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adcroft |
1.1 |
% This is a matlab script that generates the input data |
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% Dimensions of grid |
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nx=80; |
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ny=42; |
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nz=8; |
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% Nominal depth of model (meters) |
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H=4500; |
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% Scale of bump (m) |
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L=25e3; |
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% Height of bump (m) |
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dh=0.90*H; |
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% Horizontal resolution (m) |
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dx=5e3; |
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% Rotation |
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f=1e-4; |
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% Stratification |
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N=1.5 * f*L/H; |
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% Gravity |
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g=9.81; |
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% E.O.S. |
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alpha=2.e-4; |
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Tz=N^2/(g*alpha) |
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dz=H/nz; |
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sprintf('delZ = %d * %7.6g,',nz,dz) |
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x=(1:nx)*dx;x=x-mean(x); |
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y=(1:ny)*dx;y=y-mean(y); |
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z=-dz/2:-dz:-H; |
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[Y,X]=meshgrid(y,x); |
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% Temperature profile |
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[sprintf('Tref =') sprintf(' %8.6g,',Tz*z-mean(Tz*z))] |
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adcroft |
1.3 |
ieee='b'; |
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accuracy='real*8'; |
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adcroft |
1.1 |
% Gaussian bump |
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h=-H+dh*exp( -(X.^2+Y.^2)/(2*(L^2)) ); |
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adcroft |
1.3 |
fid=fopen('topog.bump','w',ieee); fwrite(fid,h,accuracy); fclose(fid); |
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adcroft |
1.1 |
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mlosch |
1.4 |
% $$$ % Side walls + bump |
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% $$$ h(:,1)=0; |
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% $$$ h(:,ny)=0; |
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% $$$ fid=fopen('topog.bumpchannel','w',ieee); fwrite(fid,h,accuracy); fclose(fid); |
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adcroft |
1.1 |
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mlosch |
1.4 |
% $$$ % Simple channel |
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% $$$ h(:,1)=0; |
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% $$$ h(:,2:ny-1)=-H; |
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% $$$ h(:,ny)=0; |
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% $$$ fid=fopen('topog.channel','w',ieee); fwrite(fid,h,accuracy); fclose(fid); |
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% initial fields for salinity |
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si = 35; |
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fid=fopen('S.init','w',ieee); fwrite(fid,si*ones(nx,ny,nz),accuracy); fclose(fid); |
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% open boundary conditions; |
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u0 = .25; |
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s0 = si+1; |
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% create two time slabs for testing |
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uMerid = cat(3,u0*ones(nx,nz),zeros(nx,nz)); |
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uZonal = cat(3,u0*ones(ny,nz),zeros(ny,nz)); |
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sZonal = cat(3,s0*ones(ny,nz),s0*ones(ny,nz)); |
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fid=fopen('OBmeridU.bin','w',ieee); fwrite(fid,uMerid,accuracy); fclose(fid); |
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fid=fopen('OBzonalU.bin','w',ieee); fwrite(fid,uZonal,accuracy); fclose(fid); |
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fid=fopen('OBzonalS.bin','w',ieee); fwrite(fid,sZonal,accuracy); fclose(fid); |