/[MITgcm]/MITgcm/pkg/generic_advdiff/gad_dst3fl_adv_y.F
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Revision 1.13 - (hide annotations) (download)
Wed Apr 4 01:39:06 2007 UTC (17 years, 2 months ago) by jmc
Branch: MAIN
CVS Tags: checkpoint62v, checkpoint62u, checkpoint62t, checkpoint62c, checkpoint59, checkpoint62s, checkpoint62r, checkpoint62q, checkpoint62p, checkpoint62a, checkpoint62g, checkpoint62f, checkpoint62e, checkpoint62d, checkpoint62k, checkpoint62j, checkpoint62i, checkpoint62h, checkpoint62o, checkpoint62n, checkpoint62m, checkpoint62l, checkpoint62w, checkpoint62z, checkpoint62y, checkpoint62x, checkpoint58y_post, checkpoint60, checkpoint61, checkpoint62, checkpoint63, checkpoint63a, checkpoint63b, checkpoint63c, checkpoint59q, checkpoint59p, checkpoint59r, checkpoint59e, checkpoint59d, checkpoint59g, checkpoint59f, checkpoint59a, checkpoint59c, checkpoint59b, checkpoint59m, checkpoint59l, checkpoint59o, checkpoint59n, checkpoint59i, checkpoint59h, checkpoint59k, checkpoint62b, checkpoint61f, checkpoint61n, checkpoint59j, checkpoint61q, checkpoint61e, checkpoint61g, checkpoint61d, checkpoint61b, checkpoint61c, checkpoint61a, checkpoint61o, checkpoint61l, checkpoint61m, checkpoint61j, checkpoint61k, checkpoint61h, checkpoint61i, checkpoint61v, checkpoint61w, checkpoint61t, checkpoint61u, checkpoint61r, checkpoint61s, checkpoint61p, checkpoint61z, checkpoint61x, checkpoint61y
Changes since 1.12: +5 -6 lines
add a logical argument "calcCFL" to DST horizontal Advection S/R
(if false, assume that uFld,vFld are already CFL number in x,y dir)

1 jmc 1.13 C $Header: /u/gcmpack/MITgcm/pkg/generic_advdiff/gad_dst3fl_adv_y.F,v 1.12 2006/12/05 22:21:50 jmc Exp $
2 jmc 1.5 C $Name: $
3 adcroft 1.1
4     #include "GAD_OPTIONS.h"
5    
6 jmc 1.10 SUBROUTINE GAD_DST3FL_ADV_Y(
7 jmc 1.13 I bi,bj,k, calcCFL, deltaTloc,
8 jmc 1.10 I vTrans, vFld,
9 jmc 1.6 I maskLocS, tracer,
10 adcroft 1.1 O vT,
11     I myThid )
12     C /==========================================================\
13     C | SUBROUTINE GAD_DST3FL_ADV_Y |
14     C | o Compute Meridional 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 jmc 1.13 LOGICAL calcCFL
27 heimbach 1.7 _RL deltaTloc
28 adcroft 1.1 _RL vTrans(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
29 jmc 1.10 _RL vFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
30 jmc 1.6 _RS maskLocS(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
31 adcroft 1.1 _RL tracer(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
32     _RL vT (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
33     INTEGER myThid
34    
35     C == Local variables ==
36     INTEGER i,j
37 jmc 1.12 _RL Rjm,Rj,Rjp,vCFL,d0,d1,psiP,psiM,thetaP,thetaM
38 jmc 1.8 _RL thetaMax
39     PARAMETER( thetaMax = 1.D+20 )
40 adcroft 1.1
41     DO i=1-Olx,sNx+Olx
42 jmc 1.8 vT(i,1-Oly)=0. _d 0
43     vT(i,2-Oly)=0. _d 0
44     vT(i,sNy+Oly)=0. _d 0
45 adcroft 1.1 ENDDO
46     DO j=1-Oly+2,sNy+Oly-1
47     DO i=1-Olx,sNx+Olx
48 jmc 1.6 Rjp=(tracer(i,j+1)-tracer(i, j ))*maskLocS(i,j+1)
49     Rj =(tracer(i, j )-tracer(i,j-1))*maskLocS(i, j )
50     Rjm=(tracer(i,j-1)-tracer(i,j-2))*maskLocS(i,j-1)
51 adcroft 1.1
52 jmc 1.13 vCFL = vFld(i,j)
53     IF ( calcCFL ) vCFL = ABS( vFld(i,j)*deltaTloc
54 jmc 1.12 & *recip_dyC(i,j,bi,bj)*recip_deepFacC(k) )
55     d0=(2. _d 0 -vCFL)*(1. _d 0 -vCFL)*oneSixth
56     d1=(1. _d 0 -vCFL*vCFL)*oneSixth
57 jmc 1.8
58     C- the old version: can produce overflow, division by zero,
59     c and is wrong for tracer with low concentration:
60     c thetaP=Rjm/(1.D-20+Rj)
61     c thetaM=Rjp/(1.D-20+Rj)
62     C- the right expression, but not bounded:
63 heimbach 1.4 c thetaP=0.D0
64 jmc 1.8 c thetaM=0.D0
65 heimbach 1.4 c IF (Rj.NE.0.D0) thetaP=Rjm/Rj
66 jmc 1.8 c IF (Rj.NE.0.D0) thetaM=Rjp/Rj
67     C- prevent |thetaP,M| to reach too big value:
68     IF ( ABS(Rj)*thetaMax .LE. ABS(Rjm) ) THEN
69     thetaP=SIGN(thetaMax,Rjm*Rj)
70     ELSE
71     thetaP=Rjm/Rj
72     ENDIF
73     IF ( ABS(Rj)*thetaMax .LE. ABS(Rjp) ) THEN
74     thetaM=SIGN(thetaMax,Rjp*Rj)
75     ELSE
76     thetaM=Rjp/Rj
77     ENDIF
78    
79 adcroft 1.1 psiP=d0+d1*thetaP
80 jmc 1.12 psiP=MAX(0. _d 0,MIN(MIN(1. _d 0,psiP),
81     & thetaP*(1. _d 0 -vCFL)/(vCFL+1. _d -20) ))
82 adcroft 1.1 psiM=d0+d1*thetaM
83 jmc 1.12 psiM=MAX(0. _d 0,MIN(MIN(1. _d 0,psiM),
84     & thetaM*(1. _d 0 -vCFL)/(vCFL+1. _d -20) ))
85 jmc 1.8
86 adcroft 1.1 vT(i,j)=
87 jmc 1.12 & 0.5*(vTrans(i,j)+ABS(vTrans(i,j)))
88 heimbach 1.2 & *( Tracer(i,j-1) + psiP*Rj )
89 jmc 1.12 & +0.5*(vTrans(i,j)-ABS(vTrans(i,j)))
90 heimbach 1.2 & *( Tracer(i, j ) - psiM*Rj )
91 adcroft 1.1
92     ENDDO
93     ENDDO
94    
95     RETURN
96     END

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