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Finite Element Methods for Geometric Modeling and Processing Using General Fourth Order Geometric Flows

机译:一般四阶几何流动的几何建模与处理的有限元方法

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摘要

A variational formulation of a general form fourth order geometric partial differential equation is derived, and based on which a mixed finite element method is developed. Several surface modeling problems, including surface blending, hole filling and surface mesh refinement with the G{sup}1 continuity, are taken into account. The used geometric partial differential equation is universal, containing several well-known geometric partial differential equations as its special cases. The proposed method is general which can be used to construct surfaces for geometric design as well as simulate the behaviors of various geometric PDEs. Experimental results show that it is simple, efficient and gives very desirable results.
机译:推导出一般形式的四阶几何偏微分方程的变分制剂,并且基于开发混合有限元方法。考虑了几个表面建模问题,包括表面混合,孔填充和表面网格精制G {SUP}连续性。使用的几何局部微分方程是通用的,其中包含几种众所周知的几何局部微分方程作为其特殊情况。所提出的方法是一般的,可用于构造几何设计的表面,以及模拟各种几何PDE的行为。实验结果表明,它简单,有效,并提供了非常理想的结果。

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