首页> 外文会议>2015 Proceedings of the ASME 13th international conference on nanochannels, microchannels, and minichannels >STUDY OF THE TRANSIENT ELECTROOSMOTIC FLOW OF MAXWELL FLUIDS IN SQUARE CROSS-SECTION MICROCHANNELS
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STUDY OF THE TRANSIENT ELECTROOSMOTIC FLOW OF MAXWELL FLUIDS IN SQUARE CROSS-SECTION MICROCHANNELS

机译:方形截面微通道中麦克斯韦流体的瞬时电渗流研究

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Several kinds of fluids with non-Newtonian behavior are manipulated in microfluidic devices for medical, chemical and biological applications. This work presents an analytical solution for the transient electroosmotic flow of Maxwell fluids in square cross-section microchannels. The appropriate combination of the momentum equation with the rheological Maxwell model derives in a mathematical model based in a hyperbolic partial differential equation, that permits to determine the velocity profile. The flow field is solved using the Green's functions for the steady-state regime, and the method of separation of variables for the transient phenomenon in the electwosmotic flow. Taking in to account the normalized form of the governing equations, we predict the influence of the main dimensionless parameters on the velocity profiles. The results show an oscillatory behavior in the transient stage of the fluid flow, which is directly controlled by the dimensionless relaxation time, this parameter is an indicator of the competition between elastic and viscous effects. Hence, this investigation about the characteristics of the fluid rheology on the fluid velocity of the transient electwosmotic flow are discussed in order to contribute to the understanding the different tasks and design of microfluidic devices.
机译:在医疗,化学和生物应用的微流控设备中,对几种具有非牛顿行为的流体进行了处理。这项工作为方形截面微通道中麦克斯韦流体的瞬时电渗流提供了一种解析解决方案。动量方程与流变麦克斯韦模型的适当组合是在基于双曲偏微分方程的数学模型中得出的,该数学模型允许确定速度分布。使用格林函数用于稳态状态,以及分离电渗流中瞬态现象的变量的方法来求解流场。考虑到控制方程的归一化形式,我们预测了主要无量纲参数对速度分布的影响。结果表明,在流体瞬态阶段的振荡行为直接受无因次松弛时间控制,该参数是弹性和粘性作用之间竞争的指标。因此,讨论了关于瞬态电渗流的流体流变特性对流体流变特性的研究,以有助于理解微流体装置的不同任务和设计。

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