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Methods for compressible multiphase flows and their applications

机译:可压缩多相流的方法及其应用

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摘要

This paper presents an efficient and robust numerical framework to deal with multiphase real-fluid flows and their broad spectrum of engineering applications. A homogeneous mixture model incorporated with a real-fluid equation of state and a phase change model is considered to calculate complex multiphase problems. As robust and accurate numerical methods to handle multiphase shocks and phase interfaces over a wide range of flow speeds, the AUSMPW+_N and RoeM_N schemes with a system preconditioning method are presented. These methods are assessed by extensive validation problems with various types of equation of state and phase change models. Representative realistic multiphase phenomena, including the flow inside a thermal vapor compressor, pressurization in a cryogenic tank, and unsteady cavitating flow around a wedge, are then investigated as application problems. With appropriate physical modeling followed by robust and accurate numerical treatments, compressible multiphase flow physics such as phase changes, shock discontinuities, and their interactions are well captured, confirming the suitability of the proposed numerical framework to wide engineering applications.
机译:本文介绍了一种有效且强大的数字框架,可处理多相真正流体流量及其广谱的工程应用。被认为是具有实际流体方程的均匀混合模型和相变模型被认为计算复杂的多相问题。作为在宽范围的流速下处理多相冲击和相位接口的鲁棒和准确的数值方法,提出了具有系统预处理方法的AUSMPW + _N和ROEM_N方案。这些方法是通过具有各种类型的状态和相变模型的广泛验证问题来评估。作为应用问题,然后作为应用问题,将代表性的现实多相现象,包括热蒸汽压缩机内部的流动,低温罐中的加压,以及楔形的不稳定空腔流动。通过适当的物理建模,然后是稳健和准确的数值处理,捕获了可压缩的多相流量,如相变,休克不连续性及其相互作用,确认了所提出的数值框架到广泛的工程应用程序的适用性。

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