[14555] | 1 | %HYDROLOGYSHREVE class definition
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[9617] | 2 | %
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| 3 | % Usage:
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[14555] | 4 | % hydrologyshreve=hydrologyshreve();
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[9617] | 5 |
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[14555] | 6 | classdef hydrologyshreve
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[9617] | 7 | properties (SetAccess=public)
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[10969] | 8 | spcwatercolumn = NaN;
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| 9 | n = 0;
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| 10 | CR = 0;
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| 11 | p = 0;
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| 12 | q = 0;
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| 13 | kn = 0;
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| 14 | stabilization = 0;
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[9617] | 15 | end
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| 16 | methods
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[17720] | 17 | function createxml(obj,fid) % {{{
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| 18 | fprintf(fid, '\n\n');
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| 19 | fprintf(fid, '%s\n', '<!-- Hydrology -->');
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| 20 |
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| 21 | % Convergence criteria
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| 22 | fprintf(fid,'%s\n%s\n%s\n','<frame key="1" label="Hydrologyshreve solution parameters">','<section name="hydrologyshreve" />');
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| 23 |
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| 24 | fprintf(fid,'%s%s%s%s%s\n%s\n%s\n%s\n', '<parameter key ="spcwatercolumn" type="', class(obj.spcwatercolumn),'" default="', convert2str(obj.spcwatercolumn),'">', ' <section name="hydrologyshreve" />',' <help> water thickness constraints (NaN means no constraint) [m] </help>','</parameter>');
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| 25 | fprintf(fid,'%s%s%s%s%s\n%s\n%s\n%s\n', '<parameter key ="n" type="', class(obj.n),'" default="', convert2str(obj.n),'">', ' <section name="hydrologyshreve" />',' <help> Manning roughness coefficient </help>','</parameter>');
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| 26 | fprintf(fid,'%s%s%s%s%s\n%s\n%s\n%s\n', '<parameter key ="CR" type="', class(obj.CR),'" default="', convert2str(obj.CR),'">', ' <section name="hydrologyshreve" />',' <help> tortuosity parameter </help>','</parameter>');
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| 27 | fprintf(fid,'%s%s%s%s%s\n%s\n%s\n%s\n', '<parameter key ="p" type="', class(obj.p),'" default="', convert2str(obj.p),'">', ' <section name="hydrologyshreve" />',' <help> dimensionless exponent in Manning velocity formula </help>','</parameter>');
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| 28 | fprintf(fid,'%s%s%s%s%s\n%s\n%s\n%s\n', '<parameter key ="q" type="', class(obj.q),'" default="', convert2str(obj.q),'">', ' <section name="hydrologyshreve" />',' <help> dimensionless exponent in Manning velocity formula </help>','</parameter>');
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| 29 | fprintf(fid,'%s%s%s%s%s\n%s\n%s\n%s\n', '<parameter key ="kn" type="', class(obj.kn),'" default="', convert2str(obj.kn),'">', ' <section name="hydrologyshreve" />',' <help> parameter in effective pressure formula </help>','</parameter>');
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| 30 | fprintf(fid,'%s%s%s%s%s\n%s\n%s\n%s\n', '<parameter key ="stabilization" type="', class(obj.stabilization),'" default="', convert2str(obj.stabilization),'">', ' <section name="hydrologyshreve" />',' <help> artificial diffusivity (default is 1). can be more than 1 to increase diffusivity. </help>','</parameter>');
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| 31 | fprintf(fid,'%s\n%s\n','</frame>');
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| 32 | end % }}}
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[14555] | 33 | function obj = hydrologyshreve(varargin) % {{{
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[9617] | 34 | switch nargin
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| 35 | case 0
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| 36 | obj=setdefaultparameters(obj);
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[14618] | 37 | case 1
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| 38 | obj=structtoobj(obj,varargin{1});
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[9617] | 39 | otherwise
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| 40 | error('constructor not supported');
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| 41 | end
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| 42 | end % }}}
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| 43 | function obj = setdefaultparameters(obj) % {{{
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| 44 |
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| 45 | %Parameters from Johnson's 2002 thesis, section 3.5.4
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[14555] | 46 | obj.n = .02;
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| 47 | obj.CR = .01;
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| 48 | obj.p = 2;
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| 49 | obj.q = 1;
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| 50 | obj.kn = 0;
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[9646] | 51 |
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| 52 | %Type of stabilization to use 0:nothing 1:artificial_diffusivity
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| 53 | obj.stabilization=1;
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[9617] | 54 | end % }}}
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[12663] | 55 | function md = checkconsistency(obj,md,solution,analyses) % {{{
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[9739] | 56 |
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[9854] | 57 | %Early return
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[14771] | 58 | if ~ismember(HydrologyShreveAnalysisEnum(),analyses)
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| 59 | return;
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| 60 | end
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[9854] | 61 |
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[16764] | 62 | md = checkfield(md,'fieldname','hydrology.spcwatercolumn','forcing',1);
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| 63 | md = checkfield(md,'fieldname','hydrology.stabilization','>=',0);
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[9739] | 64 | end % }}}
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[9820] | 65 | function disp(obj) % {{{
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[14555] | 66 | disp(sprintf(' hydrologyshreve solution parameters:'));
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[9820] | 67 |
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[14640] | 68 | fielddisplay(obj,'spcwatercolumn','water thickness constraints (NaN means no constraint) [m]');
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[9820] | 69 | fielddisplay(obj,'n','Manning roughness coefficient');
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[11141] | 70 | fielddisplay(obj,'CR','tortuosity parameter');
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[9820] | 71 | fielddisplay(obj,'p','dimensionless exponent in Manning velocity formula');
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| 72 | fielddisplay(obj,'q','dimensionless exponent in Manning velocity formula');
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| 73 | fielddisplay(obj,'kn','parameter in effective pressure formula');
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[10538] | 74 | fielddisplay(obj,'stabilization','artificial diffusivity (default is 1). can be more than 1 to increase diffusivity.');
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[9820] | 75 |
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| 76 | end % }}}
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[15131] | 77 | function marshall(obj,md,fid) % {{{
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[14838] | 78 | WriteData(fid,'enum',HydrologyModelEnum(),'data',HydrologyshreveEnum(),'format','Integer');
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[15133] | 79 | WriteData(fid,'object',obj,'fieldname','spcwatercolumn','format','DoubleMat','mattype',1,'forcinglength',md.mesh.numberofvertices+1);
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[13020] | 80 | WriteData(fid,'object',obj,'fieldname','n','format','Double');
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[10969] | 81 | WriteData(fid,'object',obj,'fieldname','CR','format','Double');
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| 82 | WriteData(fid,'object',obj,'fieldname','p','format','Double');
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| 83 | WriteData(fid,'object',obj,'fieldname','q','format','Double');
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| 84 | WriteData(fid,'object',obj,'fieldname','kn','format','Double');
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| 85 | WriteData(fid,'object',obj,'fieldname','stabilization','format','Double');
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| 86 | end % }}}
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[9617] | 87 | end
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| 88 | end
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