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Resolved-particle simulation by the Physalis method: Enhancements and new capabilities

机译:Physalis方法解析粒子的仿真:增强功能和新功能

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摘要

We present enhancements and new capabilities of the Physalis method for simulating disperse multiphase flows using particle-resolved simulation. The current work enhances the previous method by incorporating a new type of pressure-Poisson solver that couples with a new Physalis particle pressure boundary condition scheme and a new particle interior treatment to significantly improve overall numerical efficiency. Further, we implement a more efficient method of calculating the Physalis scalar products and incorporate short-range particle interaction models. We provide validation and benchmarking for the Physalis method against experiments of a sedimenting particle and of normal wall collisions. We conclude with an illustrative simulation of 2048 particles sedimenting in a duct. In the appendix, we present a complete and self-consistent description of the analytical development and numerical methods.
机译:我们提出了使用粒子分解模拟来模拟分散多相流的Physalis方法的增强功​​能和新功能。当前的工作通过合并新型的压力-泊松求解器和新的空泡粒子压力边界条件方案以及新的粒子内部处理方法来改进以前的方法,从而显着提高了整体数值效率。此外,我们实现了一种更有效的计算酸浆标量乘积的方法,并结合了短程粒子相互作用模型。我们针对沉淀颗粒和正常壁碰撞的实验提供了针对酸浆方法的验证和基准。我们以导管中2048个颗粒沉积的说明性模拟作为结束。在附录中,我们对分析方法和数值方法进行了完整且自洽的描述。

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