents ('key_diaharm')
427!-----------------------------------------------------------------------
428/
429!-----------------------------------------------------------------------
430&namdct        ! transports through sections
431!-----------------------------------------------------------------------
432/
433!-----------------------------------------------------------------------
434&namobs       !  observation usage switch                               ('key_diaobs')
435!-----------------------------------------------------------------------
436/
437!-----------------------------------------------------------------------
438&nam_asminc   !   assimilation increments                               ('key_asminc')
439!-----------------------------------------------------------------------
440/
441!-----------------------------------------------------------------------
442&namsbc_wave   ! External fields from wave model
443!-----------------------------------------------------------------------
444/
445!-----------------------------------------------------------------------
446&nam_diatmb  !  Top Middle Bottom Output
447!-----------------------------------------------------------------------
448   ln_diatmb  = .true.    !  Choose Top Middle and Bottom output or not
449/
450!-----------------------------------------------------------------------
451&nam_dia25h  !  25h Mean Output
452!-----------------------------------------------------------------------
453   ln_dia25h  = .true.    ! Choose 25h mean output or not
454/
455
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