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Heat Transfer Analysis of Mixed Electro-osmosis Pressure-Driven Flow for Power-Law Fluids Through a Microtube

机译:动力法流体通过微管的混合电渗压力驱动流传热分析

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In this work, convection heat transfer for combined electro-osmotic and pressure driven flow of power-law fluid through a microtube has been analyzed. Typical results for velocity and temperature distributions, friction coefficient, and Nusselt number are illustrated for various values of key parameters such as flow behavior index, length scale ratio (ratio of Debye length to tube radius), dimensionless pressure gradient, and dimensionless Joule heating parameter. The results reveal that friction coefficient decreases with increasing dimensionless pressure gradient, and classical Poiseuille solutions can be retrieved as the dimensionless pressure gradient approaches to infinite. To increase the length scale ratio has the effect to reduce Nusselt number, while the influence of this ratio on Nusselt number diminishes as the pressure gradient increases. With the same magnitude of dimensionless Joule heating parameter, Nusselt number can be increased by increasing both the flow behavior index and dimensionless pressure gradient for surface cooling, while the opposite behavior is observed for surface heating. Also, singularities occurs in the Nusselt number variations for surface cooling as the ratio of Joule heating to wall heat flux is sufficiently large with negative sign.
机译:在这项工作中,对通过微管的幂律流体的电渗流和压力驱动流的组合对流传热进行了分析。给出了关键参数的各种值的速度和温度分布,摩擦系数和Nusselt数的典型结果,这些参数包括流动性能指数,长度比例比(德拜长度与管半径的比),无因次压力梯度和无因次焦耳加热参数。结果表明,摩擦系数随无量纲压力梯度的增加而减小,随着无量纲压力梯度趋于无穷大,经典的泊瓦依解可被获取。增加长度比例比具有减少Nusselt数的效果,而随着压力梯度的增加,该比例对Nusselt数的影响会减小。在无量纲焦耳加热参数大小相同的情况下,可以通过增加表面冷却的流动性能指数和无量纲压力梯度来增加Nusselt数,而对于表面加热则观察到相反的行为。而且,由于焦耳热与壁热通量之比足够大且带有负号,因此在表面冷却的Nusselt数变化中会出现奇点。

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