/[MITgcm]/MITgcm/pkg/generic_advdiff/gad_dst3_adv_x.F
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Revision 1.13 - (hide annotations) (download)
Fri Feb 29 01:30:59 2008 UTC (16 years, 3 months ago) by mlosch
Branch: MAIN
CVS Tags: checkpoint62u, checkpoint62t, checkpoint62c, checkpoint62s, checkpoint62r, checkpoint62q, checkpoint62p, checkpoint62a, checkpoint62g, checkpoint62f, checkpoint62e, checkpoint62d, checkpoint62k, checkpoint62j, checkpoint62i, checkpoint62h, checkpoint62o, checkpoint62n, checkpoint62m, checkpoint62l, checkpoint60, checkpoint61, checkpoint62, checkpoint59q, checkpoint59p, checkpoint59r, checkpoint59o, checkpoint62b, checkpoint61f, checkpoint61n, 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: +3 -1 lines
improve vectorizability by moving a few statements out of the main loop

1 mlosch 1.13 C $Header: /u/gcmpack/MITgcm/pkg/generic_advdiff/gad_dst3_adv_x.F,v 1.12 2007/04/04 01:39:06 jmc Exp $
2 adcroft 1.2 C $Name: $
3 adcroft 1.1
4     #include "GAD_OPTIONS.h"
5    
6 jmc 1.10 CBOP
7     C !ROUTINE: GAD_DST3_ADV_X
8    
9     C !INTERFACE: ==========================================================
10 jmc 1.8 SUBROUTINE GAD_DST3_ADV_X(
11 jmc 1.12 I bi,bj,k, calcCFL, deltaTloc,
12 jmc 1.8 I uTrans, uFld,
13 jmc 1.4 I maskLocW, tracer,
14 adcroft 1.1 O uT,
15     I myThid )
16 jmc 1.10
17     C !DESCRIPTION:
18     C Calculates the area integrated zonal flux due to advection of a
19     C tracer using 3rd-order Direct Space and Time (DST-3) Advection Scheme
20    
21     C !USES: ===============================================================
22 adcroft 1.1 IMPLICIT NONE
23    
24     C == GLobal variables ==
25     #include "SIZE.h"
26     #include "GRID.h"
27 heimbach 1.5 #include "EEPARAMS.h"
28     #include "PARAMS.h"
29 adcroft 1.1 #include "GAD.h"
30    
31     C == Routine arguments ==
32 jmc 1.10 C !INPUT PARAMETERS: ===================================================
33     C bi,bj :: tile indices
34     C k :: vertical level
35 jmc 1.12 C calcCFL :: =T: calculate CFL number ; =F: take uFld as CFL.
36 jmc 1.10 C deltaTloc :: local time-step (s)
37     C uTrans :: zonal volume transport
38 jmc 1.12 C uFld :: zonal flow / CFL number
39 jmc 1.10 C tracer :: tracer field
40     C myThid :: thread number
41 adcroft 1.1 INTEGER bi,bj,k
42 jmc 1.12 LOGICAL calcCFL
43 heimbach 1.5 _RL deltaTloc
44 adcroft 1.1 _RL uTrans(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
45 jmc 1.8 _RL uFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
46 jmc 1.4 _RS maskLocW(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
47 adcroft 1.1 _RL tracer(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
48 jmc 1.10 INTEGER myThid
49    
50     C !OUTPUT PARAMETERS: ==================================================
51     C uT :: zonal advective flux
52 adcroft 1.1 _RL uT (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
53    
54     C == Local variables ==
55 jmc 1.10 C !LOCAL VARIABLES: ====================================================
56     C i,j :: loop indices
57 jmc 1.11 C uCFL :: Courant-Friedrich-Levy number
58 adcroft 1.1 INTEGER i,j
59 jmc 1.11 _RL Rjm,Rj,Rjp,uCFL,d0,d1
60 jmc 1.10 #ifdef OLD_DST3_FORMULATION
61 adcroft 1.2 _RL psiP,psiM,thetaP,thetaM
62 heimbach 1.5 _RL smallNo
63 jmc 1.6 c _RL Rjjm,Rjjp
64 heimbach 1.5
65     IF (inAdMode) THEN
66     smallNo = 1.0D-20
67     ELSE
68     smallNo = 1.0D-20
69     ENDIF
70 jmc 1.10 #endif
71 adcroft 1.1
72     DO j=1-Oly,sNy+Oly
73     uT(1-Olx,j)=0.
74     uT(2-Olx,j)=0.
75     uT(sNx+Olx,j)=0.
76 mlosch 1.13 ENDDO
77     DO j=1-Oly,sNy+Oly
78 adcroft 1.1 DO i=1-Olx+2,sNx+Olx-1
79 jmc 1.4 Rjp=(tracer(i+1,j)-tracer( i ,j))*maskLocW(i+1,j)
80     Rj =(tracer( i ,j)-tracer(i-1,j))*maskLocW( i ,j)
81     Rjm=(tracer(i-1,j)-tracer(i-2,j))*maskLocW(i-1,j)
82 adcroft 1.1
83 jmc 1.12 uCFL = uFld(i,j)
84     IF ( calcCFL ) uCFL = ABS( uFld(i,j)*deltaTloc
85 jmc 1.11 & *recip_dxC(i,j,bi,bj)*recip_deepFacC(k) )
86     d0=(2.-uCFL)*(1.-uCFL)*oneSixth
87     d1=(1.-uCFL*uCFL)*oneSixth
88 jmc 1.10 #ifdef OLD_DST3_FORMULATION
89 heimbach 1.5 IF ( ABS(Rj).LT.smallNo .OR.
90     & ABS(Rjm).LT.smallNo ) THEN
91     thetaP=0.
92     psiP=0.
93     ELSE
94     thetaP=(Rjm+smallNo)/(smallNo+Rj)
95     psiP=d0+d1*thetaP
96     ENDIF
97     IF ( ABS(Rj).LT.smallNo .OR.
98     & ABS(Rjp).LT.smallNo ) THEN
99     thetaM=0.
100     psiM=0.
101     ELSE
102     thetaM=(Rjp+smallNo)/(smallNo+Rj)
103     psiM=d0+d1*thetaM
104     ENDIF
105 adcroft 1.1 uT(i,j)=
106 jmc 1.10 & 0.5*(uTrans(i,j)+ABS(uTrans(i,j)))
107 adcroft 1.2 & *( Tracer(i-1,j) + psiP*Rj )
108 jmc 1.10 & +0.5*(uTrans(i,j)-ABS(uTrans(i,j)))
109 adcroft 1.2 & *( Tracer( i ,j) - psiM*Rj )
110 jmc 1.10 #else /* OLD_DST3_FORMULATION */
111     uT(i,j)=
112     & 0.5*(uTrans(i,j)+ABS(uTrans(i,j)))
113     & *( Tracer(i-1,j) + (d0*Rj+d1*Rjm) )
114     & +0.5*(uTrans(i,j)-ABS(uTrans(i,j)))
115     & *( Tracer( i ,j) - (d0*Rj+d1*Rjp) )
116     #endif /* OLD_DST3_FORMULATION */
117 adcroft 1.1
118     ENDDO
119     ENDDO
120    
121     RETURN
122     END

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