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Electroosmotic flow of a power-law fluid through an asymmetrical slit microchannel with gradually varying wall shape and wall potential

机译:幂律流体的电渗流通过不对称的狭缝微通道,具有逐渐变化的壁形状和壁电位

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摘要

This study aims to investigate electroosmotic flow of a power-law fluid through a slit channel with walls asymmetrically patterned with periodic variations in shape and zeta potential. On taking into account the near-wall depletion layer, the present problem is simplified on the basis of the lubrication approximation, and through the use of the Helmholtz–Smoluchowski slip boundary condition. Nonlinear equations are to be solved for two unknown functions of axial dependence, one being the induced pressure gradient, and another being an undetermined stress component. An efficient numerical scheme is devised in this work to solve the nonlinear problem. Results are generated to check whether the principle of linear superposition of forces, for electrokinetic flow of a non-Newtonian fluid in the presence of a Newtonian depletion layer, is still applicable to flow in an asymmetric channel. It is also found that phase shifts between the geometrical and electric potential patterns on the two walls may lead to qualitatively disparate effects, depending on the power-law behavior index of the fluid and the applied pressure gradient.
机译:这项研究旨在研究幂律流体通过狭缝通道的电渗流,该狭缝通道的壁不对称地图案化,形状和ζ电势周期性变化。考虑到近壁耗尽层,在润滑近似的基础上并通过使用Helmholtz-Smoluchowski滑移边界条件简化了当前问题。对于两个轴向相关的未知函数,将要求解非线性方程,一个是感应压力梯度,另一个是不确定的应力分量。在这项工作中设计了一种有效的数值方案来解决非线性问题。产生结果以检查力的线性叠加原理(对于存在牛顿耗尽层的非牛顿流体的电动流动)是否仍然适用于非对称通道中的流动。还发现,取决于流体的幂律行为指数和所施加的压力梯度,两壁上的几何图形和电势图形之间的相移可能导致定性不同的效果。

著录项

  • 作者

    Qi C; Ng CO;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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