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Extended Graetz problem for combined electroosmotic and pressure-driven flows in narrow confinements with thick electric double layers

机译:带有厚双电层的狭窄空间中的电渗流和压力驱动流的扩展Graetz问题

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摘要

Heat transfer characteristics of thermally developing, pressure-gradient aided electroosmotic flows through narrow fluidic confinements, with step-change in the wall temperature, are critically analyzed by going beyond thin electrical double layer (EDL) approximations that are otherwise routinely invoked in the literature. By employing a semi-analytical formalism, our analysis demonstrates that thick EDL considerations, consistent with the possibilities of having the characteristic EDL thickness comparable to the channel hydraulic radius, may alter the thermal transport characteristics to a significant extent, as compared to the corresponding characteristics obtained under thin EDL limits. The unique features of the resulting heat transfer characteristics stem mainly from the non-trivial effects of viscous dissipation under such physical conditions, and from its intrinsic difference with the Joule heating effects, as emphasized upon. In addition to the volumetric heat generation sources, the effects of the relative strengths of the flow actuation mechanisms and thermal Peclet number on the thermal entrance length, liquid temperature profile and the local Nusselt number are discussed through a detailed parametric study. The thermally fully developed state is analyzed here as a limiting condition of the developing flow regime.
机译:通过超越壁薄电双层(EDL)的近似方法,严格分析了热发展,压力梯度辅助的电渗流通过狭窄的流体限制区的热传递特性(随壁温的变化而变化),而这在文献中通常没有提及。通过采用半分析形式,我们的分析表明,与相应的特性相比,考虑到厚EDL的考虑,以及与通道水力半径相当的特性EDL厚度的可能性,可能会在很大程度上改变热传输特性。在薄的EDL限制下获得。所强调的是,所产生的传热特性的独特特征主要源于在这种物理条件下粘性耗散的非平凡效应,以及其与焦耳热效应的内在差异。除了体积生热源之外,还通过详细的参数研究讨论了流体致动机制的相对强度和热Peclet数对热入口长度,液体温度曲线和局部Nusselt数的影响。在此,将热完全展开状态作为展开流动状态的限制条件进行分析。

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