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Detail-preserving fully-Eulerian interface tracking framework

机译:保留细节的全欧拉接口跟踪框架

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摘要

This paper introduces a fully-Eulerian interface tracking framework that preserves the fine details of liquids. Unlike existing Eulerian methods, the proposed framework shows good mass conservation even though it does not employ conventional Lagrangian elements. In addition, it handles complex merging and splitting of interfaces robustly due to the implicit representation. To model the interface more accurately, a high order polynomial reconstruction of the signed distance function is utilized based on a number of sub-grid quadrature points. By combining this accurate polynomial representation with a high-order re-initialization method, the proposed framework preserves the detailed structures of the interface. Moreover, the method is simple to implement, unconditionally stable, and is suitable for parallel computing environments.
机译:本文介绍了一个全欧拉界面跟踪框架,该框架保留了液体的精细细节。与现有的欧拉方法不同,所提出的框架显示出良好的质量守恒,即使它没有采用传统的拉格朗日元素。此外,由于隐式表示,它可以稳健地处理接口的复杂合并和拆分。为了更准确地对界面进行建模,利用基于多个子网格正交点的有符号距离函数的高阶多项式重构。通过将这种精确的多项式表示与高阶重初始化方法相结合,所提出的框架保留了界面的详细结构。而且,该方法实现简单,无条件稳定,适用于并行计算环境。

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