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Combined effects of corrugated walls and porous inserts on performance improvement in a heat exchanger channel

机译:波纹壁和多孔插入件对热交换器通道性能改进的综合作用

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摘要

In this paper, a numerical study is performed to investigate the combined effects of corrugated walls and porous inserts on heat transfer enhancement and thermal-hydraulic performance in a channel. Accordingly, a sinusoidal wavy wall channel partially filled with a porous material placed at its core is considered. The Darcy-Brinkman-Forchheimehr model is considered to study the flow in porous region and finite volume method (FVM) with SIMPLE algorithm are applied to solve the governing equations. It was found that the amplitude of the wavy wall has a considerable effect on average Nusselt number especially at small Darcy numbers. For example, at Re = 300, delta = 0.3, alpha = 0.2 and Da = 10(-2) the average Nusselt number of wavy channel increases about 12% in comparison with the straight one, while it improves about 38% at Da = 10(-4). Moreover, there is an optimuin value of Darcy number corresponding to maximum performance evaluation criteria (PEC). At delta = 0.3 and Re = 300, for straight channel and wavy channel with alpha = 0.1 the optimum value of Darcy number occurs at Da = 10(-3), while for alpha = 0.2 and 0.3 the Da = 10(-4) leads to the maximum PEC.
机译:在本文中,进行了一种数值研究,以研究瓦楞壁和多孔插入件对沟道中的热传递增强和热液压性能的组合作用。因此,考虑了部分填充有放置在其芯处的多孔材料的正弦波壁通道。 Darcy-Brinkman-Forchheimehr模型被认为是研究多孔区域的流动和具有简单算法的有限体积法(FVM)来解决控制方程。结果发现,波浪墙的幅度对平均水平的数量具有相当大的影响,特别是在达西数。例如,在Re = 300中,Δ= 0.3,α= 0.2和Da = 10(-2)波浪通道的平均孤立数量与直线相比增加约12%,而它在DA =下提高了约38%。 10(-4)。此外,对应于最大绩效评估标准(PEC)的达西数的Optimuin值。在Delta = 0.3和Re = 300处,对于具有α的直线和波浪通道= 0.1,DA = 10(-3)发生达西数的最佳值,而对于α= 0.2和0.3,DA = 10(-4)导致最大PEC。

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