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clear |
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clear path |
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|
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global Nx Ny Nz |
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global lat long dz dm mdep |
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global delt_su su_its t_su delt |
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global descriptor this_path |
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global f deltaf Q beta r_expt r_heat H |
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global time rots it |
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global g Cp rho_bar alpha |
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global u v t w |
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global iterations |
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|
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|
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param_file_name = ... |
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input(' Please enter the name of the m-file with the parameters for this run : ','s') ; |
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feval(param_file_name) ; |
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path = this_path |
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cmdstr=['cd ' path ]; |
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eval(cmdstr); |
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path=pwd |
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|
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iterations |
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|
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itstart = input(' Please enter start iteration : ','s') |
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sizeit=size(iterations); |
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for i=1:sizeit(1) |
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iter(i)=eval(iterations(i,1:10)); |
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end |
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nitstart=find(iter==eval(itstart)) |
31 |
|
32 |
|
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figure;hold on |
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|
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for i=nitstart:sizeit(1)-2 |
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tfilename=(['T.' iterations((i),1:10) ]); |
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iterations((i),1:10) |
38 |
i |
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t=rdmds(tfilename,'b'); |
40 |
|
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meantee=mean(mean(mean(t(1:Nx/2,1:Ny-1,1)))); |
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meantee1=mean(mean(mean(t(1:Nx-1,1:Ny-1,1:Nz-1)))); |
43 |
|
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% tval(i)=meantee-meantee1; |
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tval(i)=meantee1-20; |
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|
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% tval(i)=max(max(max(t)))-meantee1; |
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% plot(eval(iterations((i),1:10)),tval(i),'.');drawnow |
49 |
|
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% time(i)=eval(iterations(i,1:10)); |
51 |
|
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if i==1 |
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time(i)=100; |
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elseif i<=30 |
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time(i)=time(i-1)+100; |
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else |
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time(i)=time(i-1)+50; |
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end |
59 |
|
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% time(i)=i*50; |
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plot(time(i),tval(i),'.');drawnow |
62 |
|
63 |
|
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end |
65 |
|
66 |
|
67 |
|
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tcol=tval; |
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title(descriptor) |
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xlabel('timestep') |
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ylabel('central temperature') |
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grid |
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|
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computertime=time; |
75 |
|
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%save centralt centralt |
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%save iterations iterations |
78 |
%save tcol tcol |
79 |
%save tincol tincol |
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%save mdep mdep |
81 |
save working tcol tincol mdep computertime |