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%date : 17/02/2005 |
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%auteur : Gael Forget |
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%version : beta |
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|
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%domaine.m : charge les parametres principaux associes |
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% au domaine (spatio_temporel) |
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clear tmp*; |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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%0.1) declaration des variables en global |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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domaine_global_def; |
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rep_domaine='/net/ross/raid0/gforget/1x1_50levels/GRID/'; |
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%rep_domaine='/net/altix3700/raid5/gforget/exp_CTRL/exp_OFFLINE/exp1/'; |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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%0.2) valeurs de reference |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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r0=6.37e6; %rayon terrestre |
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deg2rad = 2*pi/360; %conversion angles |
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gravity=9.81; %acceleration gravitationnelle |
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%rho0=999.8; %densite de ref pour l'eau |
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%rho0=1035; |
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rho0=1029; |
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%%%%%%%%%%%%%%%%%%%%%%%%% |
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%1) domaine géographique : |
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%%%%%%%%%%%%%%%%%%%%%%%%% |
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%dimensions du probleme : |
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jpi=360; jpj=160; jpk=50; |
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%masks: |
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fid=fopen([rep_domaine 'maskCtrlC.data'],'r','b'); |
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tmask3D=fread(fid,[jpi*jpj jpk],'float32'); fclose(fid); |
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tmask3D=reshape(tmask3D,[jpi jpj jpk]);tmask3D(find(tmask3D==0))=NaN; |
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fid=fopen([rep_domaine 'maskCtrlW.data'],'r','b'); |
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umask3D=fread(fid,[jpi*jpj jpk],'float32'); fclose(fid); |
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umask3D=reshape(umask3D,[jpi jpj jpk]);umask3D(find(umask3D==0))=NaN; |
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fid=fopen([rep_domaine 'maskCtrlS.data'],'r','b'); |
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vmask3D=fread(fid,[jpi*jpj jpk],'float32'); fclose(fid); |
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vmask3D=reshape(vmask3D,[jpi jpj jpk]);vmask3D(find(vmask3D==0))=NaN; |
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%positions: |
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fid=fopen([rep_domaine 'XC.data'],'r','b'); |
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lon2D_t=fread(fid,[jpi jpj],'float32'); fclose(fid); |
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fid=fopen([rep_domaine 'YC.data'],'r','b'); |
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lat2D_t=fread(fid,[jpi jpj],'float32'); fclose(fid); |
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fid=fopen([rep_domaine 'XG.data'],'r','b'); |
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lon2D_u=fread(fid,[jpi jpj],'float32'); fclose(fid); |
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fid=fopen([rep_domaine 'YG.data'],'r','b'); |
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lat2D_v=fread(fid,[jpi jpj],'float32'); fclose(fid); |
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|
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%depths: |
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fid=fopen([rep_domaine 'RC.data'],'r','b'); |
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gdept=-fread(fid,jpk,'float32'); fclose(fid); |
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fid=fopen([rep_domaine 'RF.data'],'r','b'); |
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gdepw=-fread(fid,jpk+1,'float32'); fclose(fid); |
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|
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%restriction du mask a 1 bassin : |
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%load MASK_pac.mat; |
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%load /data4/gforget/FIRSTdiags/various_mat/MASK_atl.mat; |
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%load /data4/gforget/FIRSTdiags/MASK_indpac.mat; |
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%load /data4/gforget/FIRSTdiags/MASK_south.mat; |
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%for kcur=1:jpk; tmask3D(:,:,kcur)=squeeze(tmask3D(:,:,kcur)).*mask_boites; end; umask3D=umask3D.*tmask3D; vmask3D=vmask3D.*tmask3D; |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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%2) facteurs d'echelle : |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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%fid=fopen([rep_domaine 'DXG.data'],'r','b'); |
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fid=fopen([rep_domaine 'DXC.data'],'r','b'); |
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e1t=fread(fid,[jpi jpj],'float32'); fclose(fid); |
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fid=fopen([rep_domaine 'DYG.data'],'r','b'); |
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e2t=fread(fid,[jpi jpj],'float32'); fclose(fid); |
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%fid=fopen([rep_domaine 'DXC.data'],'r','b'); |
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fid=fopen([rep_domaine 'DXG.data'],'r','b'); |
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e1v=fread(fid,[jpi jpj],'float32'); fclose(fid); |
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%e2v=e2t; |
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fid=fopen([rep_domaine 'DYC.data'],'r','b'); |
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e2v=fread(fid,[jpi jpj],'float32'); fclose(fid); |
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%fid=fopen([rep_domaine 'DYC.data'],'r','b'); |
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%e2u=fread(fid,[jpi jpj],'float32'); fclose(fid); |
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e2u=e2t; |
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e1u=e1t; |
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fid=fopen([rep_domaine 'DRF.data'],'r','b'); |
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e3t=fread(fid,jpk,'float32'); fclose(fid); |
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fid=fopen([rep_domaine 'DRC.data'],'r','b'); |
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e3w=fread(fid,jpk+1,'float32'); fclose(fid); |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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%3) parametres temporels : |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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%1) temps 0 du modele en jours julens : |
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model_time0=jul_0h([2002 01 01 06 00 00]); %en jours juliens |
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%model_time0=jul_0h([1992 01 01 06 00 00]); %en jours juliens |
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%TEMPO% |
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%model_time0=0; |
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%2) pas de temps du modele : |
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dtime=3600; |
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%explication : ensuite pour passer d'un temps modele a une date : |
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%date_tmp=greg_0h(model_time0+model_time/86400); |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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%4) diffusivites/viscosites |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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% Coefficient de viscosite (U,V) du modele |
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Vh=1e4; % horizontale |
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Vv=1e-3; % vertical |
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% Coefficient de diffusivite (T,S) du modele |
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Kh=1e2; %horizontale |
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Kv=1e-5; %verticale |
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