JOURNAL ARTICLE

Finite Element Analysis for Linear Elastic Solids Based on Subdivision Schemes

Daniel BurkhartBernd HamannGeorg Umlauf

Year: 2011 Journal:   Leibniz-Zentrum für Informatik (Schloss Dagstuhl) Vol: 19   Publisher: Schloss Dagstuhl – Leibniz Center for Informatics

Abstract

Finite element methods are used in various areas ranging from mechanical engineering to computer graphics and bio-medical applications. In engineering, a critical point is the gap between CAD and CAE. This gap results from different representations used for geometric design and physical simulation. We present two different approaches for using subdivision solids as the only representation for modeling, simulation and visualization. This has the advantage that no data must be converted between the CAD and CAE phases. The first approach is based on an adaptive and feature-preserving tetrahedral subdivision scheme. The second approach is based on Catmull-Clark subdivision solids.

Keywords:
Subdivision Finite element method Representation (politics) Subdivision surface CAD Computer graphics Computer science Graphics Tetrahedron Visualization Scheme (mathematics) Point (geometry) Computational science Algorithm Structural engineering Computer graphics (images) Mathematics Engineering drawing Engineering Geometry Data mining Mathematical analysis

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22
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0.17
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Citation History

Topics

Advanced Numerical Analysis Techniques
Physical Sciences →  Engineering →  Computational Mechanics
Manufacturing Process and Optimization
Physical Sciences →  Engineering →  Industrial and Manufacturing Engineering
Computational Geometry and Mesh Generation
Physical Sciences →  Computer Science →  Computer Graphics and Computer-Aided Design

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