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首页> 外文期刊>International journal of computational fluid dynamics >Forces on a spherical particle in shear flow at intermediate Reynolds numbers
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Forces on a spherical particle in shear flow at intermediate Reynolds numbers

机译:雷诺数为中等时剪切流中球形颗粒上的力

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When particles are submerged in a shear flow, there are lateral (lift) forces on the particles, and these lateral forces affect the dispersion of the particles very much. Recent literature survey indicates that there are large discrepancies among the results from the previous numerical investigations on this subject. A small computational domain ranging between 20-30 sphere radii was used in all the previous numerical investigations. However, the result from the present study reveals that the value of lift coefficient strongly depends on the size of computational domain. To provide correct numerical data and physical interpretation for the forces on a spherical particle in linear shear flow, accurate numerical computations were performed for 5 <= Re <= 200 using a computational domain of 101 sphere radii.
机译:当颗粒浸没在剪切流中时,颗粒上会产生横向力(提升力),这些横向力会极大地影响颗粒的分散。最近的文献调查表明,以前有关该主题的数值研究结果之间存在很大差异。在先前的所有数值研究中都使用了介于20-30球面半径之间的较小计算域。但是,本研究的结果表明,升力系数的值很大程度上取决于计算域的大小。为了为线性剪切流中的球形颗粒上的力提供正确的数值数据和物理解释,使用101球体半径的计算域对5 <= Re <= 200进行了精确的数值计算。

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