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Boundary effects on the creeping-flow and thermophoretic motions of an aerosol particle in a spherical cavity

机译:球形腔中气溶胶颗粒的蠕变运动和热泳运动的边界效应

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摘要

An analytical study is presented for the quasisteady translation, rotation, and thermophoresis of an aerosol sphere located at the center of a spherical cavity. The Knudsen number is assumed to be small so that the fluid flow is described by a continuum model with a temperature jump, a thermal creep, and a frictional slip at the solid surfaces. The particle and the cavity surroundings may differ in thermal conductivity and in surface properties. In the limit of small Reynolds and Peclet numbers, the appropriate energy and momentum equations are solved for each system and the particle velocities for an applied force, torque, and temperature gradient are derived individually in closed forms. In general, the boundary effects of the cavity wall on the isothermal creeping-flow and thermophoretic motions of an aerosol particle can be quite significant in appropriate situations. In practical aerosol systems, the boundary effect on thermophoresis is much weaker than that on the motion driven by a gravitation field. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 35]
机译:提出了对位于球形腔体中心的气溶胶球的准稳态平移,旋转和热泳的分析研究。 Knudsen数被假定为很小,因此,流体的流动可以用一个连续模型来描述,该模型在固体表面具有温度跃变,热蠕变和摩擦滑移。颗粒和空腔周围环境的热导率和表面性质可能不同。在小的雷诺数和Peclet数的范围内,为每个系统求解适当的能量和动量方程,并以闭合形式分别导出作用力,转矩和温度梯度的粒子速度。通常,在合适的情况下,腔壁对气溶胶颗粒的等温蠕变流和热泳运动的边界影响可能非常明显。在实际的气溶胶系统中,对热泳的边界作用比对重力场驱动的运动的边界作用要弱得多。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:35]

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