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TWO-FLUID ELECTROOSMOTIC FLOW IN MICROCHANNELS

机译:微通道中的两种流体电渗流

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摘要

This paper presents theoretical and experimental investigations of the pressure-driven two-liquid flow in microchannels with the electroosmosis effect. For a fully developed, steady state, laminar flow of two liquids combined the pressure gradient, electroosmosis and surface charges at the liquid-liquid interface, we have derived analytical solutions that relate the velocity profiles and flow rates to the liquid holdup, the aspect ratio of the microchannel, the viscosity ratio of the two liquids and the externally applied electric field. It was shown that adjusting the externally applied electric field could control the fluid interface position precisely. The prediction from the proposed model compares very well with measured data.
机译:本文介绍了具有电渗效应的微通道中压力驱动的两种液体流动的理论和实验研究。对于两种液体的充分发展的稳态层流,结合了液-液界面处的压力梯度,电渗和表面电荷,我们得到了解析解,这些解析解将速度曲线和流速与液体滞留率,长宽比相关联微通道的粘度,两种液体的粘度比和外部施加的电场。结果表明,调节外部施加的电场可以精确地控制流体界面位置。所提出的模型的预测与实测数据非常吻合。

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