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Lagrangian numerical simulation for solid-liquid two-phase flow in a curved duct

机译:拉格朗日数值模拟弯管内固液两相流

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摘要

A multiway coupling Lagrangian model was developed and used to simulate the solid-liquid two-phase flow in a curved duct. Particle-wall collision and interparticle collision were included by hard sphere model and stochastic collision model. Comparison between experimental results and numerical simulation shows a reasonable agreement. The effects of liquid mean velocity, curvature radius and section shape of a curved duct on particle volume concentration distribution were investigated by this model and a new ideal for separation enhancement between liquid and solid was proposed.
机译:建立了多路耦合拉格朗日模型,并将其用于模拟弯管中的固液两相流。硬球模型和随机碰撞模型包括了颗粒壁碰撞和颗粒间碰撞。实验结果与数值模拟的比较显示出合理的一致性。该模型研究了液体平均速度,曲率半径和弯管截面形状对颗粒体积浓度分布的影响,提出了提高固液分离效果的新理想方法。

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