source: issm/trunk-jpl/src/m/classes/SMBpdd.m@ 24586

Last change on this file since 24586 was 24586, checked in by seroussi, 5 years ago

CHG: mot a time series anymore

File size: 13.4 KB
Line 
1%SMBpdd Class definition
2%
3% Usage:
4% SMBpdd=SMBpdd();
5
6classdef SMBpdd
7 properties (SetAccess=public)
8 precipitation = NaN;
9 monthlytemperatures = NaN;
10 desfac = 0;
11 s0p = NaN;
12 s0t = NaN;
13 rlaps = 0;
14 rlapslgm = 0;
15 Pfac = NaN;
16 Tdiff = NaN;
17 sealev = NaN;
18 isdelta18o = 0;
19 ismungsm = 0;
20 issetpddfac = 0;
21 delta18o = NaN;
22 delta18o_surface = NaN;
23 temperatures_presentday = NaN;
24 temperatures_lgm = NaN;
25 precipitations_presentday = NaN;
26 precipitations_lgm = NaN;
27 steps_per_step = 1;
28 requested_outputs = {};
29 end
30 methods
31 function self = SMBpdd(varargin) % {{{
32 switch nargin
33 case 0
34 self=setdefaultparameters(self);
35 otherwise
36 error('constructor not supported');
37 end
38 end % }}}
39 function self = extrude(self,md) % {{{
40 if(self.isdelta18o==0 & self.ismungsm==0),self.precipitation=project3d(md,'vector',self.precipitation,'type','node');end
41 if(self.isdelta18o==0 & self.ismungsm==0),self.monthlytemperatures=project3d(md,'vector',self.monthlytemperatures,'type','node');end
42 if(self.isdelta18o),self.temperatures_lgm=project3d(md,'vector',self.temperatures_lgm,'type','node');end
43 if(self.isdelta18o),self.temperatures_presentday=project3d(md,'vector',self.temperatures_presentday,'type','node');end
44 if(self.isdelta18o),self.precipitations_presentday=project3d(md,'vector',self.precipitations_presentday,'type','node');end
45 if(self.isdelta18o),self.precipitations_lgm=project3d(md,'vector',self.precipitations_lgm,'type','node');end
46 if(self.ismungsm),self.temperatures_lgm=project3d(md,'vector',self.temperatures_lgm,'type','node');end
47 if(self.ismungsm),self.temperatures_presentday=project3d(md,'vector',self.temperatures_presentday,'type','node');end
48 if(self.ismungsm),self.precipitations_presentday=project3d(md,'vector',self.precipitations_presentday,'type','node');end
49 if(self.ismungsm),self.precipitations_lgm=project3d(md,'vector',self.precipitations_lgm,'type','node');end
50 self.s0p=project3d(md,'vector',self.s0p,'type','node');
51 self.s0t=project3d(md,'vector',self.s0t,'type','node');
52
53 end % }}}
54 function list = defaultoutputs(self,md) % {{{
55 list = {''};
56 end % }}}
57 function self = initialize(self,md) % {{{
58
59 if isnan(self.s0p),
60 self.s0p=zeros(md.mesh.numberofvertices,1);
61 disp(' no SMBpdd.s0p specified: values set as zero');
62 end
63 if isnan(self.s0t),
64 self.s0t=zeros(md.mesh.numberofvertices,1);
65 disp(' no SMBpdd.s0t specified: values set as zero');
66 end
67
68 end % }}}
69 function self = setdefaultparameters(self) % {{{
70
71 self.isdelta18o = 0;
72 self.ismungsm = 0;
73 self.desfac = 0.5;
74 self.rlaps = 6.5;
75 self.rlapslgm = 6.5;
76
77 end % }}}
78 function md = checkconsistency(self,md,solution,analyses) % {{{
79
80 if ismember('MasstransportAnalysis',analyses),
81 md = checkfield(md,'fieldname','smb.desfac','<=',1,'numel',1);
82 md = checkfield(md,'fieldname','smb.s0p','>=',0,'NaN',1,'Inf',1,'size',[md.mesh.numberofvertices 1]);
83 md = checkfield(md,'fieldname','smb.s0t','>=',0,'NaN',1,'Inf',1,'size',[md.mesh.numberofvertices 1]);
84 md = checkfield(md,'fieldname','smb.rlaps','>=',0,'numel',1);
85 md = checkfield(md,'fieldname','smb.rlapslgm','>=',0,'numel',1);
