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Numerical simulation on flow and heat transfer of fin-and-tube heat exchanger with longitudinal vortex generators

机译:带有纵向涡流发生器的翅片管换热器流动和传热的数值模拟

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摘要

Fin-and-tube heat exchangers with plain fins are widely used in direct air-cooled condenser system in the power plant, because of its relatively simple property compared to some other fins with variable cross-sectional area channel. In the present study, heat transfer performance and pressure drop for fin-and-tube heat exchanger with longitudinal vortex generators (LVGs) on the fin surface were numerically investigated. Rectangular and delta winglet pairs were punched/mounted on the fin surfaces to enhance the heat transfer of the air-side of the fin-and-tube heat exchangers. The results showed that the Nusselt numbers increased up to 20% for LVGs on plain fins comparing with plain fins channel without LVGs. The heat transfer enhancement by rectangular winglets was more significant than that of the delta winglets. The rectangular winglet with angle of attack of 25'showed the best overall performance than any other angles of attack in rectangular winglets configurations. Additionally, the delta winglet with angle of attack of 45 showed the best overall performance than the other angles of attack in delta winglets configurations. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:带平翅片的翅片管式换热器由于与其他具有可变横截面积通道的翅片相比具有相对简单的性能而被广泛用于发电厂的直接风冷冷凝器系统中。在本研究中,对翅片表面带有纵向涡流发生器(LVG)的翅片管式换热器的传热性能和压降进行了数值研究。将矩形和三角形小翼对冲压/安装在翅片表面上,以增强翅片管式热交换器空气侧的热传递。结果表明,与没有LVG的普通鳍通道相比,普通鳍上的LVG的Nusselt数量增加了20%。矩形小翼的传热增强比三角翼小翼的传热更显着。攻角为25'的矩形小翼比矩形小翼配置中的任何其他攻角显示出最佳的整体性能。此外,攻角为45度的三角翼小翼比三角翼小翼构型的其他攻角表现出最佳的整体性能。 (C)2015 Elsevier Masson SAS。版权所有。

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