空腔中多孔胶体球的启动旋转

IF 2.5 Q3 CHEMISTRY, PHYSICAL
Chan W. Yu, H. Keh
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引用次数: 0

摘要

本文分析了在低雷诺数条件下,在充满不可压缩牛顿流体的球形空腔中心,突然施加一个围绕多孔球体直径的连续力矩所引起的多孔球体的起始旋转。通过拉普拉斯变换求解了分别控制多孔质点外部和内部流体速度的斯托克斯和布林克曼非稳态方程,并获得了其动态角速度作为相关参数函数的显式计算公式。孤立多孔质点的启动旋转行为以及空腔壁对质点旋转的影响非常有趣。粒子的角速度随着时间的推移不断增长,从最初的零值增长到最终值,而角加速度则随着时间的推移不断下降。一般来说,瞬态角速度是颗粒孔隙率的递增函数。流体渗透性较高的多孔球体在任何时间内的旋转角速度和加速度相对于参考粒子都较高,但在角速度向各自终值增长的百分比上落后于参考粒子。瞬态角速度随着颗粒与空腔半径比的增大而减小,但当多孔颗粒内部的流体流动阻力或半径比本身很小时,瞬态角速度对半径比并不敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Start-Up Rotation of a Porous Colloidal Sphere in a Cavity
The starting rotation of a porous sphere induced by the sudden application of a continuous torque about its diameter at the center of a spherical cavity filled with an incompressible Newtonian fluid at low Reynolds numbers is analyzed. The unsteady Stokes and Brinkman equations governing the fluid velocities outside and inside the porous particle, respectively, are solved via the Laplace transform, and an explicit formula of its dynamic angular velocity as a function of the pertinent parameters is obtained. The behavior of the start-up rotation of an isolated porous particle and the cavity wall effect on the particle rotation are interesting. The angular velocity of the particle grows incessantly over time from an initial zero to its final value, while the angular acceleration declines with time continuously. In general, the transient angular velocity is an increasing function of the porosity of the particle. A porous sphere with higher fluid permeability rotates at higher angular velocity and acceleration relative to the reference particle at any elapsed time but lags behind the reference particle in the percentage growth of angular velocity towards the respective terminal values. The transient angular velocity decreases with increasing particle-to-cavity radius ratio, but it is not a sensitive function of the radius ratio when the resistance to fluid flow inside the porous particle or the radius ratio itself is small.
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来源期刊
Colloids and Interfaces
Colloids and Interfaces CHEMISTRY, PHYSICAL-
CiteScore
3.90
自引率
4.20%
发文量
64
审稿时长
10 weeks
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