source: LMDZ6/trunk/libf/phylmdiso/cv3_estatmix.F90 @ 5274

Last change on this file since 5274 was 5274, checked in by abarral, 17 hours ago

Replace yomcst.h by existing module

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1SUBROUTINE cv3_estatmix(len, nd, iflag, plim1, plim2, p, ph, &
2                       t, q, u, v, h, gz, w, &
3                       wi, nk, tmix, thmix, qmix, qsmix, umix, vmix, plcl &
4#ifdef ISO
5     &                 ,xt,xtmix &
6#endif
7                       )
8#ifdef ISO
9    use infotrac_phy, ONLY: ntiso
10#endif
11  ! **************************************************************
12  ! *
13  ! CV3_ESTATMIX  Determine the properties of an adiabatic updraft  *
14  !                made of air coming from several layers by        *
15  !                mixing static energy                             *
16  !                                                                 *
17  ! written by   : Grandpeix Jean-Yves, 28/12/2001, 13.14.24        *
18  ! modified by :  Filiberti M-A 06/2005 vectorisation              *
19  ! ****************************************************************
20
21  USE yomcst_mod_h, ONLY: RPI, RCLUM, RHPLA, RKBOL, RNAVO                   &
22          , RDAY, REA, REPSM, RSIYEA, RSIDAY, ROMEGA                  &
23          , R_ecc, R_peri, R_incl                                      &
24          , RA, RG, R1SA                                         &
25          , RSIGMA                                                     &
26          , R, RMD, RMV, RD, RV, RCPD                    &
27          , RMO3, RMCO2, RMC, RMCH4, RMN2O, RMCFC11, RMCFC12        &
28          , RCPV, RCVD, RCVV, RKAPPA, RETV, eps_w                    &
29          , RCW, RCS                                                 &
30          , RLVTT, RLSTT, RLMLT, RTT, RATM                           &
31          , RESTT, RALPW, RBETW, RGAMW, RALPS, RBETS, RGAMS            &
32          , RALPD, RBETD, RGAMD
33IMPLICIT NONE
34  ! ==============================================================
35
36  ! estatmix : determines theta, t, q, qs, u and v of the lifted mixture
37  ! made of air between plim1 and plim2 with weighting w.
38  ! If plim1 and plim2 fall within the same model layer, then theta, ... v
39  ! are those of that layer.
40  ! A minimum value (dpmin) is imposed upon plim1-plim2
41
42  ! ===============================================================
43
44  include "cvthermo.h"
45  include "YOETHF.h"
46
47  include "FCTTRE.h"
48!inputs:
49  INTEGER, INTENT (IN)                      :: nd, len
50  INTEGER, DIMENSION (len), INTENT (IN)     :: nk
51  REAL, DIMENSION (len), INTENT (IN)        :: plim1, plim2
52  REAL, DIMENSION (len,nd), INTENT (IN)     :: t, q
53  REAL, DIMENSION (len,nd), INTENT (IN)     :: u, v
54  REAL, DIMENSION (len,nd), INTENT (IN)     :: h ! static energy of the layers
55  REAL, DIMENSION (len,nd), INTENT (IN)     :: gz
56  REAL, DIMENSION (nd), INTENT (IN)         :: w
57  REAL, DIMENSION (len,nd), INTENT (IN)     :: p
58  REAL, DIMENSION (len,nd+1), INTENT (IN)   :: ph
59#ifdef ISO
60  REAL, DIMENSION (ntiso,len,nd), INTENT (IN)     :: xt
61#endif
62!input/output:
63  INTEGER, DIMENSION (len), INTENT (INOUT)  ::  iflag
64!outputs:
65  REAL, DIMENSION (len), INTENT (OUT)       :: tmix, thmix, qmix
66  REAL, DIMENSION (len), INTENT (OUT)       :: umix, vmix
67  REAL, DIMENSION (len), INTENT (OUT)       :: qsmix
68  REAL, DIMENSION (len), INTENT (OUT)       :: plcl
69  REAL, DIMENSION (len,nd), INTENT (OUT)    :: wi
70#ifdef ISO
71  REAL, DIMENSION (ntiso,len), INTENT (OUT)     :: xtmix
72#endif
73!internal variables :
74  INTEGER i, j
75  INTEGER niflag7
76  INTEGER, DIMENSION(len)                   :: j1, j2
77  REAL                                      :: a, b
78  REAL                                      :: cpn
79  REAL                                      :: x, y, p0, zdelta, zcor
80  REAL, SAVE                                :: dpmin=1.
81!$OMP THREADPRIVATE(dpmin)
82  REAL, DIMENSION(len)                      :: plim2p  ! = min(plim2(:),plim1(:)-dpmin)
83  REAL, DIMENSION(len)                      :: dpw, coef
