/[MITgcm]/MITgcm/pkg/generic_advdiff/gad_fluxlimit_adv_r.F
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Contents of /MITgcm/pkg/generic_advdiff/gad_fluxlimit_adv_r.F

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Revision 1.10 - (show annotations) (download)
Sun Jun 18 23:31:35 2006 UTC (17 years, 11 months ago) by jmc
Branch: MAIN
Changes since 1.9: +10 -10 lines
change velocity argument from a 5-indices global array to a local 2-D array
 (but still not used)

1 C $Header: /u/gcmpack/MITgcm/pkg/generic_advdiff/gad_fluxlimit_adv_r.F,v 1.9 2005/10/22 20:12:23 jmc Exp $
2 C $Name: $
3
4 #include "GAD_OPTIONS.h"
5
6 CBOP
7 C !ROUTINE: GAD_FLUXLIMIT_ADV_R
8
9 C !INTERFACE: ==========================================================
10 SUBROUTINE GAD_FLUXLIMIT_ADV_R(
11 I bi,bj,k,dTarg,
12 I rTrans, wFld,
13 I tracer,
14 O wT,
15 I myThid )
16
17 C !DESCRIPTION:
18 C Calculates the area integrated vertical flux due to advection of a tracer
19 C using second-order interpolation with a flux limiter:
20 C \begin{equation*}
21 C F^x_{adv} = W \overline{ \theta }^k
22 C - \frac{1}{2} \left(
23 C [ 1 - \psi(C_r) ] |W|
24 C + W \frac{w \Delta t}{\Delta r_c} \psi(C_r)
25 C \right) \delta_k \theta
26 C \end{equation*}
27 C where the $\psi(C_r)$ is the limiter function and $C_r$ is
28 C the slope ratio.
29
30 C !USES: ===============================================================
31 IMPLICIT NONE
32 #include "SIZE.h"
33 #include "GRID.h"
34 #include "EEPARAMS.h"
35 #include "PARAMS.h"
36
37 C !INPUT PARAMETERS: ===================================================
38 C bi,bj :: tile indices
39 C k :: vertical level
40 C rTrans :: vertical volume transport
41 C wFld :: vertical flow
42 C tracer :: tracer field
43 C myThid :: thread number
44 INTEGER bi,bj,k
45 _RL dTarg
46 _RL rTrans(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
47 _RL wFld (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
48 _RL tracer(1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr)
49 INTEGER myThid
50
51 C !OUTPUT PARAMETERS: ==================================================
52 C wT :: vertical advective flux
53 _RL wT (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
54
55 C !LOCAL VARIABLES: ====================================================
56 C i,j :: loop indices
57 C kp1 :: =min( k+1 , Nr )
58 C km1 :: =max( k-1 , 1 )
59 C km2 :: =max( k-2 , 1 )
60 C bi,bj :: tile indices or (1,1) depending on use
61 C Cr :: slope ratio
62 C Rjm,Rj,Rjp :: differences at i-1,i,i+1
63 C wLoc :: velocity, vertical component
64 INTEGER i,j,kp1,km1,km2
65 _RL Cr,Rjm,Rj,Rjp
66 _RL wLoc
67 C Statement function provides Limiter(Cr)
68 #include "GAD_FLUX_LIMITER.h"
69 CEOP
70
71 km2=MAX(1,k-2)
72 km1=MAX(1,k-1)
73 kp1=MIN(Nr,k+1)
74
75 IF ( k.GT.Nr) THEN
76 DO j=1-Oly,sNy+Oly
77 DO i=1-Olx,sNx+Olx
78 wT(i,j) = 0.
79 ENDDO
80 ENDDO
81 ELSE
82 DO j=1-Oly,sNy+Oly
83 DO i=1-Olx,sNx+Olx
84
85 c wLoc = wFld(i,j)
86 wLoc = rTrans(i,j)*recip_rA(i,j,bi,bj)
87 Rjp=(tracer(i,j,kp1)-tracer(i,j,k))
88 & *maskC(i,j,kp1,bi,bj)
89 Rj= (tracer(i,j,k) -tracer(i,j,kM1))
90 Rjm=(tracer(i,j,km1)-tracer(i,j,kM2))
91 & *maskC(i,j,km2,bi,bj)
92
93 IF (Rj.NE.0.) THEN
94 IF (rTrans(i,j).LT.0.) THEN
95 Cr=Rjm/Rj
96 ELSE
97 Cr=Rjp/Rj
98 ENDIF
99 ELSE
100 IF (rTrans(i,j).LT.0.) THEN
101 Cr=Rjm*1.E20
102 ELSE
103 Cr=Rjp*1.E20
104 ENDIF
105 ENDIF
106 Cr=Limiter(Cr)
107 wT(i,j) = maskC(i,j,kM1,bi,bj)*(
108 & rTrans(i,j)*
109 & (tracer(i,j,k)+tracer(i,j,kM1))*0.5 _d 0
110 & +(ABS(rTrans(i,j))*(1-Cr)
111 & +rTrans(i,j)*wLoc*dTarg*recip_drC(k)
112 & *Cr
113 & )*Rj*0.5 _d 0 )
114 ENDDO
115 ENDDO
116 ENDIF
117
118 RETURN
119 END

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