Semantic-Preserving Mesh Direct Drilling

R. Lou, J. Pernot, P. Véron, F. Giannini, B. Falcidieno, A. Mikchevitch, Raphaël Marc
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引用次数: 2

Abstract

Advances in modeling of discrete models have allowed the development of approaches for direct mesh modeling and modification. These tools mainly focus on modeling the visual appearance of the shape which is a key criterion for animation or surgical simulation. Most of the time, the resulting mesh quality as well as the semantics preservation capabilities are not considered as key features. These are the limits we overcome in this paper to enable fast and efficient mesh modifications when carrying out numerical simulations of product behaviors using the Finite Element (FE) analysis. In our approach, the modifications involve the resolution of an optimization problem where the constraints come from the shapes of the operating tools and the FE groups (sets of mesh entities) used to support the semantic information (e.g. boundary conditions, materials) contained in the FE mesh model and required for FE simulation. The overall mesh quality, a key point for accurate FE analysis, is guaranteed while minimizing an objective function based on a mechanical model of bar networks which smoothes the repositioning of nodes. Principle of the devised mesh operators is exemplified through the description of a 2D/3D mesh drilling operator. The proposed mesh modification operators are useful in the context of fast maintenance studies and help engineers to assess alternative design solutions aimed at improving the physical behavior of industrial machinery.
语义保持网格直接钻取
离散模型建模的进步使得直接网格建模和修改的方法得以发展。这些工具主要集中在形状的视觉外观建模,这是动画或手术模拟的关键标准。大多数时候,生成的网格质量以及语义保存能力并没有被视为关键特征。这些是我们在本文中克服的限制,以便在使用有限元(FE)分析进行产品行为的数值模拟时能够快速有效地进行网格修改。在我们的方法中,修改涉及解决优化问题,其中约束来自操作工具的形状和用于支持有限元网格模型中包含的语义信息(例如边界条件,材料)的有限元组(网格实体集),并用于有限元模拟。在保证整体网格质量的同时,基于杆网力学模型的目标函数最小化,使节点的重新定位变得平滑,这是准确有限元分析的关键。通过对2D/3D网格钻井操作器的描述,举例说明了所设计的网格操作器的原理。提出的网格修改操作符在快速维护研究的背景下是有用的,并帮助工程师评估旨在改善工业机械物理行为的替代设计解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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