| 1 | 
function [z] = cyl2cart(c,xi,yi,varargin) | 
| 2 | 
% z=cyl2cart(c,xi,yi); | 
| 3 | 
% | 
| 4 | 
% Re-grids model output in cylindrical coords to cartesian. | 
| 5 | 
%  c     is a 2-D or 3-D scalar or z-vector field | 
| 6 | 
%  xi,yi are vectors of the new regular lat-lon grid to interpolate to. | 
| 7 | 
%  z     is the interpolated data with dimensions of size(xi) by size(yi). | 
| 8 | 
%  theta=0 is at 12 o'clock. | 
| 9 | 
% | 
| 10 | 
% e.g. | 
| 11 | 
% >> t=rdmds('Ttave.0000513360'); | 
| 12 | 
% >> xi=-179:2:180;yi=-89:2:90; | 
| 13 | 
% >> ti=cyl2cart(t,xi,yi); | 
| 14 | 
% | 
| 15 | 
 | 
| 16 | 
NN=size(c); | 
| 17 | 
[theta rho nz]=size(c); | 
| 18 | 
[RHO,THETA] = meshgrid(1:rho,-pi+2*pi/theta:2*pi/theta:pi); | 
| 19 | 
[x,y] = pol2cart(THETA,RHO); | 
| 20 | 
%[nx ny nz]=size(c); | 
| 21 | 
nx=theta;ny=rho; | 
| 22 | 
 | 
| 23 | 
X=reshape(x,[1 nx*ny]); | 
| 24 | 
Y=reshape(y,[1 nx*ny]); | 
| 25 | 
del=griddata_preprocess(Y,X,yi,xi',varargin{:}); | 
| 26 | 
 | 
| 27 | 
for k=1:nz; | 
| 28 | 
 C=reshape(c(:,:,k),[1 nx*ny]); | 
| 29 | 
z(:,:,k)=griddata(Y,X,C,yi,xi',varargin{:}); | 
| 30 | 
% z(:,:,k)=griddata_fast(del,[C C(il) C(ig)],varargin{:}); | 
| 31 | 
end % k | 
| 32 | 
 | 
| 33 | 
% Split vertical and time dimensions | 
| 34 | 
if size(NN,2)>2 | 
| 35 | 
z=reshape(z,[size(z,1) size(z,2) NN(3:end)]); | 
| 36 | 
end |