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A local thermal non-equilibrium integral analysis for forced convective thermal boundary development in a channel filled with a fluid-saturated porous medium

机译:局部热非平衡积分分析,用于在充满流体饱和多孔介质的通道中强迫对流热边界发展

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摘要

An integral solution procedure has been developed to describe the entire evolution of the thermal boundary layer in a channel filled with a fluid-saturated porous medium. The upper and lower walls are heated under a constant heat flux condition, and local thermal nonequilibrium is assumed to apply. The development of the thermal boundary layer in this channel is divided into three distinctive regions, namely, the entrance, transition and the nearly fully-developed regions, in which separate fluid and solid phase thermal boundary layers develop near heated walls with different growth rates. In this integral analysis, each region is considered in terms of the interactions between the fluid and solid thermal boundary layers; this eventually yields a set of algebraic equations for the easy and accurate estimation of the local Nusselt number. The solutions thus obtained for the three regions are combined to reveal the entire development of the local Nusselt number from the entrance to fully-developed stage. This analytic procedure, for the first time, reveals a complete region map showing the locations of the transition from one region to another, and these depend on the Biot number, the thermal conductivity ratio and the Graetz number in a complex manner. (C) 2019 Elsevier Ltd. All rights reserved.
机译:已经开发出一种整体解决方案,以描述充满流体饱和多孔介质的通道中热边界层的整体演变。上壁和下壁在恒定的热通量条件下加热,并假定局部热不平衡。该通道中的热边界层的发育被分为三个独特的区域,即入口,过渡区和几乎完全发育的区域,其中分开的流体和固相热边界层在加热壁附近以不同的增长率生长。在这种积分分析中,考虑了流体和固体热边界层之间的相互作用来考虑每个区域。这最终产生了一组代数方程,用于简单而准确地估计局部Nusselt数。这样对这三个地区获得的解决方案进行了合并,以揭示从入口到完全开发阶段本地Nusselt号的整个发展过程。该分析程序首次揭示了完整的区域图,该图显示了从一个区域到另一个区域的过渡位置,并且这些位置以复杂的方式取决于Biot数,热导率和Graetz数。 (C)2019 Elsevier Ltd.保留所有权利。

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