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H2 forced convection in rectangular microchannels under a mixed electroosmotic and pressure-driven flow

机译:H2在混合电渗和压力驱动流下矩形微通道中的强制对流

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We consider the forced convection heat transfer associated with a mixed electroosmotically and pressure-driven flow through a rectangular microchannel. The thermal boundary condition is considered to be the constant wall heat flux of second type, H2, and the flow is assumed to be both hydrodynamically and thermally fully developed. Series solutions are obtained for the electrical potential, velocity, and temperature fields as well as the Nusselt number. The results show that the Nusselt number is generally an increasing function of the channel width to height ratio with the exception being the pressure-assisted flow with surface cooling for which a weak decreasing dependence on the aspect ratio is observed. It is also found that an increase in the Joule heating parameter is accompanied by a lower Nusselt number, unless for pressure-opposed flows for which the trend is reversed at higher aspect ratios. The Joule heating effects, however, are not much important when the minimum channel dimension to Debye length ratio is above 200. Furthermore, increasing either of the velocity scale ratio or electric-double-layer thickness leads to smaller Nusselt numbers. Nevertheless, the impact of these parameters diminishes when either the velocity scale ratio takes very large values or electric-double layer gets very thin. (c) 2017 Elsevier Masson SAS. All rights reserved.
机译:我们考虑通过矩形微通道与混合电胶和压力驱动的流动相关联的强制对流传热。热边界条件被认为是第二型,H 2的恒定壁热通量,并且假设流动的流动既流体动力学和热完全开发。为电势,速度和温度场以及营养数而获得系列解决方案。结果表明,纽带号通常是通道宽度与高度比的越来越多的函数,除了具有表面冷却的表面冷却的压力辅助流程,观察到对纵横比的较小依赖性的压力辅助流动。还发现,焦耳加热参数的增加伴随着较低的纽带数,除非对于在较高纵横比上逆转趋势的压力相对的流量。然而,当长度比率的最小通道尺寸高于200时,焦耳加热效果并不重要。此外,增加了速度比例或电双层厚度的任何一个导致更小的露珠数。然而,当速度比例比率非常大的值或电双层变得非常薄时,这些参数对这些参数的影响会减小。 (c)2017年Elsevier Masson SAS。版权所有。

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