保守前沿跟踪方法中物理耗散缺失的数值模拟

Mohammed Aman Ullah , Mao De-kang
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引用次数: 0

摘要

无粘性和可压缩流的欧拉方程用于建模界面不稳定性,在这样做的过程中,所有物理耗散都被忽略,因为它们非常弱。然而,在界面发展的后期,具有数值耗散或具有少量耗散的界面不稳定性的数值模拟在界面上受到非物理伪影的影响。在本文中,我们为之前开发的保守前沿跟踪方法引入了数值耗散,该方法切向模拟界面上欧拉方程中缺失的物理耗散。数值算例表明,它们抑制了被跟踪界面上的数值伪影,有助于完成精细网格上界面不稳定性的模拟。
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Numerically simulating the missing physical dissipations in a conservative front-tracking method

The Euler equations for inviscid and compressible flows are used for modeling interfacial instabilities, and in doing so all the physical dissipations are ignored under the consideration that they are extremely weak. However, numerical simulations of interfacial instabilities with numerical dissipations or with little dissipations suffer from nonphysical artifacts on the interfaces in late times of the interfacial developments. In this paper we introduce numerical dissipations for our previously developed conservative front-tracking method that simulate tangentially the missing physical dissipations in the Euler equations on the interfaces. Numerical examples show that they suppress numerical artifacts on the tracked interfaces and help to accomplish the simulations of interfacial instabilities on fine grids.

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来源期刊
Journal of Computational Physics: X
Journal of Computational Physics: X Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
6.10
自引率
0.00%
发文量
7
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