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Moment_of_Correlation_2DPIV_uncertainty/postprocess_codes/RMS_line_profile_for_2003B.m
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% Extract RMS line profile for 2003B case | |
clear; | |
%flags | |
printfig=0; | |
runCS=1; | |
runIM=1; | |
runMC=1; | |
savemat=0; | |
loadmat=1; | |
if ispc | |
basedirname='Z:\Planar_Uncertainty_work\'; | |
else | |
basedirname='/home/shannon/a/bhattac3/Planar_Uncertainty_work/'; | |
end | |
%cases | |
casename_org={'PivChal03B','PivChal05B','stagnation_flow','Vortex_Ring','Jetdata'}; | |
% casename={'PivChal03B','','','',''}; | |
% casename={'','PivChal05B','','',''}; | |
% casename={'','','stagnation_flow','',''}; | |
% casename={'','','','Vortex_Ring',''}; | |
% casename={'','','','','Jetdata'}; | |
% runname='10_14_2015_deform_whittaker_blackman'; | |
runname='10_22_2015_different_processing_windows'; | |
%% | |
%Get directories | |
% [inputdir,outputdir]=in_out_directory_set(basedirname,runname); | |
[inputdir,outputdir]=in_out_directory_set_10_22_2015(basedirname,runname); | |
% casename1={'PivChal03B','PivChal05B','stagnation_flow','Vortex_Ring','Jetdata'}; | |
%%Compute error and uncertainty estimates for each case | |
% compute_error_uncertainty(casename1,inputdir,outputdir,savemat); | |
%% Load matfile for the case | |
casename={'PivChal03B','','','',''}; | |
if loadmat==1 | |
A1=load(fullfile(outputdir{1},'PivChal03B.mat')); | |
end | |
% [covxMC,covyMC,covxIM,covyIM,covxCS,covyCS]=plot_MC_uncertainty(A1,casename,outputdir,printfig,runCS,runIM,runMC); | |
% covg1=[covxMC,covyMC,covxIM,covyIM,covxCS,covyCS]; | |
%{ | |
%% Convert to vectors | |
err_up=A.err_up(:); | |
err_vp=A.err_vp(:); | |
err_ud=A.err_ud(:); | |
err_vd=A.err_vd(:); | |
UMCx=A.UMCx(:); | |
UMCy=A.UMCy(:); | |
UIMx=A.UIMx(:); | |
UIMy=A.UIMy(:); | |
UCSx=A.UCSx(:); | |
UCSy=A.UCSy(:); | |
%% Eliminate bad vectors | |
veccutoff=0.1; | |
inx1=(find(abs(err_up)>veccutoff)); | |
iny1=(find(abs(err_vp)>veccutoff)); | |
inx2=(find(abs(err_ud)>veccutoff)); | |
iny2=(find(abs(err_vd)>veccutoff)); | |
err_up(inx1)=[]; | |
err_vp(iny1)=[]; | |
UMCx(inx1)=[]; | |
UMCy(iny1)=[]; | |
UIMx(inx1)=[]; | |
UIMy(iny1)=[]; | |
err_ud(inx2)=[]; | |
err_vd(iny2)=[]; | |
UCSx(inx2)=[]; | |
UCSy(iny2)=[]; | |
%} | |
% % %% Extract RMS profile at x=96th column | |
% % % RMS error | |
% % c1=96; | |
% % Upt=rms(squeeze(A1.err_up(end:-1:1,c1,:)),2); | |
% % Vpt=rms(squeeze(A1.err_vp(end:-1:1,c1,:)),2); | |
% % Velpt=sqrt(Upt.^2+Vpt.^2); | |
% % c2=95; | |
% % Udt=rms(squeeze(A1.err_ud(end:-1:1,c2,:)),2); | |
% % Vdt=rms(squeeze(A1.err_vd(end:-1:1,c2,:)),2); | |
% % Veldt=sqrt(Udt.^2+Vdt.^2); | |
% % | |
% % %RMS uncertainty | |
% % UMCt=rms(squeeze(A1.err_up(end:-1:1,c1,:)),2); | |
% % VMCt=rms(squeeze(A1.err_vp(end:-1:1,c1,:)),2); | |
% % VelMC=sqrt(Upt.^2+Vpt.^2); | |
% % | |
% % %% Plot RMS profiles | |
% % | |
% % figure;hold on; | |
% % plot(Velpt,1:63,'k-'); | |
% % plot(Veldt,1:62,'k--'); | |
%% Extract RMS profile at x=96th column | |
% RMS error | |
%% Eliminate bad vectors | |
veccutoff=0.1; | |
c1=96; | |
Upt=squeeze(A1.err_up(end:-1:1,c1,:));Upt(Upt>veccutoff)=nan; | |
Vpt=squeeze(A1.err_vp(end:-1:1,c1,:));Vpt(Vpt>veccutoff)=nan; | |
Velpt=sqrt(Upt.^2+Vpt.^2); | |
[inpy,inpx]=find(isnan(Velpt)); | |
Velptrms=sqrt(nanmean(Velpt.^2,2)); | |
c2=96; | |
Udt=squeeze(A1.err_ud(end:-1:1,c2,:));Udt(Udt>veccutoff)=nan; | |
Vdt=squeeze(A1.err_vd(end:-1:1,c2,:));Vdt(Vdt>veccutoff)=nan; | |
Veldt=sqrt(Udt.^2+Vdt.^2); | |
Veldtrms=sqrt(nanmean(Veldt.^2,2)); | |
%RMS uncertainty | |
UMCt=rms(squeeze(A1.err_up(end:-1:1,c1,:)),2); | |
VMCt=rms(squeeze(A1.err_vp(end:-1:1,c1,:)),2); | |
VelMC=sqrt(Upt.^2+Vpt.^2); | |
%% Plot RMS profiles | |
figure;hold on; | |
plot(Velptrms,1:63,'k-'); | |
plot(Veldtrms,1:62,'k--'); | |