Oscillatory electroosmotic flow in a microchannel with slippage at the walls

J. Arcos, M. Peralta, O. Bautista
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Abstract

—In this work, we conduct a theoretical analysis of an oscillatory electroosmotic flow in a parallel-plate microchannel taking into account slippage at the microchannel walls. The governing equations given by the Poisson-Boltzmann (with the Debye-Hückel approximation) and momentum equations are nondimensionalized from which four dimensionless parameters appear: an Reynolds angular number, the ratio between the zeta potentials of the microchannel walls, the electrokinetic parameter and the dimensionless slip length which measures the competition between the Navier slip length and the half height microchannel. The principal results indicate that the slippage has a strong influence on the magnitude of the oscillatory electroosmotic flow increasing the velocity magnitude up to 50% for the numerical values used in this work.
具有壁面滑移的微通道中的振荡电渗透流
在这项工作中,我们对考虑微通道壁面滑移的平行板微通道中的振荡电渗透流动进行了理论分析。由泊松-玻尔兹曼方程(debye - h ckel近似)和动量方程给出的控制方程是非量纲化的,由此出现了四个无量纲参数:雷诺角数、微通道壁zeta电位之比、电动力学参数和衡量纳维耶滑移长度与半高微通道之间竞争的无量纲滑移长度。主要结果表明,滑移对振荡电渗透流的大小有很强的影响,使本工作所用数值的速度大小增加了50%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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