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首页> 外文期刊>Discrete and continuous dynamical systems >MULTIPHASE VOLUME-PRESERVING INTERFACE MOTIONS VIA LOCALIZED SIGNED DISTANCE VECTOR SCHEME
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MULTIPHASE VOLUME-PRESERVING INTERFACE MOTIONS VIA LOCALIZED SIGNED DISTANCE VECTOR SCHEME

机译:通过局部有符号距离矢量方案保存多相体积的界面运动

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摘要

We develop a signed distance vector approach for approximating volume-preserving mean curvature motions of interfaces separating multiple phases - a variant of the BMO (Bence-Merriman-Osher) thresholding dynamics. We adopt a variational method employing the idea of a vector-type discrete Morse flow, which allows us to easily treat volume constraint via penalization without having to change the threshold value. Moreover, employing a vector-valued analogue of the signed distance function, the scheme is designed to allow subgrid accuracy on uniform grids without adaptive refinement; thereby, alleviating the well-known BMO time and grid restrictions. Finally, we present numerical tests and examples.
机译:我们开发了一种有符号距离矢量方法,用于近似分离多个相的界面的体积保持平均曲率运动-BMO(Bence-Merriman-Osher)阈值动力学的一种变体。我们采用采用矢量型离散莫尔斯流的想法的变分方法,该方法使我们能够通过惩罚轻松地处理体积约束,而不必更改阈值。此外,采用有符号距离函数的矢量值模拟,该方案旨在允许子网格在统一网格上的准确性,而无需进行自适应优化。从而减轻了众所周知的BMO时间和电网限制。最后,我们提供数值测试和示例。

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