86 if(self.isdelta18o==0 & self.ismungsm==0)
87 md = checkfield(md,'fieldname','smb.monthlytemperatures','timeseries',1,'NaN',1,'Inf',1);
88 md = checkfield(md,'fieldname','smb.precipitation','timeseries',1,'NaN',1,'Inf',1);
89 elseif(self.isdelta18o==1)
90 md = checkfield(md,'fieldname','smb.delta18o','NaN',1,'Inf',1,'size',[2,NaN],'singletimeseries',1);
91 md = checkfield(md,'fieldname','smb.delta18o_surface','NaN',1,'Inf',1,'size',[2,NaN],'singletimeseries',1);
92 md = checkfield(md,'fieldname','smb.temperatures_presentday','size',[md.mesh.numberofvertices 12],'NaN',1,'Inf',1);
93 md = checkfield(md,'fieldname','smb.temperatures_lgm','size',[md.mesh.numberofvertices 12],'NaN',1,'Inf',1);
94 md = checkfield(md,'fieldname','smb.precipitations_presentday','size',[md.mesh.numberofvertices 12],'NaN',1,'Inf',1);
95 md = checkfield(md,'fieldname','smb.precipitations_lgm','size',[md.mesh.numberofvertices 12],'NaN',1,'Inf',1);
96 md = checkfield(md,'fieldname','smb.Tdiff','NaN',1,'Inf',1,'size',[2,NaN],'singletimeseries',1);
97 md = checkfield(md,'fieldname','smb.sealev','NaN',1,'Inf',1,'size',[2,NaN],'singletimeseries',1);
98 elseif(self.ismungsm==1)
99 md = checkfield(md,'fieldname','smb.temperatures_presentday','size',[md.mesh.numberofvertices 12],'NaN',1,'Inf',1);
100 md = checkfield(md,'fieldname','smb.temperatures_lgm','size',[md.mesh.numberofvertices 12],'NaN',1,'Inf',1);
101 md = checkfield(md,'fieldname','smb.precipitations_presentday','size',[md.mesh.numberofvertices 12],'NaN',1,'Inf',1);
102 md = checkfield(md,'fieldname','smb.precipitations_lgm','size',[md.mesh.numberofvertices 12],'NaN',1,'Inf',1);
103 md = checkfield(md,'fieldname','smb.Pfac','NaN',1,'Inf',1,'size',[2,NaN],'singletimeseries',1);
104 md = checkfield(md,'fieldname','smb.Tdiff','NaN',1,'Inf',1,'size',[2,NaN],'singletimeseries',1);
105 md = checkfield(md,'fieldname','smb.sealev','NaN',1,'Inf',1,'size',[2,NaN],'singletimeseries',1);
106 end
107 end
108 md = checkfield(md,'fieldname','smb.steps_per_step','>=',1,'numel',[1]);
109 md = checkfield(md,'fieldname','smb.requested_outputs','stringrow',1);
110
111 end % }}}
112 function disp(self) % {{{
113 disp(sprintf(' surface forcings parameters:'));
114
115 disp(sprintf('\n PDD and deltaO18 parameters:'));
116 fielddisplay(self,'isdelta18o','is temperature and precipitation delta18o parametrisation activated (0 or 1, default is 0)');
117 fielddisplay(self,'ismungsm','is temperature and precipitation mungsm parametrisation activated (0 or 1, default is 0)');
118 fielddisplay(self,'desfac','desertification elevation factor (between 0 and 1, default is 0.5) [m]');
119 fielddisplay(self,'s0p','should be set to elevation from precip source (between 0 and a few 1000s m, default is 0) [m]');
120 fielddisplay(self,'s0t','should be set to elevation from temperature source (between 0 and a few 1000s m, default is 0) [m]');
121 fielddisplay(self,'rlaps','present day lapse rate [degree/km]');
122 fielddisplay(self,'rlapslgm','LGM lapse rate [degree/km]');
123 if(self.isdelta18o==0 & self.ismungsm==0)
124 fielddisplay(self,'monthlytemperatures',['monthly surface temperatures [K], required if pdd is activated and delta18o not activated']);
125 fielddisplay(self,'precipitation',['monthly surface precipitation [m/yr water eq], required if pdd is activated and delta18o or mungsm not activated']);
126 elseif(self.isdelta18o==1)
