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Non-reflecting coupling method for one-dimensional finite difference/finite volume schemes based on spectral error analysis

机译:基于光谱误差分析的一维有限差分/有限体积格式的非反射耦合方法

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摘要

For the compressible coupled simulation of piping systems including fluid machinery, an embedment of 3D finite volume schemes for active components such as pumps and compressors into 11) finite difference characteristic methods for passive components (e.g. pipes, valves) offers a sophisticated 3D investigation of the machinery with a moderate simulation effort for the entire system. While a 3D-1D coupling method for finite volume Godunov schemes is available from preliminary studies, in the present paper, a new non-reflecting coupling method for 1D finite volume Godunov and 1D finite difference characteristic methods is presented, and the mechanisms for spurious reflections at the coupling interface are revealed. The proposed methodology is based on spectral error analysis and is in general applicable to the coupling of any fundamentally different numerical schemes. It is demonstrated that by matching the numerical diffusion and speed of sound in both coupled domains, reflections can be minimized. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对于包括流体机械在内的管道系统的可压缩耦合模拟,将用于泵和压缩机等有源组件的3D有限体积方案嵌入到11)用于无源组件(例如管道,阀门)的有限差分特征方法中,可以对管道进行复杂的3D研究机械,对整个系统进行适度的仿真。虽然可以从初步研究中获得用于有限体积Godunov方案的3D-1D耦合方法,但本文提出了一种用于一维有限体积Godunov和一维有限差分特征方法的新型非反射耦合方法,以及了伪反射的机理。在耦合界面上显示。所提出的方法是基于频谱误差分析的,并且通常适用于任何根本不同的数值方案的耦合。结果表明,通过在两个耦合域中匹配数值扩散和声音速度,可以使反射最小化。 (C)2016 Elsevier Ltd.保留所有权利。

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