
doi: 10.4203/ccp.100.36
handle: 10553/16521
In this paper, we extend a simultaneous untangling and smoothing technique previously developed for triangular and tetrahedral meshes to quadrilateral and hexahedral ones. Specifically, we present a technique that iteratively untangles and smooths a given quadrilateral or hexahedral mesh by minimizing an objective function defined in terms of a modification of an algebraic quality measure. The proposed method optimizes the mesh quality by a local node relocation process. That is, without modifying the mesh connectivity. Finally, we present several examples to show that the proposed technique obtains valid meshes composed by high-quality quadrilaterals and hexahedra, even when we start from tangled meshes…
1204 Geometría, Mesh optimization, Mesh untangling, Mesh smoothing, Mesh generation, 1206 Análisis numérico, Hexahedral mesh, Análisis de mallas
1204 Geometría, Mesh optimization, Mesh untangling, Mesh smoothing, Mesh generation, 1206 Análisis numérico, Hexahedral mesh, Análisis de mallas
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