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Flow maldistribution and thermal performance deterioration in a cross-flow air to air heat exchanger with plate-fin cores

机译:带板翅式芯的横流空气到空气热交换器的流量分布不均和热性能下降

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摘要

The inlet and outlet duct geometry in an air to air compact heat exchanger is always irregular. A skewed Z-type arrangement is popular between the impinging flow and the core. Such duct placements usually lead to a non-uniform flow distribution on core surface. In this research, the flow maldistribution and thermal performance deterioration in cross-flow air to air heat exchangers are investigated. The inlet duct, the core and the outlet duct are combined together to calculate the flow distribution on core inlet face. First, a CFD code is used to calculate the flow distribution, by treating the plate-fin core as a porous media. Then a heat transfer model between the two air flows in the plate-fin channels is set up. Using the flow distribution data predicted, the heat exchange effectiveness and the thermal performance deterioration factor are calculated with finite difference scheme. Experiments are performed to validate the flow distribution and heat transfer model. The results indicate that when the channel pitch is below 2.0 mm, the flow distribution is quite homogeneous and the thermal deterioration due to flow maldistribution can be neglected. However, when the channel pitch is larger than 2 mm, the maldistribution is quite large and a 10-20% thermal deterioration factor could be found. The study proves that the inlet duct, the outlet duct, and the core should be coupled together to clarify flow maldistribution problems.
机译:空对空热交换器中的入口和出口管道几何形状总是不规则的。在撞击流和芯子之间普遍存在偏斜的Z型布置。这样的管道布置通常导致芯表面上的流量分布不均匀。在这项研究中,研究了横流空气到空气热交换器中的流动分布不均和热性能下降。将入口导管,岩心和出口导管组合在一起,以计算岩心入口面上的流量分布。首先,通过将板翅式芯视为多孔介质,使用CFD代码计算流量分布。然后,建立了板翅通道中两种气流之间的传热模型。利用预测的流量分布数据,采用有限差分法计算出换热效率和热性能劣化系数。进行实验以验证流动分布和传热模型。结果表明,当通道间距小于2.0 mm时,流分布相当均匀,并且可以忽略由于流分布不均引起的热劣化。但是,当通道间距大于2 mm时,分布不均会很大,并且会发现10-20%的热劣化系数。研究证明,进口管道,出口管道和岩心应耦合在一起以阐明流量分配不均的问题。

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