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boundarylayer fixes
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fb13152004
commit
ec3d7c3ec9
@ -373,9 +373,6 @@ namespace netgen
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throw Exception("Couldn't find element on other side for " + ToString(segj[0]) + " to " + ToString(segj[1]));
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const auto& commsel = mesh[pnt_commelem];
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auto surfelem_vect = GetSurfaceNormal(mesh, commsel);
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if(blp.outside)
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surfelem_vect *= -1;
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Element2d sel(QUAD);
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auto seg_p1 = segi[0];
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auto seg_p2 = segi[1];
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@ -428,38 +425,78 @@ namespace netgen
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mesh.AddSegment(seg_2);
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}
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// in first layer insert new segments adjacent to
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// new face
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if(layer == 1 && !blp.surfid.Contains(segj.si))
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{
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Segment s3 = segj;
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s3.si = map_surface_index(segj.si)-1;
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s3[0] = mapto[s3[0]];
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s3[1] = mapto[s3[1]];
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mesh.AddSegment(s3);
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}
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// in last layer insert new segments
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if(layer == blp.heights.Size())
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{
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max_edge_nr++;
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if(!blp.surfid.Contains(segj.si))
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{
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Segment s3 = segj;
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s3.si = map_surface_index(segj.si)-1;
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Swap(s3[0], s3[1]);
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if(blp.outside)
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{
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s3[0] = mapto[s3[0]];
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s3[1] = mapto[s3[1]];
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}
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else
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s3.edgenr = max_edge_nr;
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mesh.AddSegment(s3);
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}
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Segment s1 = segi;
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Segment s2 = segj;
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s1.edgenr = ++max_edge_nr;
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s1.edgenr = max_edge_nr;
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s2.edgenr = max_edge_nr;
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auto side_surf = domains_to_surf_index[make_tuple(s2.si, blp.new_matnrs[layer-1], mesh.GetFaceDescriptor(s2.si).DomainOut())];
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if(blp.surfid.Contains(segj.si))
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s2.si = map_surface_index(segj.si);
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else
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{
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auto side_surf = domains_to_surf_index[make_tuple(s2.si, blp.new_matnrs[layer-1], mesh.GetFaceDescriptor(s2.si).DomainOut())];
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if(blp.outside)
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s2.si = side_surf;
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{
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s2.si = side_surf;
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}
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else
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segj.si = side_surf;
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mesh[sej].si = side_surf;
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}
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s1.si = map_surface_index(s1.si);
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s1.surfnr1 = s1.surfnr2 = s2.surfnr1 = s2.surfnr2 = -1;
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mesh.AddSegment(s1);
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mesh.AddSegment(s2);
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}
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segmap.SetSize(mesh.LineSegments().Size());
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for(auto sei2 : segmap[sei])
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{
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auto& s = mesh[sei2];
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if(blp.outside && layer == blp.heights.Size())
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{
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if(blp.surfid.Contains(s.si))
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s.si = map_surface_index(s.si);
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s.edgenr = max_edge_nr;
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}
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else
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{
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s[0] = mapto[s[0]];
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s[1] = mapto[s[1]];
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}
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}
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for(auto sej2 : segmap[sej])
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{
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auto& s = mesh[sej2];
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if(blp.outside && layer == blp.heights.Size())
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{
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if(blp.surfid.Contains(s.si))
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s.si = map_surface_index(s.si);
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s.edgenr = max_edge_nr;
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}
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else
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{
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s[0] = mapto[s[0]];
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s[1] = mapto[s[1]];
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}
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}
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// do not use segi (not even with reference, since
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// mesh.AddSegment will resize segment array and
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// invalidate reference), this is why we copy it!!!
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@ -477,6 +514,8 @@ namespace netgen
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// if necessary map them
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for(SegmentIndex sej = 0; sej<nseg; sej++)
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{
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if(segsel.Test(sej))
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{
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if(mesh[sej][0] == mesh[sei][1] &&
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mesh[sej][1] == mesh[sei][0])
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{
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@ -506,8 +545,7 @@ namespace netgen
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mesh[sej][1] = mapto[mesh[sej][1]];
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}
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}
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else
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continue;
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}
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}
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}
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}
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@ -2,11 +2,10 @@
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import pytest
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from netgen.csg import *
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def GetNSurfaceElements(mesh, boundary):
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def GetNSurfaceElements(mesh, boundaries):
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nse_in_layer = 0
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for el in mesh.Elements2D():
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print(el.index)
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if mesh.GetBCName(el.index-1) == boundary:
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if mesh.GetBCName(el.index-1) in boundaries:
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nse_in_layer += 1
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return nse_in_layer
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@ -14,18 +13,43 @@ def GetNSurfaceElements(mesh, boundary):
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def test_boundarylayer(outside, capfd):
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mesh = unit_cube.GenerateMesh(maxh=0.3)
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ne_before = mesh.ne
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layer_surfacenames = ["right", "top"]
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layer_surfacenames = ["right", "top", "left", "back", "bottom"]
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mesh.BoundaryLayer("|".join(layer_surfacenames), [0.01, 0.02], "layer", outside=outside, grow_edges=True)
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should_ne = ne_before + 2 * sum([GetNSurfaceElements(mesh, surf) for surf in layer_surfacenames])
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should_ne = ne_before + 2 * GetNSurfaceElements(mesh, layer_surfacenames)
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assert mesh.ne == should_ne
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capture = capfd.readouterr()
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assert not "elements are not matching" in capture.out
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for side in ["front"]:
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mesh.BoundaryLayer(side, [0.001], "layer", outside=outside, grow_edges=True)
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should_ne += GetNSurfaceElements(mesh, side)
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mesh.BoundaryLayer(side, [0.001, 0.002], "layer", outside=outside, grow_edges=True)
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should_ne += 2 * GetNSurfaceElements(mesh, [side])
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assert mesh.ne == should_ne
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capture = capfd.readouterr()
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assert not "elements are not matching" in capture.out
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@pytest.mark.parametrize("outside", [True, False])
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@pytest.mark.parametrize("version", [1]) # version 2 not working yet
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def test_boundarylayer2(outside, version, capfd):
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geo = CSGeometry()
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top = Plane(Pnt(0,0,0.5), Vec(0,0,1))
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bot = Plane(Pnt(0,0,0.1), Vec(0,0,-1))
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bigpart = OrthoBrick(Pnt(-5,-5,0), Pnt(1,1,1))
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part = bigpart* top * bot
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outer = ((OrthoBrick(Pnt(-1,-1,-1), Pnt(2,2,3)).bc("outer") * Plane(Pnt(2,2,2), Vec(0,0,1)).bc("outertop")))
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geo.Add((part * outer).mat("part"))
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if version == 1:
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geo.Add((outer-part).mat("rest"))
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else:
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geo.Add((outer-top).mat("rest"))
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geo.Add((outer-bot).mat("rest"))
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geo.Add((outer*top*bot-bigpart).mat("rest"))
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geo.CloseSurfaces(top, bot, [])
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mesh = geo.GenerateMesh()
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should_ne = mesh.ne + 2 * GetNSurfaceElements(mesh, ["default"])
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layersize = 0.05
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mesh.BoundaryLayer("default", [0.5 * layersize, layersize], "layer", domains="part", outside=outside, grow_edges=True)
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assert mesh.ne == should_ne
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assert not "elements are not matching" in capfd.readouterr().out
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