!-------------------------------------- LICENCE BEGIN ------------------------------------ !Environment Canada - Atmospheric Science and Technology License/Disclaimer, ! version 3; Last Modified: May 7, 2008. !This is free but copyrighted software; you can use/redistribute/modify it under the terms !of the Environment Canada - Atmospheric Science and Technology License/Disclaimer !version 3 or (at your option) any later version that should be found at: !http://collaboration.cmc.ec.gc.ca/science/rpn.comm/license.html ! !This software is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; !without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. !See the above mentioned License/Disclaimer for more details. !You should have received a copy of the License/Disclaimer along with this software; !if not, you can write to: EC-RPN COMM Group, 2121 TransCanada, suite 500, Dorval (Quebec), !CANADA, H9P 1J3; or send e-mail to service.rpn@ec.gc.ca !-------------------------------------- LICENCE END -------------------------------------- ***s/r hzd_fact_tl - TLM of hzd_fact * #include "model_macros_f.h"*
subroutine hzd_fact_tl ( F_u , F_v , F_psd, F_tp , F_ip , 1,31 % F_td , F_t , F_it , F_plt , F_q , % F_pip , F_w , F_qp , F_mu , F_mul , F_s , % F_um , F_vm, F_psdm, F_tpm , F_ipm , % F_tdm , F_tm, F_itm , F_pltm, F_qm , % F_pipm, F_wm, F_qpm , F_mum , F_mulm, F_sm, % F_xfis, DIST_DIM,Nk) * implicit none * integer DIST_DIM, Nk real F_u (DIST_SHAPE,Nk), F_v (DIST_SHAPE,Nk), % F_psd(DIST_SHAPE,Nk), F_tp(DIST_SHAPE,Nk), % F_ip (DIST_SHAPE,Nk), F_td(DIST_SHAPE,Nk), % F_t (DIST_SHAPE,Nk), F_it(DIST_SHAPE,Nk), % F_plt(DIST_SHAPE,Nk), F_q (DIST_SHAPE,Nk), % F_pip(DIST_SHAPE,Nk), F_w (DIST_SHAPE,Nk), % F_qp (DIST_SHAPE,Nk), F_mu(DIST_SHAPE,Nk), % F_mul(DIST_SHAPE,Nk), F_s (DIST_SHAPE), F_xfis(DIST_SHAPE) * real F_um (DIST_SHAPE,Nk), F_vm (DIST_SHAPE,Nk), % F_psdm(DIST_SHAPE,Nk), F_tpm(DIST_SHAPE,Nk), % F_ipm (DIST_SHAPE,Nk), F_tdm(DIST_SHAPE,Nk), % F_tm (DIST_SHAPE,Nk), F_itm(DIST_SHAPE,Nk), % F_pltm(DIST_SHAPE,Nk), F_qm (DIST_SHAPE,Nk), % F_pipm(DIST_SHAPE,Nk), F_wm (DIST_SHAPE,Nk), % F_qpm (DIST_SHAPE,Nk), F_mum(DIST_SHAPE,Nk), % F_mulm(DIST_SHAPE,Nk), F_sm (DIST_SHAPE) * *author * M.Tanguay * *revision * v2_10 - Tanguay M. - initial MPI version * v2_21 - Tanguay M. - remove vertical modulation * - TLM of diff. on phi instead of phi' at model lid * - replace xfis by topo * v2_31 - Tanguay M. - TLM of control for diffusion on momentum only * v3_03 - Tanguay M. - Adjoint NoHyd configuration * v3_11 - Tanguay M. - AIXport+Opti+OpenMP for TLM-ADJ * v3_20 - Tanguay M. - Adjoint of variable higher order diffusion operator * *object * see id section * *arguments * *implicits #include "glb_ld.cdk"
#include "ldnh.cdk"
#include "dcst.cdk"
#include "cstv.cdk"
#include "trp.cdk"
#include "hzd.cdk"
#include "opr.cdk"
#include "schm.cdk"
#include "geomg.cdk"
#include "ptopo.cdk"
#include "lun.cdk"
* integer i, j, k real*8 c_8 real work(LDIST_SHAPE,Nk), work_m(LDIST_SHAPE,Nk) real*8 wk1_8 real*8 g1_8(LYDIST_SIZ*(Trp_12dmax-Trp_12dmin+1)*(G_ni+Ptopo_npex)) real*8 g2_8((Trp_12dmax-Trp_12dmin+1)*(Trp_22max-Trp_22min+1)*(G_nj+Ptopo_npey)) real*8, dimension (Ldnh_maxy*G_ni) :: aix_8,bix_8,cix_8,dix_8 real*8, dimension (Trp_22max *G_nj) :: aiy_8,biy_8,ciy_8 * ______________________________________________________ * if (Lun_debug_L) write(Lun_out,1000) * * Momentum * ~~~~~~~~ if ( Cstv_uvdf_8 .gt. 0.0 ) then * * Horizontal Momentum * ~~~~~~~~~~~~~~~~~~~ c_8 = Cstv_uvdf_8*Cstv_dt_8/(Dcst_rayt_8*Dcst_rayt_8) if (Hzd_difva_L) then call hzd_abc
( aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,c_8, $ Geomg_cy2_8,Hzd_xp0_8,Hzd_xp2_8,Opr_opsyp0_8,Hzd_yp2su_8, $ G_ni,G_nj,Ldnh_maxy,l_nj, $ Trp_22max,Trp_22n,LYDIST_DIM,G_nj,l_nj) else call hzd_abc
( aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,c_8, $ Geomg_cy2_8,Hzd_xp0_8,Hzd_xp2_8,Opr_opsyp0_8,Opr_opsyp2_8, $ G_ni,G_nj,Ldnh_maxy,l_nj, $ Trp_22max,Trp_22n,LYDIST_DIM,G_nj,l_nj) endif * * TRAJECTORY * ---------- call hzd_del2
(F_um, wk1_8, Hzd_opsxp0_8, Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(F_u, wk1_8, Hzd_opsxp0_8, Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * call hzd_abc
( aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,c_8, $ Geomg_cyv2_8,Opr_opsxp0_8,Opr_opsxp2_8,Hzd_yp0_8,Hzd_yp2_8, $ G_ni,G_nj,Ldnh_maxy,l_nj, $ Trp_22max,Trp_22n,LYDIST_DIM,G_njv,l_njv) * * TRAJECTORY * ---------- call hzd_del2
(F_vm, wk1_8, Opr_opsxp0_8(G_ni+1), Hzd_opsyp0_8, $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_njv) * * TLM * --- call hzd_del2
(F_v, wk1_8, Opr_opsxp0_8(G_ni+1), Hzd_opsyp0_8, $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_njv) * endif * if ( Cstv_phidf_8 .gt. 0.0) then * c_8 = Cstv_phidf_8*Cstv_dt_8/(Dcst_rayt_8*Dcst_rayt_8) if (Hzd_difva_L) then call hzd_abc
(aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,c_8, $ Geomg_cy2_8,Opr_opsxp0_8,Opr_opsxp2_8,Opr_opsyp0_8, $ Hzd_yp2su_8,G_ni,G_nj,Ldnh_maxy,l_nj, $ Trp_22max,Trp_22n,LYDIST_DIM,G_nj,l_nj) else call hzd_abc
(aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,c_8, $ Geomg_cy2_8,Opr_opsxp0_8,Opr_opsxp2_8,Opr_opsyp0_8, $ Opr_opsyp2_8,G_ni,G_nj,Ldnh_maxy,l_nj, $ Trp_22max,Trp_22n,LYDIST_DIM,G_nj,l_nj) endif * * Vertical motion in pressure coord. * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ * * TRAJECTORY * ---------- call hzd_del2
(F_psdm, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(F_psd, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * Total divergence * ~~~~~~~~~~~~~~~~ * * TRAJECTORY * ---------- call hzd_del2
(F_tdm, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(F_td, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * if (Hzd_uvwdt_L) goto 9988 * * Mass related fields * ~~~~~~~~~~~~~~~~~~~ * * TRAJECTORY * ---------- call hzd_del2
(F_ipm, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(F_ip, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TRAJECTORY * ---------- call hzd_del2
(F_itm, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(F_it, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * !$omp parallel !$omp do do k = 2, Nk do j = 1,l_nj do i = 1,l_ni * * TRAJECTORY * ---------- F_itm(i,j,k) = F_ipm(i,j,k) + Cstvr_fistr_8(k) + F_xfis(i,j) * * TLM * --- F_it(i,j,k) = F_ip(i,j,k) * end do end do end do !$omp enddo * * updating phi' at the top * !$omp do do j = 1,l_nj do i = 1,l_ni * * TRAJECTORY * ---------- F_ipm(i,j,1) = F_itm(i,j,1) - Cstvr_fistr_8(1) - F_xfis(i,j) * * TLM * --- F_ip(i,j,1) = F_it(i,j,1) * end do end do !$omp enddo !$omp end parallel * * The temperature: T', T'lin & hence T * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ * * TRAJECTORY * ---------- call hzd_del2
