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Fictitious domain method combined with the DEM for studying particle-particle/particle-wall collision in fluid

机译:虚拟结构域方法与DEM相结合,用于研究流体中的颗粒颗粒/粒子壁碰撞

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The interaction between particles and a fluid is very important in many fields. The hydrodynamic characteristics of both spheroidal particles and non-spherical particles sediment in the fluid and their rebound dynamics were investigated by using the fictitious domain method-discrete element method (FDM-DEM) in this paper. The novelty lies in the combination of the Monte Carlo scheme with FDM to improve the accuracy of hydrodynamic force. A soft-sphere scheme of DEM is used to model the collision of particles. The hydrodynamic force on the particle is fully resolved by the FDM. The numerical results of spherical particle are verified by comparing the previous numerical and experimental results implemented by Cate. The results of non-spherical particles sediment show that the path instability occurs. Those results are in good agreement with the corresponding published data. The method presented in this paper can be used in practical applications.
机译:颗粒和流体之间的相互作用在许多领域非常重要。 本文采用虚拟域法离散元素(FDM-DEM)研究了流体中球颗粒和非球形粒子沉积物的流体动力学特性及其回弹动力学。 新颖性在于Monte Carlo方案与FDM的组合,以提高流体动力学力的准确性。 DEM的软球方案用于模拟粒子的碰撞。 通过FDM完全解决颗粒上的流体动力学力。 通过比较Cate实施的先前数值和实验结果来验证球面颗粒的数值结果。 非球形粒子沉积物的结果表明,出现路径不稳定性。 这些结果与相应的已发布数据吻合良好。 本文提出的方法可用于实际应用。

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