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Numerical study of the lift force influence on two-phase shock tube boundary layer characteristics

机译:升力对两相激波管边界层特性影响的数值研究

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摘要

The importance of the lift force acting on the dispersed phase in the boundary layer of a laminar gas-particle dilute mixture flow generated by a shock wave is investigated numerically. The particle phase is supposed to form a continuum and is described by an Eulerian approach. The ability of the Eulerian model to simulate particle flows and the importance of the two-way coupling are proven by comparison with experimental data as well as with the numerical results from schemes based on a Lagrangian approach. The models used for the lift force are discussed through comparisons between numerical and experimental results found in the literature. Some results about the formation of a dust cloud are numerically reproduced and show the major role of the lift force. Simulations of two-dimensional two-phase shock tube flows are also performed including the lift force effects. Although the wave propagation is weakly influenced by the lift force, the force modifies substantially the dynamics of the flow near the wall. [References: 23]
机译:数值研究了作用在冲击波产生的层状气体-颗粒稀薄混合流边界层中分散相上的升力的重要性。粒子相应该形成一个连续体,并通过欧拉方法进行描述。通过与实验数据以及基于拉格朗日方法的方案的数值结果进行比较,证明了欧拉模型模拟颗粒流的能力和双向耦合的重要性。通过比较文献中的数值和实验结果,讨论了用于提升力的模型。关于尘埃云形成的一些结果在数值上得到了再现,并显示了升力的主要作用。还执行了二维两相激波管流动的仿真,包括升力效应。尽管波传播受提升力的影响很小,但该力实质上改变了壁附近的流动动力学。 [参考:23]

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