/[MITgcm]/MITgcm/verification/exp4/input/gendata.m
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Annotation of /MITgcm/verification/exp4/input/gendata.m

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Revision 1.6 - (hide annotations) (download)
Tue Apr 6 21:04:45 2010 UTC (14 years, 1 month ago) by jmc
Branch: MAIN
CVS Tags: checkpoint62g, checkpoint62f, checkpoint62e, checkpoint62k, checkpoint62j, checkpoint62i, checkpoint62h, checkpoint62o, checkpoint62n, checkpoint62m, checkpoint62l, checkpoint62s, checkpoint62r, checkpoint62q, checkpoint62p, checkpoint62w, checkpoint62v, checkpoint62u, checkpoint62t
Changes since 1.5: +31 -11 lines
to test pkg RBCS, add relaxation for pTracer 1 in the Eastern part
  of the channel ; update documentation in README & data.ptracers.

1 adcroft 1.1 % This is a matlab script that generates the input data
2    
3 jmc 1.6 % $Header: $
4     % $Name: $
5    
6 adcroft 1.1 % Dimensions of grid
7     nx=80;
8     ny=42;
9     nz=8;
10     % Nominal depth of model (meters)
11     H=4500;
12     % Scale of bump (m)
13     L=25e3;
14     % Height of bump (m)
15     dh=0.90*H;
16     % Horizontal resolution (m)
17     dx=5e3;
18     % Rotation
19     f=1e-4;
20     % Stratification
21     N=1.5 * f*L/H;
22    
23     % Gravity
24     g=9.81;
25     % E.O.S.
26     alpha=2.e-4;
27    
28 jmc 1.6 Tz=N^2/(g*alpha);
29     fprintf(' Tz= %e ;',Tz);
30 adcroft 1.1
31     dz=H/nz;
32 jmc 1.6 fprintf(' delZ = %d * %7.6g\n',nz,dz);
33 adcroft 1.1
34     x=(1:nx)*dx;x=x-mean(x);
35     y=(1:ny)*dx;y=y-mean(y);
36     z=-dz/2:-dz:-H;
37    
38     [Y,X]=meshgrid(y,x);
39    
40     % Temperature profile
41 jmc 1.6 fprintf('Tref ='); fprintf(' %8.6g,',Tz*z-mean(Tz*z)); fprintf('\n');
42 adcroft 1.1
43 adcroft 1.3 ieee='b';
44 jmc 1.6 prec='real*8';
45 adcroft 1.3
46 adcroft 1.1 % Gaussian bump
47     h=-H+dh*exp( -(X.^2+Y.^2)/(2*(L^2)) );
48 jmc 1.6 fid=fopen('topog.bump','w',ieee); fwrite(fid,h,prec); fclose(fid);
49 adcroft 1.1
50 mlosch 1.4 % $$$ % Side walls + bump
51     % $$$ h(:,1)=0;
52     % $$$ h(:,ny)=0;
53 jmc 1.6 % $$$ fid=fopen('topog.bumpchannel','w',ieee); fwrite(fid,h,prec); fclose(fid);
54 adcroft 1.1
55 mlosch 1.4 % $$$ % Simple channel
56     % $$$ h(:,1)=0;
57     % $$$ h(:,2:ny-1)=-H;
58     % $$$ h(:,ny)=0;
59 jmc 1.6 % $$$ fid=fopen('topog.channel','w',ieee); fwrite(fid,h,prec); fclose(fid);
60 mlosch 1.4
61     % initial fields for salinity
62     si = 35;
63 jmc 1.6 %fid=fopen('S.init','w',ieee); fwrite(fid,si*ones(nx,ny,nz),prec); fclose(fid);
64 mlosch 1.4
65     % open boundary conditions;
66     u0 = .25;
67     s0 = si+1;
68    
69     % create two time slabs for testing
70     uMerid = cat(3,u0*ones(nx,nz),zeros(nx,nz));
71     uZonal = cat(3,u0*ones(ny,nz),zeros(ny,nz));
72     sZonal = cat(3,s0*ones(ny,nz),s0*ones(ny,nz));
73    
74 jmc 1.6 fid=fopen('OBmeridU.bin','w',ieee); fwrite(fid,uMerid,prec); fclose(fid);
75     fid=fopen('OBzonalU.bin','w',ieee); fwrite(fid,uZonal,prec); fclose(fid);
76     fid=fopen('OBzonalS.bin','w',ieee); fwrite(fid,sZonal,prec); fclose(fid);
77    
78     %- rbcs mask & restauring tracer field:
79     msk=ones(nx,ny,nz);
80     xMx=max(x);
81     shapeX=(x-xMx)/dx;
82     shapeX=exp(shapeX*2/3);
83    
84     [I]=find(shapeX < 5.e-3); fprintf('zero out rbc-mask up to i= %i\n',max(I));
85     shapeX(I)=0.;
86     var=shapeX'*ones(1,ny*nz);
87     fid=fopen('rbcs_mask.bin','w',ieee); fwrite(fid,var,prec); fclose(fid);
88    
89     tr1=(si+s0)/2;
90     var=tr1*ones(nx,ny,nz);
91     fid=fopen('rbcs_Tr1_fld.bin','w',ieee); fwrite(fid,var,prec); fclose(fid);
92    

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