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首页> 外文期刊>International Journal of Heat and Mass Transfer >Analysis of heat and resistance performance of plate fin-and-tube heat exchanger with rectangle-winglet vortex generator
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Analysis of heat and resistance performance of plate fin-and-tube heat exchanger with rectangle-winglet vortex generator

机译:矩形小翼涡旋发生器板翅片管式换热器的热阻性能分析

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This paper was aimed to investigate the effect of rectangle-winglet vortex generator on the heat transfer performance and flow resistance characteristics. As known, in the fin-and-tube heat exchanger, the weak region behind the tubes was harmful to the overall performance. In this study, rectangle-winglet was set nearby the weak region. The results showed that the weak region was improved and rectangle-winglet vortex generator had increased the thermal performance and improved the resistance characteristics. The kappa-epsilon-enhance mathematics model was adopted to investigate the effect of rectangle-winglet vortex generator configurations on the thermal performance at different Re numbers. Resistance between the working fluid and the solid was considered in the numerical simulation. Experimental data from Wang's were adopted to validate the agreement of the simulation. Besides, the Arafat's simulation results were compared with the simulation results of present investigation. Based on the numerical results, a detailed description of heat transfer characteristics and resistance performance was presented and discussed. The discussed ranges of these geometry parameters were 3-5 mm (length), 30-60 degrees (angle), and 0.375-1.125 mm (height) and all the numerical data would be presented at Reynolds number in the range between 1300 and 2000. It can be concluded from the results that improvement of weak region was beneficial to improve the flow resistance characteristics and enhance the heat transfer performance. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文旨在研究矩形小翼涡旋发生器对传热性能和流阻特性的影响。众所周知,在翅片管式热交换器中,管子后面的薄弱区域对整体性能有害。在这项研究中,矩形小翼设置在薄弱区域附近。结果表明,改进了薄弱区域,矩形小翼涡发生器提高了热性能,改善了电阻特性。采用kappa-ε增强数学模型研究了矩形小翼涡流发生器构型对不同Re数下热性能的影响。在数值模拟中考虑了工作流体与固体之间的阻力。王的实验数据被用来验证模拟的一致性。此外,将阿拉法特的模拟结果与本研究的模拟结果进行了比较。基于数值结果,对传热特性和电阻性能进行了详细描述和讨论。这些几何参数的讨论范围为3-5 mm(长度),30-60度(角度)和0.375-1.125 mm(高度),所有数值数据将以雷诺数表示,范围为1300至2000。从结果可以得出结论,薄弱区域的改善有利于改善流阻特性并增强传热性能。 (C)2018 Elsevier Ltd.保留所有权利。

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