NCEPLIBS-sp 2.4.0
sptezm.f
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1C> @file
2C> @brief Perform simple scalar spherical transforms.
3C> @author Iredell @date 96-02-29
4
5C> This subprogram performs spherical transforms
6C> between spectral coefficients of scalar quantities
7C> and fields on a global cylindrical grid.
8C>
9C> The wave-space can be either triangular or rhomboidal.
10C>
11C> The grid-space can be either an equally-spaced grid
12C> (with or without pole points) or a Gaussian grid.
13C>
14C> Wave fields are in sequential 'IBM ORDER'.
15C>
16C> Grid fields are indexed East to West, then North to South.
17C>
18C> For more flexibility and efficiency, call sptran().
19C>
20C> Subprogram can be called from a multiprocessing environment.
21C>
22C> Minimum grid dimensions for unaliased transforms to spectral:
23C> DIMENSION |LINEAR |QUADRATIC
24C> ----------------------- |--------- |-------------
25C> IMAX |2*MAXWV+2 |3*MAXWV/2*2+2
26C> JMAX (IDRT=4,IROMB=0) |1*MAXWV+1 |3*MAXWV/2+1
27C> JMAX (IDRT=4,IROMB=1) |2*MAXWV+1 |5*MAXWV/2+1
28C> JMAX (IDRT=0,IROMB=0) |2*MAXWV+3 |3*MAXWV/2*2+3
29C> JMAX (IDRT=0,IROMB=1) |4*MAXWV+3 |5*MAXWV/2*2+3
30C> JMAX (IDRT=256,IROMB=0) |2*MAXWV+1 |3*MAXWV/2*2+1
31C> JMAX (IDRT=256,IROMB=1) |4*MAXWV+1 |5*MAXWV/2*2+1
32C>
33C> @param IROMB spectral domain shape
34C> (0 for triangular, 1 for rhomboidal)
35C> @param MAXWV spectral truncation
36C> @param IDRT grid identifier
37C> - IDRT=4 for Gaussian grid
38C> - IDRT=0 for equally-spaced grid including poles
39C> - IDRT=256 for equally-spaced grid excluding poles
40C> @param IMAX even number of longitudes
41C> @param JMAX number of latitudes
42C> @param KMAX number of fields to transform
43C> @param[out] WAVE wave field if IDIR>0
44C> where MX=(MAXWV+1)*((IROMB+1)*MAXWV+2)/2
45C> @param[out] GRID grid field (E->W,N->S) if IDIR<0
46C> @param IDIR transform flag
47C> (IDIR>0 for wave to grid, IDIR<0 for grid to wave).
48C>
49C> @author Iredell @date 96-02-29
50 SUBROUTINE sptezm(IROMB,MAXWV,IDRT,IMAX,JMAX,KMAX,WAVE,GRID,IDIR)
51
52 REAL WAVE((MAXWV+1)*((IROMB+1)*MAXWV+2),KMAX)
53 REAL GRID(IMAX,JMAX,KMAX)
54
55 mx=(maxwv+1)*((iromb+1)*maxwv+2)/2
56 ip=1
57 is=1
58 jn=imax
59 js=-jn
60 kw=2*mx
61 kg=imax*jmax
62 jb=1
63 je=(jmax+1)/2
64 jc=ncpus()
65 IF(idir.LT.0) wave=0
66
67 CALL sptranf(iromb,maxwv,idrt,imax,jmax,kmax,
68 & ip,is,jn,js,kw,kg,jb,je,jc,
69 & wave,grid,grid(1,jmax,1),idir)
70 END
function ncpus()
Set number of CPUs - the number of processors over which to parallelize.
Definition: ncpus.F:24
subroutine sptezm(IROMB, MAXWV, IDRT, IMAX, JMAX, KMAX, WAVE, GRID, IDIR)
This subprogram performs spherical transforms between spectral coefficients of scalar quantities and ...
Definition: sptezm.f:51
subroutine sptranf(IROMB, MAXWV, IDRT, IMAX, JMAX, KMAX, IP, IS, JN, JS, KW, KG, JB, JE, JC, WAVE, GRIDN, GRIDS, IDIR)
This subprogram performs a spherical transform between spectral coefficients of scalar quantities and...
Definition: sptranf.f:77