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首页> 外文期刊>SIAM Journal on Numerical Analysis >COMPUTATIONAL PARAMETRIC WILLMORE FLOW WITH SPONTANEOUS CURVATURE AND AREA DIFFERENCE ELASTICITY EFFECTS
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COMPUTATIONAL PARAMETRIC WILLMORE FLOW WITH SPONTANEOUS CURVATURE AND AREA DIFFERENCE ELASTICITY EFFECTS

机译:自发曲率和面积差异弹性效应的计算参数Willmore流动

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摘要

A new stable continuous-in-time semidiscrete parametric finite element method for Willmore flow is introduced. The approach allows for spontaneous curvature and area difference elasticity effects, which are important for many applications, in particular, in the context of membranes. The method extends ideas from Dziuk and the present authors to obtain an approximation that allows for a tangential redistribution of mesh points, which typically leads to better mesh properties. Moreover, we consider volume and surface area preserving variants of these schemes and, in particular, we obtain stable approximations of Helfrich flow. We also discuss fully discrete variants and present several numerical computations.
机译:介绍了一种用于Willmore流动的新的稳定的连续时间半离散参数有限元方法。该方法允许自发的曲率和面积差弹性效应,这对于许多应用尤其是在膜的情况下是重要的。该方法扩展了Dziuk和本作者的思想,以获得近似值,可以对网格点进行切向重分布,这通常会导致更好的网格属性。此外,我们考虑了这些方案的体积和表面积保留变量,特别是获得了Helfrich流量的稳定近似值。我们还将讨论完全离散的变量,并提供几种数值计算。

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