/[MITgcm]/MITgcm/pkg/gridalt/dyn2phys.F
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Annotation of /MITgcm/pkg/gridalt/dyn2phys.F

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Revision 1.4 - (hide annotations) (download)
Wed May 5 00:39:21 2004 UTC (20 years, 1 month ago) by edhill
Branch: MAIN
CVS Tags: checkpoint57t_post, checkpoint57o_post, checkpoint58e_post, checkpoint57v_post, checkpoint52n_post, checkpoint53d_post, checkpoint54a_pre, checkpoint57m_post, checkpoint55c_post, checkpoint54e_post, checkpoint57s_post, checkpoint54a_post, checkpoint53c_post, checkpoint57k_post, checkpoint55d_pre, checkpoint57d_post, checkpoint57g_post, checkpoint57b_post, checkpoint57c_pre, checkpoint55j_post, checkpoint56b_post, checkpoint57i_post, checkpoint57y_post, checkpoint57e_post, checkpoint55h_post, checkpoint57g_pre, checkpoint54b_post, checkpoint53b_pre, checkpoint55b_post, checkpoint54d_post, checkpoint56c_post, checkpoint57y_pre, checkpoint55, checkpoint53a_post, checkpoint57f_pre, checkpoint57a_post, checkpoint54, checkpoint54f_post, checkpoint53b_post, checkpoint55g_post, checkpoint55f_post, checkpoint57r_post, checkpoint58, checkpoint57a_pre, checkpoint55i_post, checkpoint57, checkpoint56, checkpoint53, eckpoint57e_pre, checkpoint57h_done, checkpoint58f_post, checkpoint53g_post, checkpoint57x_post, checkpoint57n_post, checkpoint58d_post, checkpoint58c_post, checkpoint57w_post, checkpoint57p_post, checkpint57u_post, checkpoint57f_post, checkpoint58a_post, checkpoint57q_post, checkpoint57z_post, checkpoint57c_post, checkpoint55e_post, checkpoint53f_post, checkpoint55a_post, checkpoint53d_pre, checkpoint54c_post, checkpoint57j_post, checkpoint58b_post, checkpoint57h_pre, checkpoint57l_post, checkpoint57h_post, checkpoint56a_post, checkpoint55d_post
Changes since 1.3: +3 -0 lines
 o adding cvs 'Header:' and 'Name:' strings

