source: trunk/LMDZ.MARS/libf/phymars/vdif_cd.F @ 499

Last change on this file since 499 was 499, checked in by acolaitis, 13 years ago

M 498 libf/phymars/calltherm_interface.F90
------------------> Added computation of wstar. Wmax is no longer an output.

M 498 libf/phymars/physiq.F
------------------> Minor changes.

M 498 libf/phymars/vdif_cd.F
------------------> Changed computation of bulk Richardson number to allow more unstable configurations.

M 498 libf/phymars/vdifc.F
------------------> Changed computation of surface conductance coefficients following a new approach. Comparisons with LES are much better.

File size: 7.3 KB
Line 
1      SUBROUTINE vdif_cd(ngrid,nlay,pz0,
2     &           pg,pz,pu,pv,wstar,pts,ph,pcdv,pcdh)
3      IMPLICIT NONE
4c=======================================================================
5c
6c   Subject: computation of the surface drag coefficient using the
7c   -------  approch developed by Loui for ECMWF.
8c
9c   Author: Frederic Hourdin  15 /10 /93
10c   Modified by : Arnaud Colaitis 03/08/11
11c   -------
12c
13c   Arguments:
14c   ----------
15c
16c   inputs:
17c   ------
18c     ngrid            size of the horizontal grid
19c     pg               gravity (m s -2)
20c     pz(ngrid,nlay)   height of layers
21c     pu(ngrid,nlay)   u component of the wind
22c     pv(ngrid,nlay)   v component of the wind
23c     pts(ngrid)       surface temperature
24c     ph(ngrid)        potential temperature T*(p/ps)^kappa
25c
26c   outputs:
27c   --------
28c     pcdv(ngrid)      Cd for the wind
29c     pcdh(ngrid)      Cd for potential temperature
30c
31c=======================================================================
32c
33c-----------------------------------------------------------------------
34c   Declarations:
35c   -------------
36
37#include "comcstfi.h"
38#include "callkeys.h"
39
40c   Arguments:
41c   ----------
42
43      INTEGER, INTENT(IN) :: ngrid,nlay
44      REAL, INTENT(IN) :: pz0(ngrid)
45      REAL, INTENT(IN) :: pg,pz(ngrid,nlay)
46      REAL, INTENT(IN) :: pu(ngrid,nlay),pv(ngrid,nlay)
47      REAL, INTENT(IN) :: pts(ngrid),ph(ngrid,nlay)
48      REAL, INTENT(IN) :: wstar(ngrid)
49      REAL, INTENT(OUT) :: pcdv(ngrid),pcdh(ngrid) ! momentum and heat drag coefficient
50
51c   Local:
52c   ------
53
54      INTEGER ig
55
56      REAL karman,nu    ! Von Karman constant and fluid kinematic viscosity
57      LOGICAL firstcal
58      DATA karman,nu/.41,0.001/
59      DATA firstcal/.true./
60      SAVE karman,nu
61
62c    Local(2):
63c    ---------
64      REAL z1,zcd0
65
66      REAL rib(ngrid)  ! Bulk Richardson number
67      REAL rig(ngrid)  ! Gradient Richardson number
68      REAL fm(ngrid) ! stability function for momentum
69      REAL fh(ngrid) ! stability function for heat
70      REAL z1z0,z1z0t ! ratios z1/z0 and z1/z0T
71
72c phim = 1+betam*zeta   or   (1-bm*zeta)**am
73c phih = alphah + betah*zeta    or   alphah(1.-bh*zeta)**ah
74      REAL betam, betah, alphah, bm, bh, lambda
75c ah and am are assumed to be -0.25 and -0.5 respectively
76
77      REAL cdn(ngrid),chn(ngrid)  ! neutral momentum and heat drag coefficient
78      REAL pz0t        ! initial thermal roughness length. (local)
79      REAL ric         ! critical richardson number
80      REAL reynolds(ngrid)    ! reynolds number for UBL
81      REAL prandtl(ngrid)     ! prandtl number for UBL
82      REAL pz0tcomp(ngrid)     ! computed z0t
83      REAL ite
84      REAL residual
85      REAL zu2(ngrid)
86c-----------------------------------------------------------------------
87c   couche de surface:
88c   ------------------
89
90c Original formulation :
91
92      if(.not.callrichsl) then
93
94      DO ig=1,ngrid
95         z1=1.E+0 + pz(ig,1)/pz0(ig)
96         zcd0=karman/log(z1)
97         zcd0=zcd0*zcd0
98         pcdv(ig)=zcd0
99         pcdh(ig)=zcd0
100      ENDDO
101     
102!      print*,'old : cd,ch; ',pcdv,pcdh
103      else
104
105      reynolds(:)=0.
106
107c New formulation (AC) :
108
109c phim = 1+betam*zeta   or   (1-bm*zeta)**am
110c phih = alphah + betah*zeta    or   alphah(1.-bh*zeta)**ah
111c am=-0.25, ah=-0.5
112
113      pz0t = 0.     ! for the sake of simplicity
114      pz0tcomp(:) = 0.1*pz0(:)
115      rib(:)=0.
116
117      pcdv(:)=0.
118      pcdh(:)=0.
119
120c this formulation assumes alphah=1., implying betah=betam
121c We use Dyer et al. parameters, as they cover a broad range of Richardson numbers :
