40 lines
1.6 KiB
Matlab
40 lines
1.6 KiB
Matlab
function exportFig45Fem4()
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%EXPORTFIG45FEM4 导出 Et 与 Figure4/5 端口面 normE 图(plotE2 方式)
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rootDir = fileparts(mfilename('fullpath'));
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outDir = fullfile(rootDir, 'OutFile_fem4');
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load(fullfile(rootDir, 'MeshData2x.mat'), 'Mesh');
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[Physic, Material, Port1Solver, Port2Solver] = configPhysicMaterialFem4();
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Port1Mesh = GetBMesh(Mesh.Nodes, Mesh.Faces, Mesh.FacesIndex, Physic.Port1);
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[Port1Solver, Port1Mesh] = BoundaryEigenMode(Port1Mesh, Physic, Material, Port1Solver);
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Port1Solver = GetPowerCoef(Port1Solver, Port1Mesh, Material.murF, 1);
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Port1Mesh.normal = [0; 0; -1];
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Port2Mesh = GetBMesh(Mesh.Nodes, Mesh.Faces, Mesh.FacesIndex, Physic.Port2);
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[Port2Solver, Port2Mesh] = BoundaryEigenMode(Port2Mesh, Physic, Material, Port2Solver);
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Port2Mesh.normal = [0; 0; 1];
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[Solver, Mesh] = FemMatrixAssembly(Physic, Material, Mesh, ...
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Port1Mesh, Port1Solver, Port2Mesh, Port2Solver);
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[~, ~, ~, normE_elem] = GetExEyEz2(1, Mesh.Nodes, Mesh.Elements, ...
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Mesh.EdgesOfElements, Solver.Et);
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fid = fopen(fullfile(outDir, 'X_real.txt'), 'w');
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fprintf(fid, '%.16g\n', real(Solver.Et));
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fclose(fid);
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fid = fopen(fullfile(outDir, 'X_imag.txt'), 'w');
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fprintf(fid, '%.16g\n', imag(Solver.Et));
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fclose(fid);
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In = plotE2(Mesh.Nodes, Port1Mesh.OldFaces, Mesh.AllFaces, ...
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Mesh.FacesOfElements, normE_elem, 4, 0.5);
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Out = plotE2(Mesh.Nodes, Port2Mesh.OldFaces, Mesh.AllFaces, ...
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Mesh.FacesOfElements, normE_elem, 5, 0.5);
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saveas(figure(4), fullfile(outDir, 'fig4_port_in_matlab.png'));
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saveas(figure(5), fullfile(outDir, 'fig5_port_out_matlab.png'));
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fprintf('MATLAB port max |E| in=%g out=%g\n', In, Out);
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fprintf('Saved fig4/5 to %s\n', outDir);
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end
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