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Transition models from the quenched to ignited states for flows of inertial particles suspended in a simple sheared viscous fluid

机译:悬浮在简单剪切黏性流体中的惯性颗粒从淬火状态到点火状态的过渡模型

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摘要

A review of existing theories for flows of inertial particles suspended in an unbounded sheared viscous fluid is presented first. A comparison between theoretical predictions and numerical simulation results is made for Stokes numbers from 1 to 10 in dilute and dense flows. Both particle agitation and anisotropy coefficients are examined, showing that neither of them is able to give satisfactory results in dense flows. A more precise calculation of collisional contributions to the balance law of the particle stress tensor is presented. Results of the corresponding theory are in very good agreement with numerical simulations both in dilute and dense flows.
机译:首先介绍了悬浮在无边界剪切粘性流体中的惯性粒子流的现有理论。在稀疏和稠密流动中,斯托克斯数从1到10进行了理论预测和数值模拟结果的比较。检查了颗粒搅拌和各向异性系数,表明它们在稠密流动中均不能给出令人满意的结果。提出了对颗粒应力张量平衡定律的碰撞贡献的更精确计算。相应理论的结果与稀流和密流中的数值模拟都非常吻合。

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