127 fielddisplay(self,'delta18o','delta18o [per mil], required if pdd is activated and delta18o activated');
128 fielddisplay(self,'delta18o_surface','surface elevation of the delta18o site, required if pdd is activated and delta18o activated');
129 fielddisplay(self,'temperatures_presentday','monthly present day surface temperatures [K], required if delta18o/mungsm is activated');
130 fielddisplay(self,'temperatures_lgm','monthly LGM surface temperatures [K], required if delta18o or mungsm is activated');
131 fielddisplay(self,'precipitations_presentday','monthly surface precipitation [m/yr water eq], required if delta18o/mungsm is activated');
132 fielddisplay(self,'precipitations_lgm','monthly surface precipitation [m/yr water eq], required if delta18o/mungsm is activated');
133 fielddisplay(self,'Tdiff','time interpolation parameter for temperature, 1D(year), required if mungsm is activated');
134 fielddisplay(self,'sealev','sea level [m], 1D(year), required if mungsm is activated');
135 elseif(self.ismungsm==1)
136 fielddisplay(self,'temperatures_presentday','monthly present day surface temperatures [K], required if delta18o/mungsm is activated');
137 fielddisplay(self,'temperatures_lgm','monthly LGM surface temperatures [K], required if delta18o or mungsm is activated');
138 fielddisplay(self,'precipitations_presentday','monthly surface precipitation [m/yr water eq], required if delta18o/mungsm is activated');
139 fielddisplay(self,'precipitations_lgm','monthly surface precipitation [m/yr water eq], required if delta18o/mungsm is activated');
140 fielddisplay(self,'Pfac','time interpolation parameter for precipitation, 1D(year), required if mungsm is activated');
141 fielddisplay(self,'Tdiff','time interpolation parameter for temperature, 1D(year), required if mungsm is activated');
142 fielddisplay(self,'sealev','sea level [m], 1D(year), required if mungsm is activated');
143 end
144 fielddisplay(self, 'steps_per_step', 'number of smb steps per time step');
145 fielddisplay(self,'requested_outputs','additional outputs requested');
146 end % }}}
147 function marshall(self,prefix,md,fid) % {{{
148
149 yts=md.constants.yts;
150
151 WriteData(fid,prefix,'name','md.smb.model','data',4,'format','Integer');
152
153 WriteData(fid,prefix,'object',self,'class','smb','fieldname','isdelta18o','format','Boolean');
154 WriteData(fid,prefix,'object',self,'class','smb','fieldname','issetpddfac','format','Boolean');
155 WriteData(fid,prefix,'object',self,'class','smb','fieldname','ismungsm','format','Boolean');
156 WriteData(fid,prefix,'object',self,'class','smb','fieldname','desfac','format','Double');
157 WriteData(fid,prefix,'object',self,'class','smb','fieldname','s0p','format','DoubleMat','mattype',1);
158 WriteData(fid,prefix,'object',self,'class','smb','fieldname','s0t','format','DoubleMat','mattype',1);
159 WriteData(fid,prefix,'object',self,'class','smb','fieldname','rlaps','format','Double');
160 WriteData(fid,prefix,'object',self,'class','smb','fieldname','rlapslgm','format','Double');
161 WriteData(fid, prefix, 'object', self, 'fieldname', 'steps_per_step', 'format', 'Integer');
162 if(self.isdelta18o==0 & self.ismungsm==0)
163 %WriteData(fid,prefix,'object',self,'class','smb','fieldname','monthlytemperatures','format','DoubleMat','mattype',1);
164 WriteData(fid,prefix,'object',self,'class','smb','fieldname','monthlytemperatures','format','DoubleMat','mattype',1,'timeserieslength',md.mesh.numberofvertices+1,'yts',md.constants.yts);
