| 1 | ! |
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| 2 | ! $Id: 1D_read_forc_cases.h 3781 2020-10-26 09:33:06Z musat $ |
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| 3 | ! |
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| 4 | !---------------------------------------------------------------------- |
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| 5 | ! forcing_les = .T. : Impose a constant cooling |
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| 6 | ! forcing_radconv = .T. : Pure radiative-convective equilibrium: |
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| 7 | !---------------------------------------------------------------------- |
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| 8 | |
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| 9 | |
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| 10 | nq1=0 |
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| 11 | nq2=0 |
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| 12 | |
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| 13 | print*,'FORCING ,forcing_SCM',forcing_SCM |
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| 14 | if (forcing_SCM) then |
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| 15 | |
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| 16 | write(*,*),'avant call read_SCM' |
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| 17 | call read_SCM_cas |
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| 18 | write(*,*) 'Forcing read' |
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| 19 | print*,'PS ps_cas',ps_cas |
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| 20 | |
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| 21 | !Time interpolation for initial conditions using interpolation routine |
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| 22 | write(*,*) 'AVT 1ere INTERPOLATION: day,day1 = ',daytime,day1 |
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| 23 | CALL interp_case_time_std(daytime,day1,annee_ref & |
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| 24 | ! & ,year_ini_cas,day_ju_ini_cas,nt_cas,pdt_cas,nlev_cas & |
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| 25 | & ,nt_cas,nlev_cas & |
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| 26 | & ,ts_cas,ps_cas,plev_cas,t_cas,th_cas,thv_cas,thl_cas,qv_cas,ql_cas,qi_cas & |
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| 27 | & ,u_cas,v_cas,ug_cas,vg_cas & |
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| 28 | & ,temp_nudg_cas,qv_nudg_cas,u_nudg_cas,v_nudg_cas & |
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| 29 | & ,vitw_cas,omega_cas,tke_cas,du_cas,hu_cas,vu_cas & |
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| 30 | & ,dv_cas,hv_cas,vv_cas,dt_cas,ht_cas,vt_cas,dtrad_cas & |
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| 31 | & ,dq_cas,hq_cas,vq_cas,dth_cas,hth_cas,vth_cas,lat_cas,sens_cas,ustar_cas & |
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| 32 | & ,uw_cas,vw_cas,q1_cas,q2_cas,tkes_cas & |
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| 33 | ! |
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| 34 | & ,ts_prof_cas,ps_prof_cas,plev_prof_cas,t_prof_cas,theta_prof_cas,thv_prof_cas & |
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| 35 | & ,thl_prof_cas,qv_prof_cas,ql_prof_cas,qi_prof_cas & |
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| 36 | & ,u_prof_cas,v_prof_cas,ug_prof_cas,vg_prof_cas & |
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| 37 | & ,temp_nudg_prof_cas,qv_nudg_prof_cas,u_nudg_prof_cas,v_nudg_prof_cas & |
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| 38 | & ,vitw_prof_cas,omega_prof_cas,tke_prof_cas & |
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| 39 | & ,du_prof_cas,hu_prof_cas,vu_prof_cas & |
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| 40 | & ,dv_prof_cas,hv_prof_cas,vv_prof_cas,dt_prof_cas,ht_prof_cas,vt_prof_cas & |
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| 41 | & ,dtrad_prof_cas,dq_prof_cas,hq_prof_cas,vq_prof_cas & |
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| 42 | & ,dth_prof_cas,hth_prof_cas,vth_prof_cas,lat_prof_cas & |
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| 43 | & ,sens_prof_cas,ustar_prof_cas,uw_prof_cas,vw_prof_cas,q1_prof_cas,q2_prof_cas,tkes_prof_cas) |
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| 44 | |
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| 45 | do l = 1, nlev_cas |
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| 46 | print *,'apres 1ere interp: plev_cas, plev_prof_cas=',l,plev_cas(l,1),plev_prof_cas(l) |
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| 47 | enddo |
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| 48 | |
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| 49 | ! vertical interpolation using interpolation routine: |
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| 50 | ! write(*,*)'avant interp vert', t_prof |
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| 51 | CALL interp2_case_vertical_std(play,plev,nlev_cas,plev_prof_cas & |
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| 52 | & ,t_prof_cas,theta_prof_cas,thv_prof_cas,thl_prof_cas & |
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| 53 | & ,qv_prof_cas,ql_prof_cas,qi_prof_cas,u_prof_cas,v_prof_cas & |
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| 54 | & ,ug_prof_cas,vg_prof_cas & |
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| 55 | & ,temp_nudg_prof_cas,qv_nudg_prof_cas,u_nudg_prof_cas,v_nudg_prof_cas & |
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| 56 | |
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| 57 | & ,vitw_prof_cas,omega_prof_cas,tke_prof_cas & |
