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Dispersion due to electroosmotic flow in a circular microchannel with slowly varying wall potential and hydrodynamic slippage

机译:由于电渗流在圆形微通道中的分散,具有缓慢变化的壁电位和流体动力学滑移

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摘要

An analysis using the lubrication approximation is performed for the dispersion of a neutral non-reacting solute due to electro-osmotic flow through a circular channel under the combined effects of longitudinal non-uniformity of potential and hydrodynamic slippage on the channel wall. The wall is periodically patterned for the charge and slip distributions, with a wavelength much longer than the channel radius. It is shown that the presence of slip can greatly amplify the increased dispersion caused by induced pressure gradient brought about by the non-uniformity of wall potential. Non-uniform wall potential interacting with non-uniform slip can give rise to effects much different from those when the potential and slip are both uniformly distributed and equal to the averages of the non-uniform distributions. Mobility and dispersion associated with recirculating flow resulting from oppositely charged slipping region is also examined. © 2012 American Institute of Physics.
机译:在电位纵向纵向不均匀性和流体动力滑移在通道壁上的综合作用下,对由于电渗流通过圆形通道而引起的中性非反应溶质的分散进行了润滑近似分析。壁周期性地图案化以用于电荷和滑动分布,其波长比通道半径长得多。结果表明,滑移的存在可以大大放大由壁电势不均匀引起的感应压力梯度所引起的增大的分散。与不均​​匀滑移相互作用的不均匀壁电势会产生与当电位和滑移既均匀分布且等于非均匀分布的平均值时产生的效果大不相同的效果。还检查了与带相反电荷的滑动区域导致的循环流相关的迁移率和分散性。 ©2012美国物理研究所。

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    Ng CO; Zhou Q;

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  • 年度 2012
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  • 正文语种 eng
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