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Effects of Suction and Blowing on Flow and Heat Transfer Between Two Rotating Spheres With Time-Dependent Angular Velocities

机译:吸力和吹气对角速度随时间变化的两个旋转球体之间流动和传热的影响

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摘要

The effect of suction and blowing in the study of flow and heat transfer of a viscous incompressible fluid between two vertically eccentric rotating spheres is presented when the spheres are maintained at different temperatures and rotating about a common axis while the angular velocities of the spheres are arbitrary functions of time. The resulting flow pattern, temperature distribution, and heat transfer characteristics are presented for the various cases including exponential and sinusoidal angular velocities. These presentations are for various values of the flow parameters including rotational Reynolds number Re, and the blowing/suction Reynolds number Re_w The effects of transpiration and eccentricity on viscous torques at the inner and outer spheres are studied, too. As the eccentricity increases and the gap between the spheres decreases the viscous torque remains nearly unchanged. Results for special case of concentric spheres are obtained by letting eccentricity tend to zero.
机译:当两个球体保持在不同的温度并围绕一个共同的轴旋转而球的角速度是任意的时,在研究两个垂直偏心旋转球体之间的粘性和不可压缩流体的流动和传热时,吸力和吹气的作用就表现出来了。时间的功能。在各种情况下,包括指数和正弦角速度,都给出了所得的流型,温度分布和传热特性。这些表示适用于各种流量参数值,包括旋转雷诺数Re和吹气/吸气雷诺数Re_w。还研究了蒸腾作用和偏心率对内球和外球的粘性扭矩的影响。随着偏心率的增加和球体之间的间隙减小,粘性扭矩几乎保持不变。通过使偏心率趋于零,可以获得同心球特殊情况的结果。

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