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Analytical Solution for Thermally Fully Developed Combined Electroosmotic and Pressure-Driven Flows in Narrow Confinements With Thick Electrical Double Layers

机译:具有厚电双层的狭窄密闭空间中热充分开发的电渗流和压力驱动流的组合解析解决方案

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摘要

In the present paper, closed form solutions for the Nusselt number are obtained for hydrodynamically and thermally fully developed combined electroosmotic and pressure-driven flows in narrow confinements for the constant wall heat flux boundary condition. Overcoming the constraints of the standard models that are valid only within thin electrical double layer (EDL) limits, the effects of thick electric double layers are accounted for as a distinctive feature of this model. Along with Joule heating, viscous dissipation effects, which are particularly important for ultrathin channel dimensions (typically conforming to the cases of thick EDLs), are taken into account. The results are presented in terms of appropriate nondimensional parameters depicting the relative EDL thickness with respect to the channel height, as well as relative strengths of Joule heating and viscous dissipation effects.
机译:在本文中,对于恒定壁热通量边界条件,在狭窄范围内的流体动力和热力充分结合的电渗流和压力驱动流,获得了Nusselt数的闭式解。克服了仅在薄双电层(EDL)限制内有效的标准模型的约束,厚双电层的影响被视为该模型的显着特征。除焦耳加热外,还考虑了粘性耗散效应,这对于超薄通道尺寸(通常符合厚EDL的情况)尤其重要。结果以适当的无量纲参数表示,描述了相对EDL厚度相对于通道高度的相对EDL厚度,以及焦耳加热的相对强度和粘性耗散效应。

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