modified: anasen_fem/paraview_plotter.py made changes to allow field lines to only originate fom equipotential lines.
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@ -6,7 +6,7 @@ from paraview.simple import *
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reader = XMLUnstructuredGridReader(FileName=["wires2d/elfield_anasen_t0001.vtu"])
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contour_filter = Contour(Input=reader,ContourBy = 'potential')
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contour_filter.Isosurfaces = [i for i in np.arange(0,660,650/32.)]
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contour_filter.Isosurfaces = [i for i in np.arange(0,660,660/40.)]
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renderView = GetActiveViewOrCreate('RenderView')
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renderView.ViewSize = [2000,2000]
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@ -88,7 +88,8 @@ view.CameraViewUp = [0.0, 1.0, 0.0]
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# --- 2. Create the Glyph Filter (The Arrows) ---
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# IMPORTANT: Use 'pot_threshold' as the Input, not the 'reader'
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glyph = Glyph(Input=reader, GlyphType='Arrow')
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glyph = Glyph(Input=contour_filter, GlyphType='Arrow') #
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# glyph = Glyph(Input=reader, GlyphType='Arrow') #this uses all field line snot just the ones from the equipotential lines shown
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# Orientation Array: Use the 'electric field' vector from Elmer
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glyph.OrientationArray = ['POINTS', 'electric field']
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@ -97,7 +98,7 @@ glyph.ScaleFactor = 1
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# Sampling: Every nth point (Stride 16)
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glyph.GlyphMode = 'Every Nth Point'
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glyph.Stride = 96
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glyph.Stride = 24
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# --- 3. Display the Glyphs ---
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glyph_display = Show(glyph, renderView)
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@ -105,10 +106,11 @@ glyph_display = Show(glyph, renderView)
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# Set the representation to Surface so we see the full arrow colors
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glyph_display.Representation = 'Surface'
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# This is the critical line: Color the arrows by the 'potential' scalar
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ColorBy(glyph_display, ('POINTS', 'potential'))
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contour_display_potentialLUT.RescaleTransferFunction(0.0, 660.0)
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glyph_display.LookupTable = contour_display_potentialLUT
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contour_display_potentialLUT.RescaleTransferFunction(0.0, 660.0)
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# Optional: Disable the scalar bar for the arrows to avoid cluttering
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# the existing 'potential' scalar bar.
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@ -7,12 +7,12 @@ count=11
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while val<178.3+0.1:
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print(val)
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os.system("python3 wires_gmsh2d_bc.py "+str(val))
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os.system("cp wires2d/mesh_files/wires2d.msh wires2d/mesh_files/%02d_%1.4f.msh"%(count,val))
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os.system("ElmerGrid 14 2 wires2d/mesh_files/wires2d_%02d_%1.4f.msh"%(count,val))
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os.system("cp wires2d.sif wires2d/sif_files/wires2d_%02d_%1.4f.sif"%(count,val))
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os.system("ElmerSolver wires2d/sif_files/wires2d_%02d_%1.4f.sif"%(count,val))
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os.system("cp wires2d/elfield_anasen_t0001.vtu wires2d/vtu_files/elfield_anasen_%02d_%1.4f.vtu"%(count,val))
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os.system("ElmerGrid 14 2 wires2d.msh")
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os.system("ElmerSolver wires2d.sif")
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os.system("./paraview_plotter.py")
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os.system("cp wires2d.msh wires2d/mesh_files/wires2d%02d_%1.4f.msh"%(count,val))
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os.system("cp wires2d.sif wires2d/sif_files/wires2d_%02d_%1.4f.sif"%(count,val))
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os.system("cp wires2d/elfield_anasen_t0001.vtu wires2d/vtu_files/elfield_anasen_%02d_%1.4f.vtu"%(count,val))
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os.system("cp contour_output.png png/Contour_output_z_%02d_%1.4f.png"%(count,val))
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os.system("cp Field_output.png png/Field_ouput_z_%02d_%1.4f.png"%(count,val))
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@ -1,8 +1,8 @@
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Metadata for SaveScalars file: ./scalars.dat
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Elmer version: 26.1
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Elmer compilation date: 2026-03-15
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Solver input file: wires2d/sif_files/wires2d_11_17.8300.sif
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File started at: 2026/03/31 13:26:51
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Solver input file: wires2d.sif
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File started at: 2026/03/31 16:47:17
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Variables in columns of matrix:
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1: res: potential difference
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@ -151,6 +151,6 @@ gmsh.option.setNumber("Mesh.Algorithm", 6)
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gmsh.model.mesh.generate(dim=2)
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gmsh.model.mesh.refine()
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gmsh.write("wires2d/mesh_files/wires2d.msh")
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gmsh.write("wires2d.msh")
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#gmsh.fltk.run()
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gmsh.finalize()
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