/[MITgcm]/MITgcm/pkg/generic_advdiff/gad_dst3fl_adv_x.F
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Revision 1.3 - (hide annotations) (download)
Mon Sep 10 00:24:14 2001 UTC (22 years, 8 months ago) by adcroft
Branch: MAIN
CVS Tags: checkpoint40pre9, release1_b1, checkpoint43, ecco-branch-mod1, release1_beta1, checkpoint42, checkpoint40, checkpoint41
Branch point for: release1, ecco-branch, release1_coupled
Changes since 1.2: +13 -15 lines
Avoid divisions by zero for zero cfl.

1 adcroft 1.3 C $Header: /u/gcmpack/models/MITgcmUV/pkg/generic_advdiff/gad_dst3fl_adv_x.F,v 1.2 2001/09/05 17:46:03 heimbach Exp $
2 heimbach 1.2 C $Name: $
3 adcroft 1.1
4     #include "GAD_OPTIONS.h"
5    
6     SUBROUTINE GAD_DST3FL_ADV_X(
7     I bi,bj,k,deltaT,
8     I uTrans, uVel,
9     I tracer,
10     O uT,
11     I myThid )
12     C /==========================================================\
13     C | SUBROUTINE GAD_DST3FL_ADV_X |
14     C | o Compute Zonal advective Flux of Tracer using |
15     C | 3rd Order DST Sceheme with flux limiting |
16     C |==========================================================|
17     IMPLICIT NONE
18    
19     C == GLobal variables ==
20     #include "SIZE.h"
21     #include "GRID.h"
22     #include "GAD.h"
23    
24     C == Routine arguments ==
25     INTEGER bi,bj,k
26     _RL deltaT
27     _RL uTrans(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
28     _RL uVel(1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr,nSx,nSy)
29     _RL tracer(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
30     _RL uT (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
31     INTEGER myThid
32    
33     C == Local variables ==
34     INTEGER i,j
35 adcroft 1.3 _RL Rjm,Rj,Rjp,cfl,d0,d1,psiP,psiM,thetaP,thetaM
36 adcroft 1.1
37     DO j=1-Oly,sNy+Oly
38     uT(1-Olx,j)=0.
39     uT(2-Olx,j)=0.
40     uT(sNx+Olx,j)=0.
41     DO i=1-Olx+2,sNx+Olx-1
42     Rjp=(tracer(i+1,j)-tracer(i,j))*maskW(i+1,j,k,bi,bj)
43     Rj =(tracer(i,j)-tracer(i-1,j))*maskW(i,j,k,bi,bj)
44     Rjm=(tracer(i-1,j)-tracer(i-2,j))*maskW(i-1,j,k,bi,bj)
45    
46 adcroft 1.3 cfl=abs(uVel(i,j,k,bi,bj)*deltaT*recip_dxc(i,j,bi,bj))
47     d0=(2.-cfl)*(1.-cfl)*oneSixth
48     d1=(1.-cfl*cfl)*oneSixth
49     c thetaP=0.
50     c IF (Rj.NE.0.) thetaP=Rjm/Rj
51     thetaP=Rjm/(1.D-20+Rj)
52 adcroft 1.1 psiP=d0+d1*thetaP
53 adcroft 1.3 psiP=max(0., min(min(1.,psiP),(1.-cfl)/(1.D-20+cfl)*thetaP))
54     thetaM=Rjp/(1.D-20+Rj)
55     c thetaM=0.
56     c IF (Rj.NE.0.) thetaM=Rjp/Rj
57 adcroft 1.1 psiM=d0+d1*thetaM
58 adcroft 1.3 psiM=max(0., min(min(1.,psiM),(1.-cfl)/(1.D-20+cfl)*thetaM))
59 adcroft 1.1 uT(i,j)=
60 heimbach 1.2 & 0.5*(uTrans(i,j)+abs(uTrans(i,j)))
61     & *( Tracer(i-1,j) + psiP*Rj )
62     & +0.5*(uTrans(i,j)-abs(uTrans(i,j)))
63     & *( Tracer( i ,j) - psiM*Rj )
64 adcroft 1.1
65     ENDDO
66     ENDDO
67    
68     RETURN
69     END

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