- Timestamp:
- 2015-09-24T08:35:56+02:00 (9 years ago)
- File:
-
- 1 edited
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branches/2015/dev_r5721_CNRS9_NOC3_LDF/NEMOGCM/CONFIG/SHARED/namelist_ref
r5656 r5759 1 !!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> 2 !! namelist_ref 1 3 !!>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> 2 4 !! NEMO/OPA : 1 - run manager (namrun) … … 7 9 !! 4 - lateral boundary (namlbc, namcla, namobc, namagrif, nambdy, nambdy_tide) 8 10 !! 5 - bottom boundary (nambfr, nambbc, nambbl) 9 !! 6 - Tracer (nameos, namtra_adv, namtra_ldf, namtra_ dmp)11 !! 6 - Tracer (nameos, namtra_adv, namtra_ldf, namtra_ldfeiv, namtra_dmp) 10 12 !! 7 - dynamics (namdyn_adv, namdyn_vor, namdyn_hpg, namdyn_spg, namdyn_ldf) 11 13 !! 8 - Verical physics (namzdf, namzdf_ric, namzdf_tke, namzdf_kpp, namzdf_ddm, namzdf_tmx) … … 200 202 !----------------------------------------------------------------------- 201 203 &namtsd ! data : Temperature & Salinity 202 !-----------------------------------------------------------------------203 204 !----------------------------------------------------------------------- 204 205 ! ! file name ! frequency (hours) ! variable ! time interp. ! clim ! 'yearly'/ ! weights ! rotation ! land/sea mask ! … … 711 712 ! = 2 variable flux (read in geothermal_heating.nc in mW/m2) 712 713 rn_geoflx_cst = 86.4e-3 ! Constant value of geothermal heat flux [W/m2] 713 714 714 / 715 715 !----------------------------------------------------------------------- … … 725 725 !! Tracer (T & S ) namelists 726 726 !!====================================================================== 727 !! nameos equation of state728 !! namtra_adv advection scheme727 !! nameos equation of state 728 !! namtra_adv advection scheme 729 729 !! namtra_adv_mle mixed layer eddy param. (Fox-Kemper param.) 730 !! namtra_ldf lateral diffusion scheme 731 !! namtra_dmp T & S newtonian damping 730 !! namtra_ldf lateral diffusion scheme 731 !! namtra_ldfeiv eddy induced velocity param. 732 !! namtra_dmp T & S newtonian damping 732 733 !!====================================================================== 733 734 ! … … 780 781 !---------------------------------------------------------------------------------- 781 782 ! ! Operator type: 782 ln_traldf_lap = .true. !laplacian operator783 ln_traldf_b ilap= .false. ! bilaplacian operator783 ln_traldf_lap = .true. ! laplacian operator 784 ln_traldf_blp = .false. ! bilaplacian operator 784 785 ! ! Direction of action: 785 ln_traldf_level = .false. ! iso-level 786 ln_traldf_hor = .false. ! horizontal (geopotential) (needs "key_ldfslp" when ln_sco=T) 787 ln_traldf_iso = .true. ! iso-neutral (needs "key_ldfslp") 788 ! ! Griffies parameters (all need "key_ldfslp") 789 ln_traldf_grif = .false. ! use griffies triads 790 ln_traldf_gdia = .false. ! output griffies eddy velocities 791 ln_triad_iso = .false. ! pure lateral mixing in ML 792 ln_botmix_grif = .false. ! lateral mixing on bottom 793 ! ! Coefficients 794 ! Eddy-induced (GM) advection always used with Griffies; otherwise needs "key_traldf_eiv" 795 ! Value rn_aeiv_0 is ignored unless = 0 with Held-Larichev spatially varying aeiv 796 ! (key_traldf_c2d & key_traldf_eiv & key_orca_r2, _r1 or _r05) 797 rn_aeiv_0 = 2000. ! eddy induced velocity coefficient [m2/s] 798 rn_aht_0 = 2000. ! horizontal eddy diffusivity for tracers [m2/s] 799 rn_ahtb_0 = 0. ! background eddy diffusivity for ldf_iso [m2/s] 800 ! (normally=0; not used with Griffies) 801 rn_slpmax = 0.01 ! slope limit 802 rn_chsmag = 1. ! multiplicative factor in Smagorinsky diffusivity 803 rn_smsh = 1. ! Smagorinsky diffusivity: = 0 - use only sheer 804 rn_aht_m = 2000. ! upper limit or stability criteria for lateral eddy diffusivity (m2/s) 786 ln_traldf_lev = .false. ! iso-level 787 ln_traldf_hor = .false. ! horizontal (geopotential) 788 ln_traldf_iso = .true. ! iso-neutral (standard operator) 789 ln_traldf_triad = .false. ! iso-neutral (triad operator) 790 ! 791 ! ! iso-neutral options: 792 ln_traldf_msc = .true. ! Method of Stabilizing Correction (both operators) 793 rn_slpmax = 0.01 ! slope limit (both operators) 794 ln_triad_iso = .false. ! pure horizontal mixing in ML (triad only) 795 rn_sw_triad = 1 ! =1 switching triad ; =0 all 4 triads used (triad only) 796 ln_botmix_triad = .false. ! lateral mixing on bottom (triad only) 797 ! 798 ! ! Coefficients: 799 nn_aht_ijk_t = 0 ! space/time variation of eddy coef 800 ! ! =-20 (=-30) read in eddy_induced_velocity_2D.nc (..._3D.nc) file 801 ! ! = 0 constant 802 ! ! = 10 F(k) =ldf_c1d 803 ! ! = 20 F(i,j) =ldf_c2d 804 ! ! = 21 F(i,j,t) =Treguier et al. JPO 1997 formulation 805 ! ! = 30 F(i,j,k) =ldf_c2d + ldf_c1d 806 ! ! = 31 F(i,j,k,t)=F(local velocity) 807 rn_aht_0 = 2000. ! lateral eddy diffusivity (lap. operator) [m2/s] 808 rn_bht_0 = 1.e+12 ! lateral eddy diffusivity (bilap. operator) [m4/s] 809 / 810 !---------------------------------------------------------------------------------- 811 &namtra_ldfeiv ! eddy induced velocity param. 812 !---------------------------------------------------------------------------------- 813 ln_ldfeiv =.false. ! use eddy induced velocity parameterization 814 ln_ldfeiv_dia =.false. ! diagnose eiv stream function and velocities 815 rn_aeiv_0 = 2000. ! eddy induced velocity coefficient [m2/s] 816 nn_aei_ijk_t = 21 ! space/time variation of the eiv coeficient 817 ! ! =-20 (=-30) read in eddy_induced_velocity_2D.nc (..._3D.nc) file 818 ! ! = 0 constant 819 ! ! = 10 F(k) =ldf_c1d 820 ! ! = 20 F(i,j) =ldf_c2d 821 ! ! = 21 F(i,j,t) =Treguier et al. JPO 1997 formulation 822 ! ! = 30 F(i,j,k) =ldf_c2d + ldf_c1d 805 823 / 806 824 !-----------------------------------------------------------------------
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