首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Influence of the electric double layer on induced pressure fields and development lengths in electro-osmotic flows
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Influence of the electric double layer on induced pressure fields and development lengths in electro-osmotic flows

机译:双电层对电渗流中感应压力场和展开长度的影响

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摘要

Electro-osmotic flow can be used as an efficient pumping mechanism in microfluidic devices. For this type of flow, frictional losses at the entrance and exit can induce an adverse longitudinal pressure distribution that can lead to dispersive effects. The present study describes a numerical investigation of the influence of the electric double layer on the induced pressure field and the flow development length. The induced pressure gradient is affected by the volumetric flow rate, fluid viscosity and the channel height. When the electric double layer is small, the development length remains constant at 0.57 of the channel height but decreases as the double layer grows in thickness.
机译:电渗流可以用作微流体装置中的有效泵送机制。对于这种类型的流动,入口和出口处的摩擦损失会引起不利的纵向压力分布,从而导致分散效果。本研究描述了双电层对感应压力场和流动发展长度的影响的数值研究。诱导的压力梯度受体积流量,流体粘度和通道高度的影响。当双电层较小时,显影长度保持恒定在沟道高度的0.57处,但是随着双层厚度的增加而减小。

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