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Scale separation for multi-scale modeling of free-surface and two-phase flows with the conservative sharp interface method

机译:使用保守的尖锐界面方法对自由表面和两相流进行多尺度建模的尺度分离

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摘要

In this paper we present a scale separation approach for multi-scale modeling of free-surface and two-phase flows with complex interface evolution. By performing a stimulus-response operation on the level-set function representing the interface, separation of resolvable and non-resolvable interface scales is achieved efficiently. Uniform positive and negative shifts of the level-set function are used to determine non-resolvable interface structures. Non-resolved interface structures are separated from the resolved ones and can be treated by a mixing model or a Lagrangian-particle model in order to preserve mass. Resolved interface structures are treated by the conservative sharp-interface model. Since the proposed scale separation approach does not rely on topological information, unlike in previous work, it can be implemented in a straightforward fashion into a given level set based interface model. A number of two- and three-dimensional numerical tests demonstrate that the proposed method is able to cope with complex interface variations accurately and significantly increases robustness against underresolved interface structures. (C) 2014 Elsevier Inc. All rights reserved.
机译:在本文中,我们提出了一种尺度分离方法,用于具有复杂界面演化的自由表面和两相流的多尺度建模。通过对表示接口的级别设置函数执行刺激响应操作,可以有效地实现可分辨和不可分辨界面比例的分离。水平集函数的均匀正负移位用于确定不可解析的界面结构。未解析的界面结构与已解析的界面结构分离,可以通过混合模型或拉格朗日粒子模型进行处理,以保持质量。解析的界面结构由保守的清晰界面模型处理。与以前的工作不同,由于建议的尺度分离方法不依赖于拓扑信息,因此可以直接将其实现到基于给定级别集的接口模型中。大量的二维和三维数值测试表明,所提出的方法能够准确地应对复杂的界面变化,并显着提高了针对欠解析界面结构的鲁棒性。 (C)2014 Elsevier Inc.保留所有权利。

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