/[MITgcm]/MITgcm_contrib/gael/profilesMatlabProcessing/profiles_misc/MITprof_resample.m
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Contents of /MITgcm_contrib/gael/profilesMatlabProcessing/profiles_misc/MITprof_resample.m

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Revision 1.8 - (show annotations) (download)
Fri Jan 29 15:23:31 2016 UTC (9 years, 5 months ago) by gforget
Branch: MAIN
Changes since 1.7: +94 -32 lines
- treat case when fldIn contains pre-loaded fields (fldIn.fil remains needed)
- treat case of nctiles input
- treat 1D variable case
- treat monser option

1 function [profOut]=MITprof_resample(profIn,fldIn,filOut,method);
2 %
3 %[profOut]=MITPROF_RESAMPLE(profIn,fldIn,filOut,method);
4 %
5 % resamples a set of fields (fldIn) to profile 3D locations (profIn)
6 % and output the result to nc file (filOut) and memory (profOut).
7 % using a chosen interpolation method (method).
8 %
9 % profIn (structure) should contain: prof_depth, prof_lon, prof_lat, prof_date
10 % fldIn (structure) should contain: fil, name, long_name, units, tim,
11 % missing_value, FillValue (for nc output), and fld ([] by default).
12 % If fld is not [] then it is assumed that user already loaded
13 % the fields from fldIn.fil.
14 %
15 % fldIn.tim can be set to
16 % 'const' (for time invariant climatology),
17 % 'monclim' (for monthly climatology)
18 % 'monser' (for monthly time series)
19 % 'monloop' (for cyclic monthly time series)
20 %
21 % method can be set to
22 % 'polygons' (linear in space)
23 % 'bindata' (nearest neighbor in space)
24 %
25 % Example:
26 % grid_load; gcmfaces_global; MITprof_global; addpath matlab/;
27 % profIn=idma_float_plot('4900828');
28 % %
29 % fldIn.fil=fullfile(myenv.MITprof_climdir,filesep,'T_OWPv1_M_eccollc_90x50.bin');
30 % fldIn.name='prof_Towp';
31 % fldIn.long_name='pot. temp. estimate (OCCA-WOA-PHC combination)';
32 % fldIn.units='degree C';
33 % fldIn.tim='monclim';
34 % fldIn.missing_value=-9999.;
35 % fldIn.FillValue=-9999.;
36 % fldIn.fld=[];
37 % %
38 % profOut=MITprof_resample(profIn,fldIn);
39
40
41 gcmfaces_global;
42
43 doOut=~isempty(who('filOut')); doOutInit=false;
44 if doOut; doOut=~isempty(filOut); end;
45 if doOut; doOutInit=isempty(dir(filOut)); end;
46
47 if isempty(who('method')); method='polygons'; end;
48
49 %0) check for file types
50 test0=~isempty(dir(fldIn.fil));
51 [PATH,NAME,EXT]=fileparts(fldIn.fil);
52 fil_nc=fullfile(PATH,NAME,[NAME '.0001.nc']);
53 fil_nctiles=fullfile(PATH,NAME,NAME);
54 test1=~isempty(dir(fil_nc));
55 test2=~isempty(fldIn.fld);
56
57 %1) deal with time line
58 if strcmp(fldIn.tim,'monclim');
59 tim_fld=[-0.5:12.5]; rec_fld=[12 1:12 1];
60 tmp1=datevec(profIn.prof_date);
61 tmp2=datenum([tmp1(:,1) ones(profIn.np,2) zeros(profIn.np,3)]);
62 tim_prof=(profIn.prof_date-tmp2);
63 tim_prof(tim_prof>365)=365;
64 tim_prof=tim_prof/365*12;%neglecting differences in months length
65 elseif strcmp(fldIn.tim,'monloop')|strcmp(fldIn.tim,'monser');
66 if test1;
67 eval(['ncload ' fil_nc ' tim']);
68 nt=length(tim);
69 elseif ~test2;
70 %note: 2D case still needs to be treated here ... or via fldIn.is3d ?
71 tmp1=dir(fldIn.fil);
72 nt=tmp1.bytes/prod(mygrid.ioSize)/length(mygrid.RC)/4;
73 else;
74 error('gcmfaces input case is missing here');
75 end;
76 tmp1=[1:nt]'; tmp2=ones(nt,1)*[1992 1 15 0 0 0]; tmp2(:,2)=tmp1;
77 tim_fld=datenum(tmp2);
78 tim_fld=[tim_fld(1)-31 tim_fld' tim_fld(end)+31];
79 rec_fld=[nt 1:nt 1];
80 if strcmp(fldIn.tim,'monloop');
81 tmp1=datenum([1992 1 1 0 0 0]);
82 tmp2=datenum([1992+nt/12 1 1 0 0 0]);;
