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首页> 外文期刊>International Journal of Engineering Science >Oscillatory flow of a micropolar fluid generated by the rotary oscillations of two concentric spheres
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Oscillatory flow of a micropolar fluid generated by the rotary oscillations of two concentric spheres

机译:由两个同心球的旋转振荡产生的微极性流体的振荡流

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摘要

In this paper we examine the flow of an incompressible micropolar fluid between two concentric spheres, generated by their rotary oscillations about a common diameter. The spheres are assumed to be oscillating with the same amplitude but with different angular speeds. The speeds of oscillation are assumed to be small so that the nonlinear terms in the equations of motion can be neglected under the usual Stokesian assumption. The analytical expressions for velocity and microrotation components are determined in terms of modified Bessel functions of first and second kind. The couples experienced by the inner and outer spheres are calculated and are expressed in terms of two real parameters K and K′ whose variation is studied numerically. The variations of K and K′ with respect to micropolarity parameter and frequency parameter are displayed graphically.
机译:在本文中,我们研究了两个同心球之间不可压缩的微极性流体的流动,该流动是由它们围绕共同直径的旋转振荡产生的。假设球体以相同的振幅但以不同的角速度振荡。假设振荡速度较小,因此在通常的斯托克斯假设下,可以忽略运动方程中的非线性项。速度和微旋转分量的解析表达式是根据第一类和第二类修正的Bessel函数确定的。计算了内球体和外球体所经历的耦合,并用两个实参K和K′表示,对它们的变化进行了数值研究。图形化地显示了K和K'相对于微极性参数和频率参数的变化。

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