首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >A GENERALIZED ANALYSIS OF ELECTROOSMOTICALLY DRIVEN CAPILLARY FLOW IN RECTANGULAR MICROCHANNELS
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A GENERALIZED ANALYSIS OF ELECTROOSMOTICALLY DRIVEN CAPILLARY FLOW IN RECTANGULAR MICROCHANNELS

机译:矩形微通道中电光驱动毛细流动的广义分析

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In this study, the transient response of the fluid with combined electrokinetic and capillary effect in a microchannel is investigated theoretically. A second-order differential governing equation is obtained which represent the electroosmotic and capillary flow in a rectangular microchannel. This governing equation takes care of inertialforce, dynamic contact angle, electrokinetic and entrance effect. The electrokinetic effect is modeled through additional electrokinetic force, which varies along the penetration depth of fluid. The non-dimensional analysis is presented by normalizing the gravity, viscous, electrokinetic forces with surface tension force. New non-dimensional group for electrokinetic force is reported which represents the ratio of electrokinetic and surface tension forces. The numerical solution of the governing equation is validated with experimental and analytical results for capillary flows, which shows good agreement. It is observed that for smaller Eo the capillary front advancement follows the similar trend as pure capillary flow but for higher Eo, the electroosmotic force dominates over surface tension force. It is demonstrated that this model provides simple approach to predict the penetration depth in electroosmotically driven capillary flow.
机译:在这项研究中,理论上研究了流体的瞬态响应,并结合了微通道中的电动和毛细作用。获得了一个二阶微分控制方程,该方程表示矩形微通道中的电渗流和毛细流。该控制方程考虑了惯性力,动态接触角,电动势和入口效应。通过附加的电动势来模拟电动势,该电动势沿流体的渗透深度变化。通过对重力,粘性,电动势和表面张力进行归一化,可以进行无量纲分析。报告了电动势的新的无量纲基团,它代表了电动势和表面张力的比值。用毛细管流动的实验和分析结果验证了该控制方程的数值解,这显示出很好的一致性。观察到,对于较小的Eo,毛细管的前移遵循与纯毛细管流动相似的趋势,但是对于较高的Eo,电渗力在表面张力上占主导地位。结果表明,该模型提供了一种简单的方法来预测电渗驱动的毛细管流中的渗透深度。

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