83 tim_prof=tmp1+mod(profIn.prof_date-tmp1,tmp2-tmp1);
84 else;
85 tim_prof=profIn.prof_date;
86 end;
87 %round up tim_prof to prevent interpolation in time:
88 % tmp3=tim_prof*ones(1,length(tim_fld))-ones(length(tim_prof),1)*tim_fld;
89 % tmp4=sum(tmp3>0,2);
90 % tim_prof=tim_fld(tmp4)';
91 elseif strcmp(fldIn.tim,'const')|strcmp(fldIn.tim,'std');
92 tim_fld=[1 2]; rec_fld=[1 1];
93 tim_prof=1.5*ones(profIn.np,1);
94 else;
95 error('this case remains to be implemented');
96 end;
97
98 lon=profIn.prof_lon; lat=profIn.prof_lat;
99 depIn=-mygrid.RC; depOut=profIn.prof_depth;
100 profOut=NaN*ones(profIn.np,profIn.nr);
101
102 %2) loop over record pairs
103 if ~strcmp(method,'bindata'); gcmfaces_bindata; end;
104 for tt=1:length(rec_fld)-1;
105 ii=find(tim_prof>=tim_fld(tt)&tim_prof<tim_fld(tt+1));
106 if ~isempty(ii);
107 %tt
108 %
109 if test2;
110 fld0=fldIn.fld(:,:,:,rec_fld(tt));
111 fld1=fldIn.fld(:,:,:,rec_fld(tt+1));
112 elseif test1;
113 fld0=read_nctiles(fil_nctiles,NAME,rec_fld(tt));
114 fld1=read_nctiles(fil_nctiles,NAME,rec_fld(tt+1));
115 elseif test0;
116 fld0=read_bin(fldIn.fil,rec_fld(tt));
117 fld1=read_bin(fldIn.fil,rec_fld(tt+1));
118 else;
119 error(['file not found:' fldIn.fil]);
120 end;
121 %
122 ndim=length(size(fld0{1}));
123 if ndim==2;
124 fld0=fld0.*mygrid.mskC(:,:,1);
125 fld1=fld1.*mygrid.mskC(:,:,1);
126 fldIs3d=0;
127 else;
128 fld0=fld0.*mygrid.mskC;
129 fld1=fld1.*mygrid.mskC;
130 fldIs3d=1;
131 end;
132 fld=cat(ndim+1,fld0,fld1);
133 %
134 if ~strcmp(method,'bindata');
135 arr=gcmfaces_interp_2d(fld,lon(ii),lat(ii),method);
136 if fldIs3d;
137 arr2=gcmfaces_interp_1d(2,depIn,arr,depOut);
138 else;
139 arr2=arr;
140 end;
141 %now linear in time:
142 k0=floor(tim_prof(ii));
143 a0=tim_prof(ii)-k0;
144 if fldIs3d;
145 a0=a0*ones(1,profIn.nr);
146 profOut(ii,:)=(1-a0).*arr2(:,:,1)+a0.*arr2(:,:,2);
147 else;
148 profOut(ii,1)=(1-a0).*arr2(:,1)+a0.*arr2(:,2);
149 end;
150 elseif fldIs3d;
151 [prof_i,prof_j]=gcmfaces_bindata(lon(ii),lat(ii));
152 FLD=convert2array(fld(:,:,:,1));
153 nk=length(mygrid.RC); kk=ones(1,nk);
154 np=length(ii); pp=ones(np,1);
155 ind2prof=sub2ind(size(FLD),prof_i*kk,prof_j*kk,pp*[1:nk]);
156 arr=FLD(ind2prof);
157 arr2=gcmfaces_interp_1d(2,depIn,arr,depOut);
158 profOut(ii,:)=arr2;
159 else;
160 error('2D field case is missing here');
161 end;
162 %
163 if strcmp(fldIn.tim,'std');
164 profOut(ii,:)=profOut(ii,:).*randn(size(profOut(ii,:)));
165 end;
166
167 end;%if ~isempty(ii);
168 end;
169
170 if ~fldIs3d;
171 profOut=profOut(:,1);
172 end;
173
174 %3) deal with file output
175 if doOutInit;
176 %create a header only file to later append resampled fields
177 prof=profIn;
178 tmp1=fieldnames(prof);
179 nt=length(prof.prof_date);
180 nr=length(prof.prof_depth);
181 for ii=1:length(tmp1);
182 tmp2=prod(size(getfield(prof,tmp1{ii})));
183 if tmp2==nt*nr; prof=rmfield(prof,tmp1{ii}); end;
184 end;
185 MITprof_write(filOut,prof);
186 end;
187
188 if doOut;
189 if ~fldIs3d;
190 dims={'iPROF'};
191 else;
192 dims={'iDEPTH','iPROF'};
193 end;
194 %add the array itelf
195 MITprof_addVar(filOut,fldIn.name,'double',dims,profOut);
196
197 %add its attributes
198 nc=ncopen(filOut,'write');
199 ncaddAtt(nc,fldIn.name,'long_name',fldIn.long_name);
200 ncaddAtt(nc,fldIn.name,'units',fldIn.units);
201 ncaddAtt(nc,fldIn.name,'missing_value',fldIn.missing_value);
202 ncaddAtt(nc,fldIn.name,'_FillValue',fldIn.FillValue);
203 ncclose(nc);
204 end;
205
206 %4) deal with argument output
207 if nargout>0; profOut=setfield(profIn,fldIn.name,profOut); end;
208
209

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