1 | % vel2vol:interpolate 2D velocity fields to volumes with structured coordinates in phys space
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2 | % (specific to RDvision system)
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3 | %----------------------------------------------------------------------
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4 | function GUI_input=vel2vol(num_i1,num_i2,num_j1,num_j2,Series)
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5 | %requests for the visibility of input windows in the GUI series (activated directly by the selection in the menu ACTION)
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6 | if ~exist('num_i1','var')
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7 | GUI_input={'RootPath';'one';...%nbre of possible input series (options 'on'/'two'/'many', default:'one')
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8 | 'SubDir';'on';... % subdirectory of derived files (PIV fields), ('on' by default)
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9 | 'RootFile';'on';... %root input file name ('on' by default)
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10 | 'FileExt';'on';... %input file extension ('on' by default)
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11 | 'NomType';'on';...%type of file indexing ('on' by default)
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12 | 'NbSlice';'on'; ...%nbre of slices ('off' by default)
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13 | 'VelTypeMenu';'one';...% menu for selecting the velocity type (options 'off'/'one'/'two', 'off' by default)
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14 | 'FieldMenu';'one';...% menu for selecting the field (s) in the input file(options 'off'/'one'/'two', 'off' by default)
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15 | 'CoordType'; 'on';...%can use a transform function
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16 | 'GetObject';'on';...%can use projection object(option 'off'/'one'/'two',
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17 | ''}
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18 | return %exit the function
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19 | end
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20 |
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21 | %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%enable waitbar
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22 | hseries=guidata(Series.hseries);%handles of the GUI series
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23 | WaitbarPos=get(hseries.waitbar_frame,'Position');
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24 | %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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25 |
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26 | %% PARAMETERS
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27 | listfield=get(hseries.FieldMenu,'String');
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28 | testfield=get(hseries.FieldMenu,'Value');
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29 | FieldName=listfield{testfield}
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30 | listfield=get(hseries.VelTypeMenu,'String');
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31 | testfield=get(hseries.VelTypeMenu,'Value');
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32 | VelType=listfield{testfield}
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33 | transform_fct=Series.transform_fct;%handles of phys transform function
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34 |
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35 |
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36 | %% projection object (volume)
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37 | test_object=get(hseries.GetObject,'Value');
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38 | if test_object%isfield(Series,'sethandles')
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39 | hset_object=findobj(allchild(0),'tag','set_object');
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40 | ProjObject=read_set_object(guidata(hset_object));
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41 | if ~strcmp(ProjObject.Style,'volume')&&~strcmp(ProjObject.ProjMode,'interp')
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42 | msgbox_uvmat('ERROR',['a volume with projection mode interp must be defined']);
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43 | return
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44 | end
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45 | answer=msgbox_uvmat('CONFIRMATION',['fields will be interpolated at the grid points of the volume']);
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46 | else
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47 | answer=msgbox_uvmat('CONFIRMATION',['fields will be concatenated without interpolation']);
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48 | end
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49 |
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50 | %% create dir of the volume velocity fields
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51 | basename=fullfile(Series.RootPath,Series.RootFile) ;
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52 | % [dir_ima,namebase]=fileparts(basename);
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53 | % [path,subdir_ima]=fileparts(dir_ima);
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54 | SubDirNew=[Series.SubDir '_vol'];
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55 | newdir=fullfile(Series.RootPath,SubDirNew);
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56 | mkdir(newdir);
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57 | [xx,msg2] = fileattrib(newdir,'+w','g'); %yield writing access (+w) to user group (g)
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58 | if ~strcmp(msg2,'')
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59 | msgbox_uvmat('ERROR',['pb of permission for ' subdir_vel ': ' msg2])%error message for directory creation
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60 | return
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61 | end
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62 | display(['volume fields in the directory ' newdir])
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63 | % basename_new=fullfile(newdir,Series.RootFile);
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64 |
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65 |
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66 | %% read imadoc
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67 | [XmlData,warntext]=imadoc2struct([basename '.xml']);
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68 | nbfield1=size(num_i1,1);
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69 | nbfield2=size(XmlData.Time,2);% use the whole set of j indices
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70 | % set(hseries.first_i,'String',num2str(first_label))% display the first image in the process
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71 | set(hseries.last_j,'String',num2str(nbfield2))% display the last image in the process
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72 |
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73 | %% main loop
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74 | for ifile=1:nbfield1
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75 | update_waitbar(hseries.waitbar,WaitbarPos,ifile/nbfield1)
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76 | for jfile=1:nbfield2
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77 | filename=name_generator(basename,num_i1(ifile,jfile),num_j1(ifile,jfile),Series.FileExt,Series.NomType,1,num_i2(ifile,jfile),num_j2(ifile,jfile),Series.SubDir);
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78 | [Field,VelTypeOut]=read_civxdata(filename,FieldName,VelType);
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79 | if isfield(Field,'Txt')
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80 | msgbox_uvmat('ERROR',Field.Txt)
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81 | return
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82 | end
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83 | Field.ZIndex=jfile;
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84 | % coordinate transform
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85 | Field=transform_fct(Field,XmlData);
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86 | % concatene slices
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87 | if jfile==1
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88 | % if isempty(Field.absolut_time_T0) || isequal(Field.civ,0)
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89 | % msgbox_uvmat('ERROR','the input file is not civx data')
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90 | % return
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91 | % end
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92 | FieldVol=Field;
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93 | FieldVol.NbDim=3;
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94 | else
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95 | FieldVol.X=[FieldVol.X; Field.X];
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96 | FieldVol.Y=[FieldVol.Y; Field.Y];
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97 | FieldVol.Z=[FieldVol.Z; Field.Z];
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98 | FieldVol.U=[FieldVol.U; Field.U];
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99 | FieldVol.V=[FieldVol.V; Field.V];
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100 | if isfield( Field,'F')
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101 | FieldVol.F=[FieldVol.F; Field.F];
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102 | end
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103 | end
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104 | end
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105 | if test_object
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106 | [FieldVol,errormsg]=proj_field(FieldVol,ProjObject);
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107 | if ~isempty(errormsg)
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108 | msgbox_uvmat('ERROR',['error in vel2vol/proj_field:' errormsg])
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109 | return
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110 | end
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111 | end
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112 | filename_new=name_generator(basename,num_i1(ifile,jfile),[],'.nc','_1',1,num_i2(ifile,jfile),[],SubDirNew);
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113 | errormsg=struct2nc(filename_new,FieldVol);
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114 | if isempty(errormsg)
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115 | display([filename_new ' written'])
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116 | else
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117 | msgbox_uvmat('ERROR',['error in vel2vol/struct2nc:' errormsg])
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118 | return
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119 | end
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120 | end
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121 |
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