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Heat transfer and pressure drop characteristics of fin-tube heat exchangers with different types of vortex generator configurations

机译:不同类型涡流发生器结构的翅片管换热器的传热和压降特性

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摘要

A fin-and-tube heat exchanger with three different types of vortex generators is investigated in this study in order to observe the effects of these vortex generators on heat transfer and pressure drop characteristics. The individual as well as the cumulative influences of the vortex generators on the performance of a heat exchanger are examined. The numerical analyses are performed using a computational fluid dynamics (CFD) program named "Fluent". Firstly, each vortex generator type is placed at four different locations on the fin to determine its best location in terms of heat transfer and pressure drop values. After the determination of the best location on the fin for a vortex generator of each type, two different models with all three types of vortex generators are created and analyzed numerically. The investigation of the cumulative effect of three different vortex generators is the novelty of the study. The results of the study show that the use of three different vortex generators together increases heat transfer rate with a moderate increase in pressure drop value. The comparison of the present study results with an experimental and numerical study showed also a good agreement. © 2010 by Begell House, Inc.
机译:为了研究这些涡流发生器对传热和压降特性的影响,对带有三种不同类型涡流发生器的翅片管式换热器进行了研究。研究了涡流发生器对热交换器性能的个体影响以及累积影响。使用名为“ Fluent”的计算流体动力学(CFD)程序执行数值分析。首先,将每种涡流发生器类型放置在散热片上的四个不同位置,以根据传热和压降值确定其最佳位置。在确定每种类型的涡流发生器在鳍片上的最佳位置之后,将创建具有所有三种类型的涡流发生器的两个不同模型,并进行数值分析。研究三种不同涡旋发生器的累积效应是这项研究的新颖之处。研究结果表明,使用三种不同的涡流发生器可共同提高传热速率,并适度增加压降值。本研究结果与实验和数值研究的比较也显示出良好的一致性。 ©2010 Begell House,Inc.

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