High-order modeling of interface interactions using level sets

Q1 Mathematics
Nico Fleischmann, Josef M. Winter, Stefan Adami, Nikolaus A. Adams
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引用次数: 1

Abstract

Most technological advancements in medicine, process and energy engineering, life and food science, mobility and environmental engineering involve mastering fluid mechanical effects. In particular, compressible flow physics including shockwaves and phase-interface interactions exhibit multi-scale phenomena spanning several orders of magnitude upwards from nanometer and nanosecond time scales. Clearly, detailed analysis of such effects is impossible by means of experimental techniques. On the contrary, numerical modeling and simulations allow to capture the aforementioned mechanisms and provide non-invasive access to any quantity of interest. Yet, the complex fluid physics require powerful computational methods utilizing recent advancements for high-order schemes. In this work, we provide an overview on latest high-order low-dissipation schemes using level sets to model discontinuous phase-interface interactions.

Abstract Image

使用水平集的界面交互的高阶建模
医学、过程与能源工程、生命与食品科学、流动性与环境工程等领域的大多数技术进步都涉及对流体力学效应的掌握。特别是,包括激波和相界面相互作用在内的可压缩流动物理表现出从纳米和纳秒时间尺度向上跨越几个数量级的多尺度现象。显然,用实验技术来详细分析这种效应是不可能的。相反,数值建模和模拟允许捕获上述机制,并提供对任何感兴趣数量的非侵入性访问。然而,复杂的流体物理需要利用最新进展的高阶格式的强大计算方法。在这项工作中,我们概述了使用水平集来模拟不连续相界面相互作用的最新高阶低耗散方案。
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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来源期刊
GAMM Mitteilungen
GAMM Mitteilungen Mathematics-Applied Mathematics
CiteScore
8.80
自引率
0.00%
发文量
23
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