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The meshing framework ViennaMesh for finite element applications

机译:适用于有限元应用的网格划分框架ViennaMesh

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摘要

The applicability of the meshing framework ViennaMesh for finite element simulations is investigated. Meshing tools are highly diverse, meaning that each software package offers specific properties, such as the conforming Delaunay property. The feasibility of these properties tends to be domain specific, thus restricting the general application of a meshing tool. For research purposes, it is desirable to have a rich toolset consisting of the various meshing packages in order to be able to quickly apply the various packages to the problem at hand. Different meshing tools have to be utilized to support a broader range of mesh properties. Further contributing to this problem is the lack of a common programming interface, impeding convenient switching of meshing backends. ViennaMesh tackles this challenge by providing a uniform meshing interface and reusable mesh-related tools, like CGAL, Gmsh, Netgen, and Tetgen. We depict the feasibility of our approach by discussing two applications relevant to finite element simulations, being a local mesh optimization and an adaptive mesh refinement application.
机译:研究了网格划分框架ViennaMesh在有限元模拟中的适用性。网格划分工具非常多样化,这意味着每个软件包都提供特定的属性,例如一致的Delaunay属性。这些属性的可行性往往是特定于领域的,因此限制了网格划分工具的一般应用。为了研究的目的,希望有一个由各种网格化软件包组成的丰富的工具集,以便能够将各种软件包快速应用于当前的问题。必须使用不同的网格划分工具来支持更广泛的网格划分属性。导致该问题的进一步原因是缺少通用的编程接口,这妨碍了网格后端的方便切换。 ViennaMesh通过提供统一的网格划分界面和可重用的网格相关工具(例如CGAL,Gmsh,Netgen和Tetgen)解决了这一难题。通过讨论与有限元模拟相关的两个应用,即局部网格优化和自适应网格优化应用,我们描述了我们方法的可行性。

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