Název: Corotated meshless implicit dynamics for deformable bodies
Autoři: Brunet, Jean-Nicolas
Magnoux, Vincent
Ozell, Benoît
Cotin, Stéphane
Citace zdrojového dokumentu: WSCG 2019: full papers proceedings: 27. International Conference in Central Europe on Computer Graphics, Visualization and Computer Vision, p. 91-100.
Datum vydání: 2019
Nakladatel: Václav Skala - UNION Agency
Typ dokumentu: konferenční příspěvek
conferenceObject
URI: http://hdl.handle.net/11025/35613
ISBN: 978-80-86943-37-4 (CD/-ROM)
ISSN: 2464-4625 (CD/DVD)
2464–4617 (print)
Klíčová slova: meshless metody;fyzicky založené modelování;interaktivní simulace;bodové modely
Klíčová slova v dalším jazyce: meshless methods;physically-based modelling;interactive simulation;point-based models
Abstrakt v dalším jazyce: This paper proposes a fast, stable and accurate meshless method to simulate geometrically non-linear elastic behaviors. To address the inherent limitations of finite element (FE) models, the discretization of the domain is simplified by removing the need to create polyhedral elements. The volumetric locking effect exhibited by incompressible materials in some linear FE models is also completely avoided. Our approach merely requires that the volume of the object be filled with a cloud of points. To minimize numerical errors, we construct a corotational formulation around the quadrature positions that is well suited for large displacements containing small deformations. The equations of motion are integrated in time following an implicit scheme. The convergence rate and accuracy are validated through both stretching and bending case studies. Finally, results are presented using a set of examples that show how we can easily build a realistic physical model of various deformable bodies with little effort spent on the discretization of the domain.
Práva: © Václav Skala - UNION Agency
Vyskytuje se v kolekcích:WSCG 2019: Full Papers Proceedings

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