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Residence time distribution for electrokinetic flow through a microchannel comprising a bundle of cylinders

机译:电动流动通过包含一捆圆柱的微通道的停留时间分布

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摘要

The electrokinetic flow of an electrolyte solution through a microchannel that comprises a bundle of cylinders is investigated for the case of constant surface potential. The system under consideration is simulated by a unit cell model, and analytical expressions for the flow field and the corresponding residence time distribution under various conditions are derived. These results are readily applicable to the assessment of the performance of a microreactor such as that which comprises a bundle of optical fibers. Numerical simulations are conducted to investigate the influences of the key parameters, including the thickness of the double layer, the strength of the applied electric field, the magnitude of the applied pressure gradient, and the characteristic sizes of a microchannel, on the residence time distribution. We show that the following could result in a shorter residence time: thin double layer, strong applied electric field, large applied pressure gradient, and small number of cylinders. Based on the thickness of the double layer, criteria are proposed for whether the flow field can be treated as a laminar flow or as a plug flow, two basic limiting cases in reactor design. (c) 2006 Elsevier Inc. All rights reserved.
机译:对于恒定表面电位的情况,研究了电解质溶液通过微通道的电动势,该微通道包括一捆圆柱体。所考虑的系统通过单元格模型进行仿真,并推导了在各种条件下的流场和相应的停留时间分布的解析表达式。这些结果易于用于评估微反应器的性能,例如包括一束光纤的微反应器。进行数值模拟以研究关键参数对停留时间分布的影响,这些关键参数包括双层厚度,施加的电场强度,施加的压力梯度的大小以及微通道的特征尺寸。 。我们显示出以下结果可能会缩短停留时间:双层薄,施加的电场强,施加的压力梯度大和气缸数少。根据双层的厚度,提出了关于将流场视为层流还是塞流的标准,这是反应堆设计中的两个基本限制情况。 (c)2006 Elsevier Inc.保留所有权利。

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