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Analysis of heat transfer and pressure drop for fin-and-tube heat exchangers with rectangular winglet-type vortex generators

机译:矩形小翼型涡流发生器翅片管式换热器的传热与压降分析

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摘要

In present work, heat transfer enhancement and pressure loss penalty for fin-and-tube heat exchangers with rectangular winglet pairs (RWPs) were numerically investigated in a relatively low Reynolds number flow. The purpose of this study was to explore the fundamental mechanism between the local flow structure and the heat transfer augmentation. The RWPs were placed with a special orientation for the purpose of enhancement of heat transfer. The numerical study involved three-dimensional flow and conjugate heat transfer in the computational domain, which was set up to model the entire flow channel in the air flow direction. The effects of attack angle of RWPs, row-number of RWPs and placement of RWPs on the heat transfer characteristics and flow structure were examined in detail. It was observed that the longitudinal vortices caused by RWPs and the impingement of RWPs- directed flow on the downstream tube were important reasons of heat transfer enhancement for fin-and-tube heat exchangers with RWPs. It was interesting to find that the pressureloss penalty of the fin-and-tube heat exchangers with RWPs can be reduced by altering the placement of the same number of RWPs from inline array to staggered array without reducing the heat transfer enhancement. The results showed that the rectangular winglet pairs (RWPs) can significantly improve the heat transfer performance of the fin-and-tube heat exchangers with a moderate pressure loss penalty.
机译:在目前的工作中,在相对较低的雷诺数流下,对具有矩形小翼对(RWP)的翅片管热交换器的传热增强和压力损失损失进行了数值研究。这项研究的目的是探索局部流动结构与传热增加之间的基本机理。 RWP以特殊的方向放置,以增强热传递。数值研究在计算域中涉及三维流动和共轭传热,这是为了对整个流动通道在空气流动方向上的建模而建立的。详细研究了RWP的攻角,RWP的行数和RWP的放置对传热特性和流动结构的影响。观察到,由RWP引起的纵向涡流和RWP定向流在下游管上的撞击是增强带有RWP的翅片管式换热器传热的重要原因。有趣的是,可以通过将相同数量的RWP的位置从串联阵列更改为交错阵列来减少具有RWP的翅片管热交换器的压力损失损失,而不会降低传热效果。结果表明,矩形小翼对(RWPs)可以显着改善翅片管式换热器的传热性能,并具有适度的压力损失损失。

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