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A large eddy simulation study of cyclones: The effect of sub-models on efficiency and erosion prediction

机译:旋风的大型涡旋仿真研究:子模型对效率和腐蚀预测的影响

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摘要

In this study, first, the effect of different state-of-the-art dispersion and particle-wall collision models on the efficiency and erosion prediction are investigated. Second, the influence of particle size on the erosion pattern is explored. These assessments require reliable sub-model inputs, e.g. velocity statistics, which are provided through a large eddy simulation. The results reveal that a dispersion model for cyclone applications should account for the effect of anisotropic normal and shear Reynolds stresses and the "drift correction". Furthermore, the erosion inside a cyclone can have four critical zones based on the particle size. It is also proven that the accurate prediction of erosion pattern necessitates the inclusion of the Saffman and Magnus lift forces on particles and realistic variable restitution coefficients in the particle-wall collision model. Finally, wall roughness increases the erosion rate of large particles through the combined impact of the "shadow effect" and energetic inner vortex on particles. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本研究中,首先,研究了不同最先义的分散和粒子 - 壁碰撞模型对效率和侵蚀预测的影响。其次,探讨了粒度对侵蚀模式的影响。这些评估需要可靠的子模型输入,例如,速度统计,通过大涡模拟提供。结果表明,旋风应用的分散模型应该考虑各向异性正常和剪切雷诺应力和“漂移校正”的影响。此外,旋风内的腐蚀可以具有基于粒度的四个临界区。还证明了侵蚀模式的准确预测需要将Saffman和Magnus提升力置于粒子 - 壁碰撞模型中的颗粒和现实的可变恢复系数上。最后,壁粗糙度通过“阴影效应”和精力充沛的内涡体对颗粒的综合影响增加了大颗粒的侵蚀率。 (c)2019年Elsevier B.V.保留所有权利。

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