A Discontinuity-Capturing Methodology for Two-Phase Inviscid Compressible Flow

Jiratrakul Tunkeaw, W. Rojanaratanangkule
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引用次数: 0

Abstract

The explicit filtering approach is applied to the quasi-conservative five-equation model of compressible two-phase flows to capture the interface between each fluid and a shock wave. The basic idea of the present filter is to combine a low-order linear filter with a high-order one via a proper discontinuity sensor and optimum linear weights. The capability of the proposed filter in capturing the contact discontinuity and damping the grid-to-grid oscillations is analysed. Various one-dimensional and two-dimensional test cases are performed, namely the interface advection of gas-gas flow, the shockinterface interaction, the gas-liquid Riemann problem, and the inviscid shock-bubble interaction. The numerical results reveal that the present filtering method can accurately capture the propagation of the shock waves and interfaces. Additionally, it produces less spurious oscillations compared with the existing 2nd-order discontinuity-capturing filter.
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两相无粘可压缩流的不连续捕获方法
将显式滤波方法应用于可压缩两相流的准保守五方程模型,以捕获每种流体与激波之间的界面。该滤波器的基本思想是通过适当的不连续传感器和最优的线性权值将一个低阶线性滤波器与一个高阶线性滤波器结合起来。分析了该滤波器捕捉接触不连续和抑制网格间振荡的能力。进行了各种一维和二维测试用例,即气-气流动的界面平流、激波-界面相互作用、气-液黎曼问题和无粘激波-气泡相互作用。数值结果表明,该滤波方法能准确地捕捉激波的传播过程和界面。此外,与现有的二阶不连续捕获滤波器相比,它产生的杂散振荡更小。
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发文量
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审稿时长
20 weeks
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