84  REAL, DIMENSION(len)                      :: hmix ! static energy of the updraft
85  REAL, DIMENSION(len)                      :: rdcp, pnk
86  REAL, DIMENSION(len)                      :: rh, chi
87  REAL, DIMENSION(len)                      :: eqwght
88  REAL, DIMENSION(len,nd)                   :: p1, p2
89#ifdef ISO
90  INTEGER ixt
91#endif
92
93
94!!  print *,' ->cv3_vertmix, plim1,plim2 ', plim1,plim2   !jyg
95  plim2p(:) = min(plim2(:),plim1(:)-dpmin)
96  j1(:)=nd
97  j2(:) = 0
98  DO j = 1, nd
99    DO i = 1, len
100      IF (plim1(i)<=ph(i,j)) j1(i) = j
101!!!      IF (plim2p(i)>=ph(i,j+1) .AND. plim2p(i)<ph(i,j)) j2(i) = j
102      IF (plim2p(i)< ph(i,j)) j2(i) = j
103    END DO
104  END DO
105
106  DO j = 1, nd
107    DO i = 1, len
108      wi(i, j) = 0.
109    END DO
110  END DO
111  DO i = 1, len
112    hmix(i) = 0.
113    qmix(i) = 0.
114    umix(i) = 0.
115    vmix(i) = 0.
116    dpw(i) = 0.
117    pnk(i) = p(i, nk(i))
118#ifdef ISO
119    xtmix(:,i) = 0.
120#endif
121  END DO
122  eqwght(:) = 0.
123
124  p0 = 1000.
125
126  DO i = 1, len
127    IF (j2(i) < j1(i)) THEN
128      coef(i) = 1.
129      eqwght(i) = 1.
130    ELSE
131      coef(i) = 1./(plim1(i)-plim2p(i))
132    ENDIF
133  END DO
134
135!!  print *,'cv3_vertmix, j1,j2,coef ', j1,j2,coef  !jyg
136
137  DO j = 1, nd
138    DO i = 1, len
139      IF (j>=j1(i) .AND. j<=j2(i)) THEN
140        p1(i, j) = min(ph(i,j), plim1(i))
141        p2(i, j) = max(ph(i,j+1), plim2p(i))
142        ! CRtest:couplage thermiques: deja normalise
143        ! wi(i,j) = w(j)
144        ! print*,'wi',wi(i,j)
145        wi(i, j) = w(j)*(p1(i,j)-p2(i,j))*coef(i)+eqwght(i)
146        dpw(i) = dpw(i) + wi(i, j)
147
148!!  print *,'cv3_vertmix, j, wi(1,j),dpw ', j, wi(1,j),dpw  !jyg
149
150      END IF
151    END DO
152  END DO
153
154  ! CR:print
155  ! do i=1,len
156  ! print*,'plim',plim1(i),plim2p(i)
157  ! enddo
158  DO j = 1, nd
159    DO i = 1, len
160      IF (j>=j1(i) .AND. j<=j2(i)) THEN
161        wi(i, j) = wi(i, j)/dpw(i)
162        hmix(i) = hmix(i) + h(i, j)*wi(i, j)
163        qmix(i) = qmix(i) +  q(i, j)*wi(i, j)
164        umix(i) = umix(i) +  u(i, j)*wi(i, j)
165        vmix(i) = vmix(i) +  v(i, j)*wi(i, j)
166#ifdef ISO
167        do ixt=1,ntiso
168          xtmix(ixt,i) = xtmix(ixt,i) +  xt(ixt,i, j)*wi(i, j)
169        enddo
170#endif
171      END IF
172    END DO
173  END DO
174
175  DO i = 1, len
176    rdcp(i) = (rrd*(1.-qmix(i))+qmix(i)*rrv)/(cpd*(1.-qmix(i))+qmix(i)*cpv)
177  END DO
178
179
180!!  print *,'cv3_vertmix, rdcp ', rdcp  !jyg
181
182  DO i = 1, len
183    tmix(i) = (hmix(i) - gz(i,1))/(cpd*(1.-qmix(i)) + qmix(i)*cpv)
184    !      (Use of Cpv since we are dealing with dry static energy)
185    thmix(i) = tmix(i)*(p0/pnk(i))**rdcp(i)
186    ! print*,'tmix thmix hmix ',tmix(i),thmix(i),hmix(i)
187    zdelta = max(0., sign(1.,rtt-tmix(i)))
188    qsmix(i) = r2es*foeew(tmix(i), zdelta)/(pnk(i)*100.)
189    qsmix(i) = min(0.5, qsmix(i))
190    zcor = 1./(1.-retv*qsmix(i))
191    qsmix(i) = qsmix(i)*zcor
192  END DO
193
194  ! -------------------------------------------------------------------
195  ! --- Calculate lifted condensation level of air at parcel origin level
196  ! --- (Within 0.2% of formula of Bolton, MON. WEA. REV.,1980)
197  ! -------------------------------------------------------------------
198
199  a = 1669.0 ! convect3
200  b = 122.0 ! convect3
201
202
203  niflag7 = 0
204  DO i = 1, len
205
206    IF (iflag(i)/=7) THEN ! modif sb Jun7th 2002
207
208      rh(i) = qmix(i)/qsmix(i)
209      chi(i) = tmix(i)/(a-b*rh(i)-tmix(i)) ! convect3
210      ! ATTENTION, la LIGNE DESSOUS A ETE RAJOUTEE ARBITRAIREMENT ET
211      ! MASQUE UN PB POTENTIEL
212      chi(i) = max(chi(i), 0.)
213      rh(i) = max(rh(i), 0.)
214      plcl(i) = pnk(i)*(rh(i)**chi(i))
215      IF (((plcl(i)<200.0) .OR. (plcl(i)>=2000.0)) .AND. (iflag(i)==0)) &
216          iflag(i) = 8
217
218    ELSE
219
220      niflag7 = niflag7 + 1
221      plcl(i) = plim2p(i)
222
223    END IF ! iflag=7
224
225    ! print*,'NIFLAG7  =',niflag7
226
227  END DO
228
229!!  print *,' cv3_vertmix->'  !jyg
230
231
232  RETURN
233END SUBROUTINE cv3_estatmix
234
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