| 1 |
edhill |
1.1 |
t0=input('Enter temperature : ') |
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% Interpolate Dw on T=T0 surface |
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h=zeros(Nx,Ny); |
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hh=zeros(Nx,Ny); |
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hhh=zeros(Nx,Ny); |
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Dh=zeros(Nx,Ny); |
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Nz1=4; |
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he=dz*(Nz1-1); |
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meantheta(:,:,Nz)=0.; |
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for i=1:Nx |
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for j=1:Ny |
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kk=find(meantheta(i,j,:)<t0); |
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if kk(1)>1 |
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h(i,j)=(kk(1)-1)*dz+dz*(meantheta(i,j,kk(1)-1)-t0)/(meantheta(i,j,kk(1)-1)-meantheta(i,j,kk(1))); |
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Dh(i,j)=Dw(i,j,kk(1)-1) ... |
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+(Dw(i,j,kk(1))-Dw(i,j,kk(1)-1)) ... |
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*(meantheta(i,j,kk(1)-1)-t0)/(meantheta(i,j,kk(1)-1)-meantheta(i,j,kk(1))); |
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else |
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h(i,j)=0; |
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Dh(i,j)=0; |
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end |
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end |
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end |
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hmax=max(max(h)) |
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figure |
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%pcolor(Dh.');shading flat; colorbar; axis square |
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% title('mean Wstar'); |
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%figure |
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%pcolor(hhh.');shading flat; colorbar; axis square |
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%pcolor(flipud(h.'));shading flat; colorbar; axis square |
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%title(['mean H from ' num2str(eval(itstart)) ' to 'num2str(eval(itend)) ' level of t=' num2str(t0) ]); |
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%figure |
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we=0; |
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ws=0; |
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WE=zeros(Nx,Ny); |
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WS=zeros(Nx,Ny); |
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hh=zeros(Nx,Ny); |
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%for i=Nx/2:Nx |
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for i=1:Nx |
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for j=1:Ny |
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r=sqrt((i-3*Nx/4)*(i-3*Nx/4)+(j-Ny/2)*(j-Ny/2))*dx; |
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WE(i,j)=meanw(i,j,Nz1); |
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WS(i,j)=Dh(i,j); |
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% if r<0.40 |
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if h(i,j)>he |
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we=meanw(i,j,Nz1)*dx*dx+we; |
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ws=Dh(i,j)*dx*dx+ws; |
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% end |
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end |
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end |
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end |
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hh=h; |
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for k=1:3 |
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WE1(:,:,k)=WE(:,:); |
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WS1(:,:,k)=WS(:,:); |
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hh1(:,:,k)=hh(:,:); |
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end |
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for k=1:5 |
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WE1=smooth3(WE1); |
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WS1=smooth3(WS1); |
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hh1=smooth3(hh1); |
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end |
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hhh(2:Nx-1,2:Ny-1)=10000*(hh1(1:Nx-2,2:Ny-1,1)+hh1(3:Nx,2:Ny-1,1)+... |
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hh1(2:Nx-1,1:Ny-2,1)+hh1(2:Nx-1,3:Ny,1)-4*hh1(2:Nx-1,2:Ny-1,1)); |
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%hhh(2:Nx-1,2:Ny-1)=10000*(hh1(1:Nx-2,2:Ny-1,1)-hh1(3:Nx,2:Ny-1,1)).*... |
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%(hh1(1:Nx-2,2:Ny-1,1)-hh1(3:Nx,2:Ny-1,1))+... |
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%10000*(hh1(2:Nx-1,1:Ny-2,1)-hh1(2:Nx-1,3:Ny,1)).*... |
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%(hh1(2:Nx-1,1:Ny-2,1)-hh1(2:Nx-1,3:Ny,1)); |
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i=find(h<0.015); |
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h(i)=0; |
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% i=find(abs(hhh)>0.001); |
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% hhh(i)=0; |
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for i=1:Nx |
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for j=1:Ny |
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%r=sqrt((i-3*Nx/4)*(i-3*Nx/4)+(j-Ny/2)*(j-Ny/2))*dx; |
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%if r>0.44 |
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%hhh(i,j)=NaN; |
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%hh(i,j)=NaN; |
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%WS1(i,j,1)=NaN; |
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%end |
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if h(i,j)<he |
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WE1(i,j,1)=0; |
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WS1(i,j,1)=NaN; |
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hh(i,j)=NaN; |
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hhh(i,j)=NaN; |
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end |
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end |
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end |
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%pcolor(hh(1:Nx,:).');shading flat; colorbar; axis square |
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% set(gca,'DataAspectRatio',[2,2,2]) |
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% title('h','FontSize',16); |
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%figure |
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x=1:3:Nx-2; |
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y=1:3:Ny; |
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hh(:,:)=max(he,hh(:,:)); |
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subplot('position',[0.30 0.7 0.4 0.3]) |
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surf(x,y,200*(-hh(1:3:Nx-2,1:3:Ny)'+he)); |
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axis([1 Nx-4 0 Ny-2 -10.0 0]) |
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a=0:1:63; |
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a=a/63; |
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cmap=[a' a' a']; |
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colormap(cmap); |
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set(gca,'DataAspectRatio',[20,20,7]) |
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set(gca,'XtickLabel','|') |
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set(gca,'YtickLabel','|') |
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set(gca,'ZtickLabel','|') |
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xlabel('x','FontSize',20) |
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ylabel('y','FontSize',20) |
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zlabel('z','FontSize',20,'Rotation',[0]) |
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%title('h','FontSize',19); |
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view(-20,10); |
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hhh(1:Nx,:)=-10*hhh(1:Nx,:); |
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% hhh(Nx/2:Nx,:)=100*hhh(Nx/2:Nx,:); |
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a=max(max(hhh(1:Nx,:))); |
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%pcolor(hhh(1:Nx,:).');caxis([0 a]);shading flat; colorbar; axis square |
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%set(gca,'DataAspectRatio',[2,2,2]) |
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%title('-\nabla^2 h','FontSize',12); |
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%xlabel('x','Fontsize',13); |
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%ylabel('y','Fontsize',13); |
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%text(50,-10,'x'); |
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%text(-10,60,'y'); |
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%pcolor(squeeze(WE1(Nx/2:Nx,:,1)).');shading flat; colorbar; axis square |
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% set(gca,'DataAspectRatio',[2,2,2]) |
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%title('Ek, smooth'); |
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%figure |
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%pcolor(meanw(Nx/2:Nx,:,3).');shading flat; colorbar; axis square |
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%set(gca,'DataAspectRatio',[2,2,2]) |
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%title('Ek'); |
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figure |
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subplot('position',[0.15 0.05 0.7 0.5]) |
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WS1(1:Nx,:,1)=-WS1(1:Nx,:,1)*16667; |
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a=max(max(WS1(1:Nx,:,1))); |
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pcolor(squeeze(WS1(1:Nx,:,1)).');caxis([0 a]);shading flat;colormap('default'); |
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set(gca,'DataAspectRatio',[2,2,2]) |
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set(gca,'Xtick',[1 100],'XtickLabel','|') |
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set(gca,'Ytick',[1 120],'YtickLabel','|') |
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title('w^*','FontSize',20); |
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xlabel('x','Fontsize',20); |
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ylabel('y','Fontsize',20,'Rotation',[0]); |
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we |
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ws |
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