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| 58 | & ,du_prof_cas,hu_prof_cas,vu_prof_cas,dv_prof_cas,hv_prof_cas,vv_prof_cas & |
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| 59 | & ,dt_prof_cas,ht_prof_cas,vt_prof_cas,dtrad_prof_cas,dq_prof_cas,hq_prof_cas,vq_prof_cas & |
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| 60 | & ,dth_prof_cas,hth_prof_cas,vth_prof_cas & |
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| 61 | ! |
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| 62 | & ,t_mod_cas,theta_mod_cas,thv_mod_cas,thl_mod_cas,qv_mod_cas,ql_mod_cas,qi_mod_cas & |
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| 63 | & ,u_mod_cas,v_mod_cas,ug_mod_cas,vg_mod_cas & |
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| 64 | & ,temp_nudg_mod_cas,qv_nudg_mod_cas,u_nudg_mod_cas,v_nudg_mod_cas & |
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| 65 | & ,w_mod_cas,omega_mod_cas,tke_mod_cas & |
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| 66 | & ,du_mod_cas,hu_mod_cas,vu_mod_cas,dv_mod_cas,hv_mod_cas,vv_mod_cas & |
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| 67 | & ,dt_mod_cas,ht_mod_cas,vt_mod_cas,dtrad_mod_cas,dq_mod_cas,hq_mod_cas,vq_mod_cas & |
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| 68 | & ,dth_mod_cas,hth_mod_cas,vth_mod_cas,mxcalc) |
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| 69 | |
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| 70 | |
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| 71 | ! initial and boundary conditions : |
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| 72 | ! tsurf = ts_prof_cas |
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| 73 | psurf = ps_prof_cas |
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| 74 | !EV tg instead of ts_cur |
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| 75 | tg = ts_prof_cas |
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| 76 | print*, 'tg=', tg |
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| 77 | |
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| 78 | do l = 1, llm |
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| 79 | temp(l) = t_mod_cas(l) |
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| 80 | q(l,1) = qv_mod_cas(l) |
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| 81 | q(l,2) = ql_mod_cas(l) |
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| 82 | u(l) = u_mod_cas(l) |
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| 83 | ug(l)= ug_mod_cas(l) |
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| 84 | v(l) = v_mod_cas(l) |
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| 85 | vg(l)= vg_mod_cas(l) |
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| 86 | ! Modif w_mod_cas -> omega_mod_cas (MM+MPL 20170309) |
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| 87 | omega(l) = omega_mod_cas(l) |
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| 88 | omega2(l)=omega(l)/rg*airefi ! flxmass_w calcule comme ds physiq |
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| 89 | |
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| 90 | |
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| 91 | ! On effectue la somme du forcage total et de la decomposition |
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| 92 | ! horizontal/vertical en supposant que soit l'un soit l'autre |
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| 93 | ! sont remplis mais jamais les deux |
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| 94 | |
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| 95 | d_t_adv(l) = dt_mod_cas(l)+ht_mod_cas(l)+vt_mod_cas(l) |
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| 96 | d_q_adv(l,1) = dq_mod_cas(l)+hq_mod_cas(l)+vq_mod_cas(l) |
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| 97 | d_q_adv(l,2) = 0.0 |
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| 98 | d_u_adv(l) = du_mod_cas(l)+hu_mod_cas(l)+vu_mod_cas(l) |
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| 99 | d_v_adv(l) = dv_mod_cas(l)+hv_mod_cas(l)+vv_mod_cas(l) |
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| 100 | enddo |
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| 101 | |
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| 102 | ! Etienne pour initialisation de TKE |
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| 103 | |
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| 104 | do l=1,llm+1 |
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| 105 | pbl_tke(:,l,:)=tke_mod_cas(l) |
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| 106 | enddo |
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| 107 | |
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| 108 | ! Faut-il multiplier par -1 ? (MPL 20160713) |
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| 109 | IF (ok_flux_surf) THEN |
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| 110 | fsens=-1.*sens_prof_cas |
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| 111 | flat=-1.*lat_prof_cas |
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| 112 | ENDIF |
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| 113 | ! |
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| 114 | IF (ok_prescr_ust) THEN |
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| 115 | ust=ustar_prof_cas |
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| 116 | ENDIF |
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| 117 | |
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| 118 | |
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| 119 | endif !forcing_SCM |
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