首页> 外文会议>ASME Fluids Engineering Division summer conference;FEDSM2009 >MULTI-MODEL FORMULATION FOR COMPRESSIBLE MULTIPHYSICS AND MULTIPHASE FLOWS: AN EFFICIENT COUPLING ALGORITHM
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MULTI-MODEL FORMULATION FOR COMPRESSIBLE MULTIPHYSICS AND MULTIPHASE FLOWS: AN EFFICIENT COUPLING ALGORITHM

机译:可压缩多物理场和多相流的多模型公式化:一种有效的耦合算法

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A coupling between a general multiphase flows model and a two-phase dilute flow model is presented. Both models are based on Eulerian approach (two fluids models) and compressible flows are considered.This coupling permits to solve problems in which a multiphase description (involving N phases) is necessary to obtain a good physical behavior of the flow on short times: it corresponds to a given location on the computational domain. Then the flow is developing and far from the location of the initial establishment of the flow, a simpler model can be used, for example a dilute two-phase model one.A methodology for coupling both models is necessary in order to get efficient calculations and a physical consistency. This coupling is not only a challenge regarding the computing resources or the programming. We also require that the wave patterns are correctly transmitted through the coupling interface. We then developed specific Riemann solvers that allow the transmission of acoustic or material waves. We also require the preservation of the conservative quantities such as mass, momentum and energy.The method is checked on ID case: propagation of uniform flows, shock tubes. Multidimensional problem are also presented, showing the efficiency of the coupling methodology regarding CPU time.
机译:提出了一般的多相流模型与两相稀流模型之间的耦合。两种模型均基于欧拉方法(两种流体模型),并考虑了可压缩流动。 这种耦合允许解决以下问题,其中多相描述(涉及N个相)对于在短时间内获得良好的流动物理行为是必不可少的:它对应于计算域上的给定位置。然后,流程在发展,并且远离流程的初始位置,可以使用更简单的模型,例如稀两相模型。 为了获得有效的计算和物理一致性,必须使用一种将两个模型耦合的方法。这种耦合不仅是关于计算资源或编程的挑战。我们还要求波形图通过耦合接口正确传输。然后,我们开发了特定的Riemann求解器,可以传播声波或物质波。我们还要求保留诸如质量,动量和能量之类的保守量。 该方法在ID情况下进行了检查:均匀流的传播,激波管。还提出了多维问题,显示了有关CPU时间的耦合方法的效率。

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