Dewetting Dynamics of Anisotropic Particles: A Level Set Numerical Approach

Pub Date : 2021-11-01 DOI:10.21136/AM.2021.0040-21
Siddharth Gavhale, Karel Švadlenka
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Abstract

We extend thresholding methods for numerical realization of mean curvature flow on obstacles to the anisotropic setting where interfacial energy depends on the orien- tation of the interface. This type of schemes treats the interface implicitly, which supports natural implementation of topology changes, such as merging and splitting, and makes the approach attractive for applications in material science. The main tool in the new scheme are convolution kernels developed in previous studies that approximate the given anisotropy in a nonlocal way. We provide a detailed report on the numerical properties of the proposed algorithm.

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各向异性颗粒的脱湿动力学:水平集数值方法
我们将障碍物上平均曲率流动的数值实现的阈值方法扩展到界面能量取决于界面取向的各向异性设置。这种类型的方案隐式地处理接口,支持拓扑变化的自然实现,例如合并和分裂,并且使该方法在材料科学中的应用具有吸引力。新方案的主要工具是在以前的研究中开发的卷积核,它以非局部方式近似给定的各向异性。我们对所提出的算法的数值性质提供了详细的报告。
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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