非球形粒子在均匀各向同性湍流中的响应行为

S. Laín
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引用次数: 0

摘要

在本研究中,通过流体速度场的运动学模拟,研究了非球形颗粒,特别是椭球和圆柱体在均匀和各向同性湍流中的响应性。在这种流场中,粒子的跟踪不仅包括平移和旋转分量,还包括通过欧拉角和参数进行的方向跟踪。从文献中得到了非球形颗粒在中间雷诺数范围内的流动系数、力和扭矩的相关关系。研究了湍流中非球形粒子的拉格朗日时间自相关函数、粒子的平移和旋转响应以及它们的优先取向与形状和惯性的关系。结果表明,粒子自相关函数平动和旋转随纵横比增大而减小,粒子线性均方根速度随纵横比增大而增大,而旋转均方根速度先增大,在纵横比为2左右达到最大值,然后又减小。最后,在均匀各向同性湍流中,圆柱体不表现出任何优先取向,但椭球体却表现出优先取向,从而使暴露在气流中的截面最大化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Response Behavior of Nonspherical Particles in Homogeneous Isotropic Turbulent Flows
In this study, the responsiveness of nonspherical particles, specifically ellipsoids and cylinders, in homogeneous and isotropic turbulence is investigated through kinematic simulations of the fluid velocity field. Particle tracking in such flow field includes not only the translational and rotational components but also the orientation through the Euler angles and parameters. Correlations for the flow coefficients, forces and torques, of the nonspherical particles in the range of intermediate Reynolds number are obtained from the literature. The Lagrangian time autocorrelation function, the translational and rotational particle response, and preferential orientation of the nonspherical particles in the turbulent flow are studied as function of their shape and inertia. As a result, particle autocorrelation functions, translational and rotational, decrease with aspect ratio, and particle linear root mean square velocity increases with aspect ratio, while rotational root mean square velocity first increases, reaches a maximum around aspect ratio 2, and then decreases again. Finally, cylinders do not present any preferential orientation in homogeneous isotropic turbulence, but ellipsoids do, resulting in preferred orientations that maximize the cross section exposed to the flow.
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