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Meshing curved wire-frame models through energy minimization and packing of ellipses

✍ Scribed by Atsushi Yamada; Kenji Shimada; Takayuki Itoh


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
236 KB
Volume
46
Category
Article
ISSN
0029-5981

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✦ Synopsis


In the initial phase of structural part design, wire-frame models are sometimes used to represent the shapes of curved surfaces. Finite Element Analysis (FEA) of a curved surface requires a well shaped, graded mesh that smoothly interpolates the wire frame. This paper describes an algorithm that generates such a triangular mesh from a wire-frame model in the following two steps: (1) construct a triangulated surface by minimizing the strain energy of the thin-plate-bending model, and (2) generate a mesh by the bubble meshing method on the projected plane and project it back onto the triangulated surface. Since the mesh elements are distorted by the projection, the algorithm generates an anisotropic mesh on the projected plane so that an isotropic mesh results from the ÿnal projection back onto the surface. Extensions of the technique to anisotropic meshing and quadrilateral meshing are also discussed. The algorithm can generate a well-shaped, well-graded mesh on a smooth curved surface.