- Timestamp:
- 2018-11-16T15:59:30+01:00 (5 years ago)
- Location:
- NEMO/branches/UKMO/NEMO4_beta_mirror/doc
- Files:
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- 2 edited
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NEMO/branches/UKMO/NEMO4_beta_mirror/doc
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NEMO/branches/UKMO/NEMO4_beta_mirror/doc/namelists/namsbc
r9355 r10321 1 1 !----------------------------------------------------------------------- 2 &namsbc ! Surface Boundary Condition (surface module)2 &namsbc ! Surface Boundary Condition manager (default: NO selection) 3 3 !----------------------------------------------------------------------- 4 nn_fsbc = 5 ! frequency of surface boundary condition computation5 ! (also = the frequency ofsea-ice & iceberg model call)4 nn_fsbc = 5 ! frequency of SBC module call 5 ! ! (control sea-ice & iceberg model call) 6 6 ! Type of air-sea fluxes 7 7 ln_usr = .false. ! user defined formulation (T => check usrdef_sbc) 8 8 ln_flx = .false. ! flux formulation (T => fill namsbc_flx ) 9 ln_blk = .false. 10 9 ln_blk = .false. ! Bulk formulation (T => fill namsbc_blk ) 10 ! ! Type of coupling (Ocean/Ice/Atmosphere) : 11 11 ln_cpl = .false. ! atmosphere coupled formulation ( requires key_oasis3 ) 12 12 ln_mixcpl = .false. ! forced-coupled mixed formulation ( requires key_oasis3 ) 13 13 nn_components = 0 ! configuration of the opa-sas OASIS coupling 14 15 16 14 ! ! =0 no opa-sas OASIS coupling: default single executable config. 15 ! ! =1 opa-sas OASIS coupling: multi executable config., OPA component 16 ! ! =2 opa-sas OASIS coupling: multi executable config., SAS component 17 17 ! Sea-ice : 18 nn_ice = 2 ! =0 no ice boundary condition ,19 ! =1 use observed ice-cover ,20 ! =2 or 3 automatically for LIM3 or CICE ("key_lim3" or "key_cice")21 18 nn_ice = 0 ! =0 no ice boundary condition 19 ! ! =1 use observed ice-cover ( => fill namsbc_iif ) 20 ! ! =2 or 3 automatically for SI3 or CICE ("key_si3" or "key_cice") 21 ! ! except in AGRIF zoom where it has to be specified 22 22 ln_ice_embd = .false. ! =T embedded sea-ice (pressure + mass and salt exchanges) 23 23 ! ! =F levitating ice (no pressure, mass and salt exchanges) 24 24 ! Misc. options of sbc : 25 ln_traqsr = . true.! Light penetration in the ocean (T => fill namtra_qsr)25 ln_traqsr = .false. ! Light penetration in the ocean (T => fill namtra_qsr) 26 26 ln_dm2dc = .false. ! daily mean to diurnal cycle on short wave 27 ln_ rnf = .true. ! runoffs (T => fill namsbc_rnf)28 ln_ssr = .true. ! Sea Surface Restoring on T and/or S (T => fill namsbc_ssr)29 nn_fwb = 2 ! FreshWater Budget: =0 unchecked30 ! =1 global mean of e-p-r set to zero at each time step31 ! =2 annual global mean of e-p-r set to zero27 ln_ssr = .false. ! Sea Surface Restoring on T and/or S (T => fill namsbc_ssr) 28 nn_fwb = 0 ! FreshWater Budget: =0 unchecked 29 ! ! =1 global mean of e-p-r set to zero at each time step 30 ! ! =2 annual global mean of e-p-r set to zero 31 ln_rnf = .false. ! runoffs (T => fill namsbc_rnf) 32 32 ln_apr_dyn = .false. ! Patm gradient added in ocean & ice Eqs. (T => fill namsbc_apr ) 33 ln_isf = .false. ! ice shelf (T => fill namsbc_isf )33 ln_isf = .false. ! ice shelf (T => fill namsbc_isf & namsbc_iscpl) 34 34 ln_wave = .false. ! Activate coupling with wave (T => fill namsbc_wave) 35 35 ln_cdgw = .false. ! Neutral drag coefficient read from wave model (T => ln_wave=.true. & fill namsbc_wave) 36 36 ln_sdw = .false. ! Read 2D Surf Stokes Drift & Computation of 3D stokes drift (T => ln_wave=.true. & fill namsbc_wave) 37 37 nn_sdrift = 0 ! Parameterization for the calculation of 3D-Stokes drift from the surface Stokes drift 38 39 40 38 ! ! = 0 Breivik 2015 parameterization: v_z=v_0*[exp(2*k*z)/(1-8*k*z)] 39 ! ! = 1 Phillips: v_z=v_o*[exp(2*k*z)-beta*sqrt(-2*k*pi*z)*erfc(sqrt(-2*k*z))] 40 ! ! = 2 Phillips as (1) but using the wave frequency from a wave model 41 41 ln_tauwoc = .false. ! Activate ocean stress modified by external wave induced stress (T => ln_wave=.true. & fill namsbc_wave) 42 42 ln_tauw = .false. ! Activate ocean stress components from wave model
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