Interleaving Delaunay Refinement and Optimization for Practical Isotropic Tetrahedron Mesh Generation - Inria - Institut national de recherche en sciences et technologies du numérique
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Rapport (Rapport De Recherche) Année : 2009
Interleaving Delaunay Refinement and Optimization for Practical Isotropic Tetrahedron Mesh Generation
1 GEOMETRICA - Geometric computing (2004 route des Lucioles BP 93 F-06902 Sophia Antipolis (France) / Bât Alan Turing, Campus de l'Ecole Polytechnique, 1 rue Honoré d'Estienne d'orves, 91120 Palaiseau (France) - France)
"> GEOMETRICA - Geometric computing
2 D-INFK - Department of Computer Science [ETH Zürich] (Haldeneggsteig 4 / Weinbergstrasse 8092 Zürich - Suisse)
"> D-INFK - Department of Computer Science [ETH Zürich]
3 CS CALTECH - Computer Science Department (Computer Science Department California Institute of Technology 1200 E. California Boulevard MC 256-80 Pasadena, CA 91125 USA - États-Unis)
"> CS CALTECH - Computer Science Department
Jane Tournois
  • Fonction : Auteur
  • PersonId : 857875
Pierre Alliez
Mathieu Desbrun

Résumé

We present a practical approach to isotropic tetrahedral meshing of 3D domains bounded by piecewise smooth surfaces. Building upon recent theoretical and practical advances, our algorithm interleaves Delaunay refinement and mesh optimization to generate quality meshes that satisfy a set of user-defined criteria. This interleaving is shown to be more sparing in Steiner points' insertions than refinement alone, and to produce higher quality meshes than optimization alone. A careful treatment of boundaries and their features is presented, offering a versatile framework for designing smoothly graded tetrahedral meshes of complex geometries.
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Dates et versions

inria-00359288 , version 1 (06-02-2009)
Identifiants
  • HAL Id : inria-00359288 , version 1

Citer

Jane Tournois, Camille Wormser, Pierre Alliez, Mathieu Desbrun. Interleaving Delaunay Refinement and Optimization for Practical Isotropic Tetrahedron Mesh Generation. [Research Report] RR-6826, INRIA. 2009, pp.27. ⟨inria-00359288⟩
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