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On rotational dynamics of inertial disks in creeping shear flow

机译:蠕变剪切流中惯性盘的旋转动力学

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The rotational motion of an inertial disk-like particle in a creeping linear shear flow is investigated. A disk-like particle in a linear shear flow tends to rotate in the velocity-gradient plane as do rod-like particles. Unlike prolate spheroids, however, oblate spheroids always attain the same steady rotation in the shear plane irrespective of their initial orientation. The drift of the orientation of the rotation axis towards the vorticity vector consists of two qualitatively different stages. First, the wobbling drift towards rotation in the velocity-gradient plane becomes slower with increasing particle inertia, except for the least inertial spheroids. The duration of the second stage, during which the spheroid spins up to match the angular fluid velocity, becomes independent of the aspect ratio for relatively flat particles, provided that a new shape-dependent Stokes number is used. (C) 2014 Elsevier B.V. All rights reserved.
机译:研究了惯性盘状颗粒在蠕变线性剪切流中的旋转运动。线性剪切流中的盘状颗粒倾向于像棒状颗粒一样在速度梯度平面中旋转。与扁长球体不同,扁长球体在剪切平面中始终获得相同的稳定旋转,而不论其初始方向如何。旋转轴朝向涡度矢量的方向漂移包括两个质量上不同的阶段。首先,除了最小惯性椭球体以外,随着粒子惯性的增加,在速度梯度平面中朝向旋转的摆动漂移变得更慢。如果使用新的形状相关的斯托克斯数,第二阶段的持续时间将变得独立于相对扁平颗粒的纵横比,在第二阶段,球体旋转起来以匹配角流体速度。 (C)2014 Elsevier B.V.保留所有权利。

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