首页> 外文会议>International Conference on Nanochannels, Microchannels and Minichannels; 20070618-20; Puebla(MX) >DEVIATION OF ELECTROOSMOTIC FLOW FROM PLUG-LIKE PROFILE - THE EFFECT OF RESERVOIR SIZE
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DEVIATION OF ELECTROOSMOTIC FLOW FROM PLUG-LIKE PROFILE - THE EFFECT OF RESERVOIR SIZE

机译:类似于塞子轮廓的电渗流的偏离-储层尺寸的影响

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摘要

In electrokinetically-driven microfluidic applications, reservoirs are indispensable and have finite sizes. During operating processes, as the liquid level in reservoirs keeps changing as time elapses, a backpressure is generated. Thus, the flow in microfluidic channels actually exhibits a combination of the electroosmotic flow and the time-dependent induced backpressure-driven flow. In this paper, a model is presented to describe the effect of the finite reservoir size on electroosmotic flow in a rectangular microchannel. Important parameters that describe the effect of finite reservoir size on flow characteristics are discussed. A new concept termed as "effective pumping period" is introduced to characterize the reservoir size effect. The proposed model identifies the mechanisms of the finite-reservoir size effects and is verified by experiment using the micro-PIV technique. The results reported in this study can be used for facilitating the design of microfluidic devices.
机译:在电动驱动的微流体应用中,储层是必不可少的,并且具有有限的大小。在运行过程中,随着时间的流逝,储罐中的液位不断变化,就会产生背压。因此,微流体通道中的流动实际上表现出电渗流与时间相关的诱导背压驱动流的组合。在本文中,提出了一个模型来描述矩形矩形微通道中有限储层大小对电渗流的影响。讨论了描述有限储层大小对流量特征影响的重要参数。引入了一个称为“有效抽水周期”的新概念来表征油藏尺寸效应。所提出的模型确定了有限水库规模效应的机制,并通过使用微型PIV技术的实验进行了验证。该研究报告的结果可用于促进微流体装置的设计。

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