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function [z] = cart2cyl(c,thetai,rhoi,varargin) |
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% z=cart2cyl(c,xi,yi); |
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% |
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|
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NN=size(c); |
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%[theta rho nz]=size(c); |
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[x y nz]=size(c); |
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%[RHO,THETA] = meshgrid(1:rho,-pi+2*pi/theta:2*pi/theta:pi); |
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%[Y,X] = meshgrid(-(x-1)/2:(x-1)/2,-(y-1)/2:(y-1)/2); |
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%stepx=(2*x+1)/(2*x); |
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%stepy=(2*y+1)/(2*y); |
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stepx=(x+1)/(x); |
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stepy=(y+1)/(y); |
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[Y,X] = meshgrid(-(x)/2:stepx:(x)/2,-(y)/2:stepy:(y)/2); |
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%[Y,X] = meshgrid(x,y); |
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%[Y,X] = meshgrid(-(x)/2:stepx:(x)/2+stepx,-(y)/2:stepy:(y)/2+stepy); |
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%[x,y] = pol2cart(THETA,RHO); |
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[theta,rho] = cart2pol(X,Y); |
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%theta=(theta./(pi*2)+0.5).*size(thetai,2); |
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%theta=theta.*2*((size(thetai,2)+1)/size(thetai,2)); |
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%theta=(theta./(pi*2)+0.5).*(size(thetai,2)+1); |
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%theta=(theta./(pi*2)+0.5).*(size(thetai,2)); |
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theta=(theta./(pi*2)+0.5).*(size(thetai,2)); |
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%theta=(theta./pi).*size(thetai,2); |
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%theta=(theta./(pi*2)).*size(thetai,2); |
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%rho=max(rhoi)*rho/((x-1)/2); |
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rho=max(rhoi)*rho/((x)/2); |
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%theta=rot90(theta.*180./pi,-1); |
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%[nx ny nz]=size(c); |
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%nx=theta;ny=rho; |
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ntheta=x;nrho=y; |
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|
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%X=reshape(x,[1 nx*ny]); |
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%Y=reshape(y,[1 nx*ny]); |
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THETA=reshape(theta,[1 ntheta*nrho]); |
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RHO=reshape(rho,[1 ntheta*nrho]); |
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%del=griddata_preprocess(Y,X,yi,xi',varargin{:}); |
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del=griddata_preprocess(RHO,THETA,rhoi,thetai',varargin{:}); |
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|
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for k=1:nz; |
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C=reshape(c(:,:,k),[1 ntheta*nrho]); |
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z(:,:,k)=griddata(RHO,THETA,C,rhoi,thetai',varargin{:}); |
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%z(:,:,k)=griddata(Y,X,C,yi,xi',varargin{:}); |
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% z(:,:,k)=griddata_fast(del,[C C(il) C(ig)],varargin{:}); |
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end % k |
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|
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% Split vertical and time dimensions |
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if size(NN,2)>2 |
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z=reshape(z,[size(z,1) size(z,2) NN(3:end)]); |
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end |