(F_tpm, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(F_tp, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TRAJECTORY * ---------- call hzd_del2
(F_pltm, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(F_plt, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * !$omp parallel !$omp do do k=1, Nk do j=1,l_nj do i=1,l_ni * * TRAJECTORY * ---------- F_tm(i,j,k) = F_tpm(i,j,k) + Cstv_tstr_8 * * TLM * --- F_t(i,j,k) = F_tp(i,j,k) * end do end do end do !$omp enddo * * Save pi' for the diffusion of q' * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ if ( (.not.Schm_hydro_L) .and. Schm_difqp_L ) then !$omp do do k = 1, Nk do j = 1,l_nj do i = 1,l_ni * * TRAJECTORY * ---------- work_m(i,j,k) = F_pipm(i,j,k) * * TLM * --- work(i,j,k) = F_pip(i,j,k) * end do end do end do !$omp enddo endif * !$omp end parallel * * The hydrostatic pressure: pi' * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ * * TRAJECTORY * ---------- call hzd_del2
(F_pipm, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(F_pip, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * ***************************** * 3. Nonyhydrostatic model * ***************************** * if ( .not. Schm_hydro_L ) then * * Vertical wind (physical) * ~~~~~~~~~~~~~~~~~~~~~~~~ * * TRAJECTORY * ---------- call hzd_del2
(F_wm, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(F_w, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * if ( Schm_difqp_L ) then ! q' & related variables * * TRAJECTORY * ---------- call hzd_del2
(F_mum, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(F_mu, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TRAJECTORY * ---------- call hzd_del2
(F_mulm, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * TLM * --- call hzd_del2
(F_mul, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * Indirect diffusion of q' * ~~~~~~~~~~~~~~~~~~~~~~~~ !$omp parallel do do k=1, Nk ! do j=1,l_nj ! p = (pi)exp(q') do i=1,l_ni ! ~~~~~~~~~~~~~~~ * * TLM * --- work(i,j,k) = ( dble(work (i,j,k)) ) % *exp( dble(F_qpm(i,j,k)) ) + % ( Geomg_z_8(k) + dble(work_m(i,j,k)) ) % *exp( dble(F_qpm(i,j,k)) ) * dble(F_qp(i,j,k)) * * TRAJECTORY * ---------- work_m(i,j,k) = ( Geomg_z_8(k) + dble(work_m(i,j,k)) ) % *exp( dble(F_qpm(i,j,k)) ) * end do end do end do !$omp end parallel do * * TRAJECTORY * ---------- call hzd_del2
(work_m, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * * TLM * --- call hzd_del2
(work, wk1_8, $ Opr_opsxp0_8(G_ni+1), Opr_opsyp0_8(G_nj+1), $ aix_8,bix_8,cix_8,dix_8,aiy_8,biy_8,ciy_8,g1_8,g2_8, $ LDIST_DIM,Nk, G_ni,G_nj, Ldnh_maxy, $ Trp_12dmax,Trp_12dn, Trp_22max ,Trp_22n ,G_nj) * !$omp parallel do do k=1, Nk ! do j=1,l_nj ! q' = log(p/pi) do i=1,l_ni ! ~~~~~~~~~~~~~~ * * TRAJECTORY * ---------- F_qpm(i,j,k) = log( dble(work_m(i,j,k)) % /( Geomg_z_8(k) + dble(F_pipm(i,j,k)) ) ) * * TLM * --- F_qp(i,j,k) = (dble(work (i,j,k))*( Geomg_z_8(k) + dble(F_pipm(i,j,k))) - % dble(work_m(i,j,k))*( dble(F_pip (i,j,k))) ) % /(dble(work_m(i,j,k))*( Geomg_z_8(k) + dble(F_pipm(i,j,k))) ) * end do end do end do !$omp end parallel do * endif endif * endif * 9988 continue * 1000 format(/, + 3X,'TLM of PERFORM FACTORIZED HORIZONTAL DIFFUSION: (S/R HZD_FACT_TL)', +/3X,'=================================================================',/) * return end