1 edhill 1.4 C $Header: $
2     C $Name: $
3    
4 molod 1.1 subroutine dyn2phys(qdyn,pedyn,im1,im2,jm1,jm2,lmdyn,Nsx,Nsy,
5     . idim1,idim2,jdim1,jdim2,bi,bj,windphy,pephy,Lbot,lmphy,nlperdyn,
6     . flg,qphy)
7     C***********************************************************************
8     C Purpose:
9     C To interpolate an arbitrary quantity from the 'dynamics' eta (pstar)
10     C grid to the higher resolution physics grid
11     C Algorithm:
12     C Routine works one layer (edge to edge pressure) at a time.
13     C Dynamics -> Physics retains the dynamics layer mean value,
14     C weights the field either with the profile of the physics grid
15     C wind speed (for U and V fields), or uniformly (T and Q)
16     C
17     C Input:
18     C qdyn..... [im,jm,lmdyn] Arbitrary Quantity on Input Grid
19     C pedyn.... [im,jm,lmdyn+1] Pressures at bottom edges of input levels
20     C im1,2 ... Limits for Longitude Dimension of Input
21     C jm1,2 ... Limits for Latitude Dimension of Input
22     C lmdyn.... Vertical Dimension of Input
23     C Nsx...... Number of processes in x-direction
24     C Nsy...... Number of processes in y-direction
25     C idim1,2.. Beginning and ending i-values to calculate
26     C jdim1,2.. Beginning and ending j-values to calculate
27     C bi....... Index of process number in x-direction
28     C bj....... Index of process number in x-direction
29     C windphy.. [im,jm,lmphy] Magnitude of the wind on the output levels
30     C pephy.... [im,jm,lmphy+1] Pressures at bottom edges of output levels
31     C lmphy.... Vertical Dimension of Output
32     C nlperdyn. [im,jm,lmdyn] Highest Physics level in each dynamics level
33     C flg...... Flag to indicate field type (0 for T or Q, 1 for U or V)
34     C
35     C Output:
36     C qphy..... [im,jm,lmphy] Quantity at output grid (physics grid)
37     C
38     C Notes:
39     C 1) This algorithm assumes that the output (physics) grid levels
40     C fit exactly into the input (dynamics) grid levels
41     C***********************************************************************
42     implicit none
43     #include "CPP_OPTIONS.h"
44    
45     integer im1, im2, jm1, jm2, lmdyn, lmphy, Nsx, Nsy, flg
46     integer idim1, idim2, jdim1, jdim2, bi, bj
47     _RL qdyn(im1:im2,jm1:jm2,lmdyn,Nsx,Nsy)
48     _RL pedyn(im1:im2,jm1:jm2,lmdyn+1,Nsx,Nsy)
49     _RL pephy(im1:im2,jm1:jm2,lmphy+1,Nsx,Nsy)
50     _RL windphy(im1:im2,jm1:jm2,lmphy,Nsx,Nsy)
51     integer nlperdyn(im1:im2,jm1:jm2,lmdyn,Nsx,Nsy)
52     _RL qphy(im1:im2,jm1:jm2,lmphy,Nsx,Nsy)
53     integer Lbot(im1:im2,jm1:jm2,Nsx,Nsy)
54    
55     _RL weights(im1:im2,jm1:jm2,lmphy)
56 molod 1.3 _RL dpkedyn, dpkephy, windsum, qd
57 molod 1.1 integer i,j,L,Lout1,Lout2,Lphy
58     _RL getcon, kappa
59    
60     kappa = getcon('KAPPA')
61    
62 molod 1.3 c do loop for all dynamics (input) levels
63     do L = 1,lmdyn
64 molod 1.1 c do loop for all grid points
65 molod 1.3 do j = jdim1,jdim2
66     do i = idim1,idim2
67     qd = qdyn(i,j,L,bi,bj)
68 molod 1.1 c Check to make sure we are above ground - if not, do nothing
69     if(L.ge.Lbot(i,j,bi,bj))then
70     if(L.eq.Lbot(i,j,bi,bj)) then
71     Lout1 = 0
72     else
73     Lout1 = nlperdyn(i,j,L-1,bi,bj)
74     endif
75     Lout2 = nlperdyn(i,j,L,bi,bj)
76     c for U and V fields, need to compute for the weights:
77     if(flg.eq.1)then
78 molod 1.2 cinterp1 dpkedyn = (pedyn(i,j,L,bi,bj)**kappa)-
79     cinterp1 (pedyn(i,j,L+1,bi,bj)**kappa)
80     dpkedyn = pedyn(i,j,L,bi,bj)-pedyn(i,j,L+1,bi,bj)
81 molod 1.1 windsum = 0.
82     do Lphy = Lout1+1,Lout2
83 molod 1.2 cinterp1 dpkephy = (pephy(i,j,Lphy,bi,bj)**kappa)-
84     cinterp1 (pephy(i,j,Lphy+1,bi,bj)**kappa)
85     dpkephy = pephy(i,j,Lphy,bi,bj)-pephy(i,j,Lphy+1,bi,bj)
86 molod 1.1 windsum = windsum+(windphy(i,j,Lphy,bi,bj)*dpkephy)/dpkedyn
87     enddo
88     endif
89     c do loop for all physics levels contained in this dynamics level
90     do Lphy = Lout1+1,Lout2
91     weights(i,j,Lphy) = 1.
92     if( (flg.eq.1).and.(windsum.ne.0.) )
93     . weights(i,j,Lphy)=windphy(i,j,Lphy,bi,bj)/windsum
94 molod 1.3 qphy(i,j,Lphy,bi,bj) = qd * weights(i,j,Lphy)
95 molod 1.1 enddo
96     endif
97     enddo
98     enddo
99     enddo
100    
101     return
102     end

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