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A multiphase compressible model for the simulation of multiphase flows

机译:用于模拟多相流的多相可压缩模型

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摘要

A compressible model able to manage incompressible two-phase flows as well as compressible motions is proposed. After a presentation of the multiphase compressible concept, the new model and related numerical methods are detailed on fixed structured grids. The presented model is a 1-fluid model with a reformulated mass conservation equation which takes into account the effects of compressibility. The coupling between pressure and flow velocity is ensured by introducing mass conservation terms in the momentum and energy equations. The numerical model is then validated with four test cases involving the compression of an air bubble by water, the liquid injection in a closed cavity filled with air, a bubble subjected to an ultrasound field and finally the oscillations of a deformed air bubble in melted steel. The numerical results are compared with analytical results and convergence orders in space are provided.
机译:提出了一种能够处理不可压缩的两相流以及可压缩运动的可压缩模型。在介绍了多相可压缩概念之后,在固定结构化网格上详细介绍了新模型和相关的数值方法。提出的模型是一个具有重整质量守恒方程的1-流体模型,其中考虑了可压缩性的影响。通过在动量和能量方程中引入质量守恒项,可以确保压力与流速之间的耦合。然后,通过四个测试案例对数值模型进行验证,其中包括水对气泡的压缩,在充满空气的密闭腔中注入液体,气泡受到超声场的作用,最后是熔融钢中气泡变形的振荡。将数值结果与分析结果进行比较,并提供了空间上的收敛阶。

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