165 WriteData(fid,prefix,'object',self,'class','smb','fieldname','precipitation','format','DoubleMat','mattype',1,'scale',1./yts,'timeserieslength',md.mesh.numberofvertices+1,'yts',md.constants.yts);
166 elseif self.isdelta18o
167 WriteData(fid,prefix,'object',self,'class','smb','fieldname','temperatures_presentday','format','DoubleMat','mattype',1,'timeserieslength',md.mesh.numberofvertices+1,'yts',md.constants.yts);
168 WriteData(fid,prefix,'object',self,'class','smb','fieldname','temperatures_lgm','format','DoubleMat','mattype',1,'timeserieslength',md.mesh.numberofvertices+1,'yts',md.constants.yts);
169 WriteData(fid,prefix,'object',self,'class','smb','fieldname','precipitations_presentday','format','DoubleMat','mattype',1,'scale',1./yts,'timeserieslength',md.mesh.numberofvertices+1,'yts',md.constants.yts);
170 WriteData(fid,prefix,'object',self,'class','smb','fieldname','precipitations_lgm','format','DoubleMat','mattype',1,'scale',1./yts,'timeserieslength',md.mesh.numberofvertices+1,'yts',md.constants.yts);
171 WriteData(fid,prefix,'object',self,'class','smb','fieldname','delta18o_surface','format','DoubleMat','mattype',1,'timeserieslength',2,'yts',md.constants.yts);
172 WriteData(fid,prefix,'object',self,'class','smb','fieldname','delta18o','format','DoubleMat','mattype',1,'timeserieslength',2,'yts',md.constants.yts);
173 WriteData(fid,prefix,'object',self,'class','smb','fieldname','Tdiff','format','DoubleMat','mattype',1,'timeserieslength',2,'yts',md.constants.yts);
174 WriteData(fid,prefix,'object',self,'class','smb','fieldname','sealev','format','DoubleMat','mattype',1,'timeserieslength',2,'yts',md.constants.yts);
175 elseif self.ismungsm
176 WriteData(fid,prefix,'object',self,'class','smb','fieldname','temperatures_presentday','format','DoubleMat','mattype',1,'timeserieslength',md.mesh.numberofvertices+1,'yts',md.constants.yts);
177 WriteData(fid,prefix,'object',self,'class','smb','fieldname','temperatures_lgm','format','DoubleMat','mattype',1,'timeserieslength',md.mesh.numberofvertices+1,'yts',md.constants.yts);
178 WriteData(fid,prefix,'object',self,'class','smb','fieldname','precipitations_presentday','format','DoubleMat','mattype',1,'scale',1./yts,'timeserieslength',md.mesh.numberofvertices+1,'yts',md.constants.yts);
179 WriteData(fid,prefix,'object',self,'class','smb','fieldname','precipitations_lgm','format','DoubleMat','mattype',1,'scale',1./yts,'timeserieslength',md.mesh.numberofvertices+1,'yts',md.constants.yts);
180 WriteData(fid,prefix,'object',self,'class','smb','fieldname','Pfac','format','DoubleMat','mattype',1,'timeserieslength',2,'yts',md.constants.yts);
181 WriteData(fid,prefix,'object',self,'class','smb','fieldname','Tdiff','format','DoubleMat','mattype',1,'timeserieslength',2,'yts',md.constants.yts);
182 WriteData(fid,prefix,'object',self,'class','smb','fieldname','sealev','format','DoubleMat','mattype',1,'timeserieslength',2,'yts',md.constants.yts);
183 end
184
185 %process requested outputs
186 outputs = self.requested_outputs;
187 pos = find(ismember(outputs,'default'));
188 if ~isempty(pos),
189 outputs(pos) = []; %remove 'default' from outputs
190 outputs = [outputs defaultoutputs(self,md)]; %add defaults
191 end
192 WriteData(fid,prefix,'data',outputs,'name','md.smb.requested_outputs','format','StringArray');
193
194 end % }}}
195 end
196end
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