122      bm=16.            !UBL
123      bh=16.            !UBL
124      alphah=1.
125      betam=5.         !SBL
126      betah=5.         !SBL
127      lambda=(sqrt(bh/bm))/alphah
128      ric=betah/(betam**2)
129
130      DO ig=1,ngrid
131
132         ite=0.
133         residual=abs(pz0tcomp(ig)-pz0t)
134
135         do while((residual .gt. 0.01*pz0(ig)) .and.  (ite .lt. 10.))
136
137         pz0t=pz0tcomp(ig)
138
139         if ((pu(ig,1) .ne. 0.) .or. (pv(ig,1) .ne. 0.)) then
140
141c Classical Richardson number formulation
142
143c         rib(ig) = (pg/ph(ig,1))*pz(ig,1)*(ph(ig,1)-pts(ig))
144c     &           /(pu(ig,1)*pu(ig,1) + pv(ig,1)*pv(ig,1))
145
146c Richardson number formulation proposed by D.E. England et al. (1995)
147
148!         zu2=MAX(pu(ig,1)*pu(ig,1) + pv(ig,1)*pv(ig,1),0.25*wstar(ig)**2)
149!         zu2=pu(ig,1)*pu(ig,1) + pv(ig,1)*pv(ig,1)
150         zu2(ig)=MAX(pu(ig,1)*pu(ig,1) + pv(ig,1)*pv(ig,1),             &
151     &      (0.3*wstar(ig))**2)
152!       zu2(ig)=pu(ig,1)*pu(ig,1) + pv(ig,1)*pv(ig,1) + (0.5*wstar(ig))**2
153
154               ! we add the wstar to simulate
155               ! bulk Ri changes due to subgrid wind feeding the thermals
156
157!          rig(ig) = (pg/ph(ig,1))*((pz(ig,1)-pz0(ig))**2
158!     &         /(pz(ig,1)-pz0t))*(ph(ig,1)-pts(ig))
159!     &         /zu2
160
161          rib(ig) = (pg/ph(ig,1))
162!     &      *pz(ig,1)*pz0(ig)/sqrt(pz(ig,1)*pz0t)
163     &      *sqrt(pz(ig,1)*pz0(ig))
164     &      *(((log(pz(ig,1)/pz0(ig)))**2)/(log(pz(ig,1)/pz0t)))
165     &      *(ph(ig,1)-pts(ig))
166     &  /zu2(ig)
167
168         else
169         print*,'warning, infinite Richardson at surface'
170         print*,pu(ig,1),pv(ig,1)
171         rib(ig) = ric          ! traiter ce cas !
172         endif
173
174         z1z0=pz(ig,1)/pz0(ig)
175         z1z0t=pz(ig,1)/pz0t
176
177         cdn(ig)=karman/log(z1z0)
178         cdn(ig)=cdn(ig)*cdn(ig)
179         chn(ig)=cdn(ig)*log(z1z0)/log(z1z0t)
180
181c Stable case :
182      if (rib(ig) .gt. 0.) then
183c From D.E. England et al. (95)
184      prandtl(ig)=1.
185         if(rib(ig) .lt. ric) then
186c Assuming alphah=1. and bh=bm for stable conditions :
187            fm(ig)=((ric-rib(ig))/ric)**2
188            fh(ig)=((ric-rib(ig))/ric)**2
189         else
190c For Ri>Ric, we consider Ri->Infinity => no turbulent mixing at surface
191            fm(ig)=0.
192            fh(ig)=0.
193         endif
194c Unstable case :
195      else
196c From D.E. England et al. (95)
197         fm(ig)=sqrt(1.-lambda*bm*rib(ig))
198         fh(ig)=(1./alphah)*((1.-lambda*bh*rib(ig))**0.5)*
199     &                     (1.-lambda*bm*rib(ig))**0.25
200         prandtl(ig)=alphah*((1.-lambda*bm*rib(ig))**0.25)/
201     &             ((1.-lambda*bh*rib(ig))**0.5)
202      endif
203
204       reynolds(ig)=karman*sqrt(fm(ig))
205     &      *sqrt(zu2(ig))
206c     &      *sqrt(pu(ig,1)**2 + pv(ig,1)**2)
207     &       *pz0(ig)/(log(z1z0)*nu)
208       pz0tcomp(ig)=pz0(ig)*exp(-karman*7.3*
209     &              (reynolds(ig)**0.25)*(prandtl(ig)**0.5))
210
211         
212      residual = abs(pz0t-pz0tcomp(ig))
213      ite = ite+1
214!      print*, "iteration nnumber, residual",ite,residual
215
216      enddo  ! of while
217
218          pz0t=0.
219
220c Drag computation :
221
222         pcdv(ig)=cdn(ig)*fm(ig)
223         pcdh(ig)=chn(ig)*fh(ig)
224       
225      ENDDO
226!
227!      print*,'new : cd,ch; ',pcdv,pcdh
228
229! Some useful diagnostics :
230
231!       call WRITEDIAGFI(ngrid,'RiB',
232!     &              'Bulk Richardson nb','no units',
233!     &                         2,rib)
234!                call WRITEDIAGFI(ngrid,'RiG',
235!     &              'Grad Richardson nb','no units',
236!     &                         2,rig)
237!        call WRITEDIAGFI(ngrid,'Pr',
238!     &              'Prandtl nb','no units',
239!     &                         0,prandtl)
240!       call WRITEDIAGFI(ngrid,'Re',
241!     &              'Reynolds nb','no units',
242!     &                         0,reynolds)
243!        call WRITEDIAGFI(ngrid,'z0tcomp',
244!     &              'computed z0t','m',
245!     &                         2,pz0tcomp)
246
247
248      endif !of if call richardson surface layer
249
250      RETURN
251      END
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