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Mixing enhancement in microfluidic channel with a constriction under periodic electro-osmotic flow

机译:周期性电渗流下微流体通道中的混合增强与收缩

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摘要

We present a new approach to enhance mixing in T-type micromixers by introducing a constriction in the microchannel under periodic electro-osmotic flow. Two sinusoidal ac electric fields with 180° phase difference and similar dc bias are applied at the two inlets. The out of phase ac electric field induces oscillation of fluid interface at the junction of the two inlet channels and the constriction. Due to the constriction introduced at the junction, fluids from these two inlets form alternative plugs at the constricted channel. These plugs of fluids radiate downstream from the constriction into the large channel and form alternate thin crescent-shaped layers of fluids. These crescent-shaped layers of fluids increase tremendously the contact surface area between the two streams of fluid and thus enhance significantly the mixing efficiency. Experimental results and mixing mechanism analysis show that amplitude and frequency of the ac electric field and the length of the constriction govern the mixing efficiency.
机译:我们提出了一种新的方法,通过在周期性电渗流下的微通道中引入收缩来增强T型微混合器中的混合。在两个入口处施加两个具有180°相位差和相似直流偏置的正弦交流电场。异相交流电场在两个入口通道和缩颈的交界处引起流体界面的振荡。由于在接合处引入了收缩,来自这两个入口的流体在收缩通道处形成了可替代的塞子。这些流体塞从狭窄处向下游辐射到大通道中,并形成交替的新月形薄流体层。这些新月形的流体层极大地增加了两个流体流之间的接触表面积,从而显着提高了混合效率。实验结果和混合机理分析表明,交流电场的振幅和频率以及缩颈的长度决定了混合效率。

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