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首页> 外文期刊>International Journal for Numerical Methods in Fluids >A CWENO ghost fluid method for compressible multimaterial flow
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A CWENO ghost fluid method for compressible multimaterial flow

机译:用于可压缩多材料流动的CWENO幻影流体方法

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摘要

In this work a new ghost fluid method (GFM) is introduced for multimaterial compressible flow with arbitrary equation of states. In previous researches, it has been shown that accurate wave decomposition at the interface by solving a Riemann problem alleviates the shortcomings of the standard GFM in dealing with the impingement of strong waves onto the interface but these Riemann-based GFM are not consistent with the framework of the central WENO scheme in which the emphasis is to avoid solving Riemann problems at control volume faces and enjoy the black box property (being independent of equation of state). The aim of this work is to develop a new GFM that is completely consistent with the methodology behind central schemes; that is, it enjoys a black box property. The capabilities of the proposed GFM method is shown by solving various types of multimaterial compressible flows including gas-gas, gas-water and fluid-solid interfaces interacting with strong shock waves in one and two space dimensions.
机译:在这项工作中,引入了一种新的幻影流体方法(GFM),用于具有任意状态方程的多材料可压缩流。在先前的研究中,已经表明,通过解决黎曼问题在界面上进行精确的波分解可以缓解标准GFM在处理强波撞击界面上的缺点,但是这些基于Riemann的GFM与框架不一致中心WENO方案的重点在于避免在控制体积面上解决Riemann问题并享有黑盒特性(与状态方程无关)。这项工作的目的是开发一种与中央计划背后的方法完全一致的新GFM。也就是说,它具有黑盒属性。通过解决各种类型的多材料可压缩流(包括与气体和气体,气-水和流固界面与一维和二维空间中的强冲击波相互作用)来显示所提出的GFM方法的功能。

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