- Timestamp:
- 2015-07-23T18:05:51+02:00 (9 years ago)
- File:
-
- 1 edited
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branches/UKMO/dev_r5107_restart_func_and_date/NEMOGCM/CONFIG/SHARED/namelist_ref
r5500 r5630 47 47 ln_dimgnnn = .false. ! DIMG file format: 1 file for all processors (F) or by processor (T) 48 48 ln_mskland = .false. ! mask land points in NetCDF outputs (costly: + ~15%) 49 ln_cfmeta = .false. ! output additional data to netCDF files required for compliance with the CF metadata standard 49 50 ln_clobber = .false. ! clobber (overwrite) an existing file 50 51 nn_chunksz = 0 ! chunksize (bytes) for NetCDF file (works only with iom_nf90 routines) … … 219 220 !! namsbc_core CORE bulk formulae formulation 220 221 !! namsbc_mfs MFS bulk formulae formulation 221 !! namsbc_cpl CouPLed formulation ("key_ coupled")222 !! namsbc_cpl CouPLed formulation ("key_oasis3") 222 223 !! namsbc_sas StAndalone Surface module 223 224 !! namtra_qsr penetrative solar radiation … … 239 240 ln_blk_core = .true. ! CORE bulk formulation (T => fill namsbc_core) 240 241 ln_blk_mfs = .false. ! MFS bulk formulation (T => fill namsbc_mfs ) 242 ln_cpl = .false. ! atmosphere coupled formulation ( requires key_oasis3 ) 243 ln_mixcpl = .false. ! forced-coupled mixed formulation ( requires key_oasis3 ) 244 nn_components = 0 ! configuration of the opa-sas OASIS coupling 245 ! =0 no opa-sas OASIS coupling: default single executable configuration 246 ! =1 opa-sas OASIS coupling: multi executable configuration, OPA component 247 ! =2 opa-sas OASIS coupling: multi executable configuration, SAS component 241 248 ln_apr_dyn = .false. ! Patm gradient added in ocean & ice Eqs. (T => fill namsbc_apr ) 242 249 nn_ice = 2 ! =0 no ice boundary condition , … … 346 353 / 347 354 !----------------------------------------------------------------------- 348 &namsbc_cpl ! coupled ocean/atmosphere model ("key_ coupled")355 &namsbc_cpl ! coupled ocean/atmosphere model ("key_oasis3") 349 356 !----------------------------------------------------------------------- 350 357 ! ! description ! multiple ! vector ! vector ! vector ! … … 382 389 sn_sal = 'sas_grid_T' , 120 , 'sosaline' , .true. , .true. , 'yearly' , '' , '' , '' 383 390 sn_ssh = 'sas_grid_T' , 120 , 'sossheig' , .true. , .true. , 'yearly' , '' , '' , '' 384 385 ln_3d_uv = .true. ! specify whether we are supplying a 3D u,v field 391 sn_e3t = 'sas_grid_T' , 120 , 'e3t_m' , .true. , .true. , 'yearly' , '' , '' , '' 392 sn_frq = 'sas_grid_T' , 120 , 'frq_m' , .true. , .true. , 'yearly' , '' , '' , '' 393 394 ln_3d_uve = .true. ! specify whether we are supplying a 3D u,v and e3 field 395 ln_read_frq = .false. ! specify whether we must read frq or not 386 396 cn_dir = './' ! root directory for the location of the bulk files are 387 397 / … … 416 426 417 427 cn_dir = './' ! root directory for the location of the runoff files 418 ln_rnf_emp = .false. ! runoffs included into precipitation field (T) or into a file (F)419 428 ln_rnf_mouth = .true. ! specific treatment at rivers mouths 420 429 rn_hrnf = 15.e0 ! depth over which enhanced vertical mixing is used … … 424 433 ln_rnf_tem = .false. ! read in temperature information for runoff 425 434 ln_rnf_sal = .false. ! read in salinity information for runoff 435 ln_rnf_depth_ini = .false. ! compute depth at initialisation from runoff file 436 rn_rnf_max = 5.735e-4 ! max value of the runoff climatologie over global domain ( ln_rnf_depth_ini = .true ) 437 rn_dep_max = 150. ! depth over which runoffs is spread ( ln_rnf_depth_ini = .true ) 438 nn_rnf_depth_file = 0 ! create (=1) a runoff depth file or not (=0) 426 439 / 427 440 !----------------------------------------------------------------------- … … 463 476 464 477 cn_dir = './' ! root directory for the location of the bulk files 465 rn_pref = 101000. _wp! reference atmospheric pressure [N/m2]/478 rn_pref = 101000. ! reference atmospheric pressure [N/m2]/ 466 479 ln_ref_apr = .false. ! ref. pressure: global mean Patm (T) or a constant (F) 467 480 ln_apr_obc = .false. ! inverse barometer added to OBC ssh data … … 686 699 &nambbc ! bottom temperature boundary condition 687 700 !----------------------------------------------------------------------- 701 ! ! ! (if <0 months) ! 702 ! ! file name ! frequency (hours) ! variable ! time interp. ! clim ! 'yearly'/ ! weights ! rotation ! land/sea mask ! 703 ! ! ! (if <0 months) ! name ! (logical) ! (T/F ) ! 'monthly' ! filename ! pairing ! filename ! 704 sn_qgh ='geothermal_heating.nc', -12. , 'heatflow' , .false. , .true. , 'yearly' , '' , '' , '' 705 ! 706 cn_dir = './' ! root directory for the location of the runoff files 688 707 ln_trabbc = .true. ! Apply a geothermal heating at the ocean bottom 689 708 nn_geoflx = 2 ! geothermal heat flux: = 0 no flux … … 691 710 ! = 2 variable flux (read in geothermal_heating.nc in mW/m2) 692 711 rn_geoflx_cst = 86.4e-3 ! Constant value of geothermal heat flux [W/m2] 712 693 713 / 694 714 !----------------------------------------------------------------------- … … 937 957 ! = 1 add a tke source below the ML 938 958 ! = 2 add a tke source just at the base of the ML 939 ! = 3 as = 1 applied on HF part of the stress ("key_ coupled")959 ! = 3 as = 1 applied on HF part of the stress ("key_oasis3") 940 960 rn_efr = 0.05 ! fraction of surface tke value which penetrates below the ML (nn_etau=1 or 2) 941 961 nn_htau = 1 ! type of exponential decrease of tke penetration below the ML
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