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The Parametric Study of Electroosmotically Driven Flow of Power-Law Fluid in a Cylindrical Microcapillary at High Zeta Potential

机译:电动势驱动的流体在高Zeta圆柱形微毛细管中的电渗流的参数研究

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摘要

Due to the increasingly wide application of electroosmotic flow in micromachines, this paper investigates the electroosmotic flow of the power-law fluid under high zeta potential in a cylindrical microcapillary for different dimensionless parameters. The electric potential distribution inside a cylindrical microcapillary is presented by the complete Poisson-Boltzmann equation applicable to an arbitrary zeta potential. By solving the Cauchy momentum equation of power-law fluids, the velocity profile, the volumetric flow rate, the average velocity, the shear stress distribution and dynamic viscosity of electroosmotic flow of power-law fluids in a cylindrical microcapillary are studied for different low/high zeta potential, flow behavior index, dimensionless electrokinetic width. The velocity profile gradually changes from parabolic to plug-like shape as the flow behavior index decreases or as the dimensionless electrokinetic width increases. For shear thinning fluids, the viscosity is greater in the center of the microchannel than that near the channel wall, the reverse is true for the shear thickening fluids. Greater volumetric rate and average velocity can be achieved by enhancing the dimensionless electrokinetic width, flow behavior index and zeta potential. It is noted that zeta potential and flow behavior index are important parameters to adjust electroosmotic flow behavior in a cylindrical microcapillary.
机译:由于微机中电渗流的日益广泛的应用,本文针对不同的无量纲参数,研究了在圆柱形微毛细管中高ζ电势下幂律流体的电渗流。圆柱形微毛细管内部的电势分布由适用于任意Zeta电势的完整Poisson-Boltzmann方程表示。通过求解幂律流体的柯西动量方程,研究了在不同的低/ zeta电位高,流动行为指数,无因次电动势宽度。随着流动行为指数的降低或无因次电动势宽度的增加,速度曲线从抛物线形逐渐变为塞子形。对于剪切稀化流体,在微通道中心的粘度大于在通道壁附近的粘度,对于剪切稀化流体则相反。通过增加无量纲的电动宽度,流动行为指数和ζ电势,可以实现更高的体积比和平均速度。注意,ζ电势和流动行为指数是调节圆柱形微毛细管中电渗流动行为的重要参数。

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