首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >A Grid-Free Lagrangian Approach of Vortex Method and Particle Trajectory Tracking Method Applied to Internal Fluid-Solid Two-Phase Flows
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A Grid-Free Lagrangian Approach of Vortex Method and Particle Trajectory Tracking Method Applied to Internal Fluid-Solid Two-Phase Flows

机译:涡旋法和粒子轨迹跟踪法的无网格拉格朗日方法应用于内部固液两相流

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摘要

We have developed a numerical simulation scheme combining a vortex method and a particle trajectory tracking method, which is applicable to internal unsteady two-phase flows. It is a completely grid-free Lagrangian-Lagrangian simulation, which is able to simulate the primary effect of vortical flow on the unsteady particle motion and dispersion. It can handle unsteady high Reynolds number flows. So far, no one has applied this kind of method internal multiphase flows, though many industrial multiphase flows are internal. In this study, internal liquid-solid two-phase flows in a vertical channel and a mixing tee have been calculated by the new method, in which use of the vortex introduction model enables the simulation of the dynamic behavior of separation or reattachment. In the mixing tee, solid particle phenomena such as depositions or particle-wall collisions have been simulated and measured. Numerical results based on simple two-dimensional flow and one-way model show good agreement with the experimental data. The results show that turbulent vortices dominate particle motion. It has been shown that the present method can be useful in the design of industrial multiphase flows with particle mixing, dispersion, deposition, and particle-wall collision because it is possible to simulate the effect of turbulent vortices on the particle motion.
机译:我们已经开发出了一种将涡旋方法和粒子轨迹跟踪方法相结合的数值模拟方案,该方案适用于内部非稳态两相流。这是一个完全无网格的Lagrangian-Lagrangian模拟,它能够模拟涡流对非稳态粒子运动和扩散的主要影响。它可以处理不稳定的高雷诺数流。到目前为止,尽管许多工业上的多相流是内部的,但没有人采用这种方法。在这项研究中,通过新方法计算了垂直通道中的内部液固两相流和混合三通,其中使用涡流引入模型可以模拟分离或重新附着的动力学行为。在混合三通中,已经模拟并测量了固体颗粒现象,例如沉积或颗粒壁碰撞。基于简单二维流和单向模型的数值结果与实验数据吻合良好。结果表明,湍流涡旋支配着粒子运动。已经表明,本方法可用于设计具有颗粒混合,分散,沉积和颗粒壁碰撞的工业多相流,因为可以模拟湍流涡流对颗粒运动的影响。

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