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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Characterization of the startup transient electrokinetic flow in rectangular channels of arbitrary dimensions, zeta potential distribution, and time-varying pressure gradient
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Characterization of the startup transient electrokinetic flow in rectangular channels of arbitrary dimensions, zeta potential distribution, and time-varying pressure gradient

机译:任意尺寸,ζ电势分布和随时间变化的压力梯度的矩形通道中启动瞬态电动势的表征

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摘要

The solution to the startup transient EOF in an arbitrary rectangular microchannel is derived analytically and validated experimentally. This full 2D transient solution describes the evolution of the flow through five distinct periods until reaching a final steady state. The derived analytical velocity solution is validated experimentally for different channel sizes and aspect ratios under time-varying pressure gradients. The experiments used a time resolved micro particle image velocimetry technique to calculate the startup transient velocity profiles. The measurements captured the effect of time-varying pressure gradient fields derived in the analytical solutions. This is tested by using small reservoirs at both ends of the channel which allowed a time-varying pressure gradient to develop with a time scale on the order of the transient EOF. Results showed that under these common conditions, the effect of the pressure build up in the reservoirs on the temporal development of the transient startup EOF in the channels cannot be neglected. The measurements also captured the analytical predictions for channel walls made of different materials (i.e., zeta potentials). This was tested in channels that had three PDMS and one quartz wall, resulting in a flow with an asymmetric velocity profile due to variations in the zeta potential between the walls.
机译:通过分析得出并通过实验验证了任意矩形微通道中启动瞬态EOF的解决方案。这个完整的2D瞬态解决方案描述了在五个不同的时期内直到达到最终稳态之前的流动演变。在时变压力梯度下,针对不同通道尺寸和纵横比,对实验得出的解析速度解进行了验证。实验使用时间分辨的微粒图像测速技术来计算启动瞬态速度曲线。这些测量结果捕获了解析溶液中随时间变化的压力梯度场的影响。这是通过在通道两端使用小型储层进行测试的,该储层允许随时间变化的压力梯度随瞬态EOF量级而发展。结果表明,在这些共同的条件下,在储层中积累的压力对通道中瞬态启动EOF的时间发展的影响不可忽略。这些测量结果还捕获了由不同材料(即zeta电位)制成的通道壁的分析预测。这在具有三个PDMS和一个石英壁的通道中进行了测试,由于壁之间zeta电位的变化,导致流速不对称。

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