/[MITgcm]/MITgcm/pkg/generic_advdiff/gad_fluxlimit_adv_y.F
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Revision 1.3 - (hide annotations) (download)
Fri Sep 21 13:11:43 2001 UTC (22 years, 7 months ago) by adcroft
Branch: MAIN
CVS Tags: checkpoint44e_post, release1_p13_pre, checkpoint44f_post, checkpoint43a-release1mods, release1_p13, chkpt44d_post, release1_p8, release1_p9, release1_p1, release1_p2, release1_p3, release1_p4, release1_p5, release1_p6, release1_p7, checkpoint44e_pre, release1_b1, checkpoint43, release1_chkpt44d_post, release1_p11, icebear5, icebear4, icebear3, icebear2, release1-branch_tutorials, chkpt44a_post, chkpt44c_pre, ecco_c44_e19, ecco_c44_e18, ecco_c44_e17, ecco_c44_e16, release1_p12, release1_p10, release1_p16, release1_p17, release1_p14, release1_p15, checkpoint44g_post, release1-branch-end, release1_final_v1, checkpoint44b_post, ecco_ice2, ecco_ice1, release1_p12_pre, ecco_c44_e22, ecco_c44_e25, chkpt44a_pre, ecco_c44_e23, ecco_c44_e20, ecco_c44_e21, ecco_c44_e26, ecco_c44_e27, ecco_c44_e24, ecco-branch-mod1, ecco-branch-mod2, ecco-branch-mod3, ecco-branch-mod4, ecco-branch-mod5, release1_beta1, checkpoint44b_pre, checkpoint42, checkpoint41, checkpoint44, chkpt44c_post, checkpoint44f_pre, release1-branch_branchpoint
Branch point for: c24_e25_ice, release1_final, release1-branch, release1, ecco-branch, release1_50yr, icebear, release1_coupled
Changes since 1.2: +37 -11 lines
Added comments in form compatible with "protex".

1 adcroft 1.3 C $Header: /u/gcmpack/models/MITgcmUV/pkg/generic_advdiff/gad_fluxlimit_adv_y.F,v 1.2 2001/07/11 22:46:32 jmc Exp $
2 jmc 1.2 C $Name: $
3 adcroft 1.1
4     #include "GAD_OPTIONS.h"
5    
6 adcroft 1.3 CBOP
7     C !ROUTINE: GAD_FLUXLIMIT_ADV_Y
8    
9     C !INTERFACE: ==========================================================
10 adcroft 1.1 SUBROUTINE GAD_FLUXLIMIT_ADV_Y(
11     I bi,bj,k,deltaT,
12     I vTrans, vVel,
13     I tracer,
14     O vT,
15     I myThid )
16 adcroft 1.3
17     C !DESCRIPTION:
18     C Calculates the area integrated meridional flux due to advection of a tracer
19     C using second-order interpolation with a flux limiter:
20     C \begin{equation*}
21     C F^y_{adv} = V \overline{ \theta }^j
22     C - \frac{1}{2} \left(
23     C [ 1 - \psi(C_r) ] |V|
24     C + V \frac{v \Delta t}{\Delta y_c} \psi(C_r)
25     C \right) \delta_j \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 adcroft 1.1 IMPLICIT NONE
32     #include "SIZE.h"
33     #include "GRID.h"
34    
35 adcroft 1.3 C !INPUT PARAMETERS: ===================================================
36     C bi,bj :: tile indices
37     C k :: vertical level
38     C vTrans :: meridional volume transport
39     C vVel :: meridional flow
40     C tracer :: tracer field
41     C myThid :: thread number
42 adcroft 1.1 INTEGER bi,bj,k
43     _RL deltaT
44     _RL vTrans(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
45     _RL vVel (1-OLx:sNx+OLx,1-OLy:sNy+OLy,Nr,nSx,nSy)
46     _RL tracer(1-OLx:sNx+OLx,1-OLy:sNy+OLy)
47 adcroft 1.3 INTEGER myThid
48    
49     C !OUTPUT PARAMETERS: ==================================================
50     C vT :: meridional advective flux
51 adcroft 1.1 _RL vT (1-OLx:sNx+OLx,1-OLy:sNy+OLy)
52    
53 adcroft 1.3 C !LOCAL VARIABLES: ====================================================
54     C i,j :: loop indices
55     C Cr :: slope ratio
56     C Rjm,Rj,Rjp :: differences at j-1,j,j+1
57 adcroft 1.1 INTEGER i,j
58     _RL Cr,Rjm,Rj,Rjp
59 adcroft 1.3 C Statement function provides Limiter(Cr)
60 adcroft 1.1 #include "GAD_FLUX_LIMITER.h"
61 adcroft 1.3 CEOP
62 adcroft 1.1
63     DO i=1-Olx,sNx+Olx
64     vT(i,1-Oly)=0.
65 jmc 1.2 vT(i,2-Oly)=0.
66     vT(i,sNy+Oly)=0.
67 adcroft 1.1 ENDDO
68 jmc 1.2 DO j=1-Oly+2,sNy+Oly-1
69 adcroft 1.1 DO i=1-Olx,sNx+Olx
70     Rjp=(tracer(i,j+1)-tracer(i,j))*maskS(i,j+1,k,bi,bj)
71     Rj=(tracer(i,j)-tracer(i,j-1))*maskS(i,j,k,bi,bj)
72     Rjm=(tracer(i,j-1)-tracer(i,j-2))*maskS(i,j-1,k,bi,bj)
73     IF (Rj.NE.0.) THEN
74     IF (vTrans(i,j).GT.0) THEN
75     Cr=Rjm/Rj
76     ELSE
77     Cr=Rjp/Rj
78     ENDIF
79     ELSE
80     IF (vTrans(i,j).GT.0) THEN
81     Cr=Rjm*1.E20
82     ELSE
83     Cr=Rjp*1.E20
84     ENDIF
85     ENDIF
86     Cr=Limiter(Cr)
87     vT(i,j) =
88     & vTrans(i,j)*(Tracer(i,j)+Tracer(i,j-1))*0.5 _d 0
89     & -0.5*(
90     & (1-Cr)*ABS(vTrans(i,j))
91     & +vTrans(i,j)*vVel(i,j,k,bi,bj)*deltaT
92     & *recip_dyC(i,j,bi,bj)*Cr
93     & )*Rj
94     ENDDO
95     ENDDO
96    
97     RETURN
98     END

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