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Numerical study on heat transfer enhancement of circular tube bank fin heat exchanger with interrupted annular groove fin

机译:环形槽翅片与圆形管束翅片换热器传热强化的数值研究

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摘要

A variation in fin surface geometry is an effective approach to improve streamline pattern when fluid flows through the channel form by circular tube bank fins. The structure of interrupted half annular groove (IHAG) fin is different from commonly used fin patterns. In this paper, a conjugate heat transfer numerical method is employed to investigate the average heat transfer and fluid flow characteristics of the staggered circular tube bank fin heat exchanger with IHAG fin. The reference fin is the plain fin with a corresponding configuration. The annular groove's radial and circumferential locations are the main parameters to investigate. The results reveal that (1) The interrupted annular groove has dual efficacy of fluid flow guiding and detached eddy inhibition to reduce the size of wake region; (2) At lower Reynolds numbers, the interrupted annular groove fin surface could not efficiently enhance heat transfer under identical pumping power criteria, and the excellent performance of the interrupted annular groove fin can be achieved at higher Reynolds numbers. There is an average 35% increase in the friction factor, while for Reynolds number ranged from 600 to 2500, the average Nusselt number is increased by 10%-40%, and the corresponding thermal performance factor ranges from 7% to 27%; (3) The studied annular groove's radial and circumferential locations have a fairly limited effect on the average heat transfer and fluid flow characteristics. (C) 2014 Elsevier Ltd. All rights reserved.
机译:翅片表面几何形状的变化是当流体通过圆形管束翅片流过通道形式时改善流线型态的有效方法。中断的半环形凹槽(IHAG)鳍片的结构与常用的鳍片图案不同。本文采用共轭传热数值方法研究了带有IHAG翅片的交错圆形管束翅片换热器的平均传热和流体流动特性。参考鳍是具有相应配置的普通鳍。环形凹槽的径向和圆周位置是要研究的主要参数。结果表明:(1)中断的环形槽具有导流和分离涡流抑制的双重功效,减小了尾流区的尺寸。 (2)在较低的雷诺数下,中断的环形槽翅片表面在相同的泵浦功率标准下不能有效地增强传热,并且在较高的雷诺数下可以实现出色的性能。摩擦系数平均增加35%,而对于雷诺数从600到2500,平均努塞尔数增加10%-40%,相应的热性能系数从7%到27%; (3)研究的环形槽的径向和圆周位置对平均传热和流体流动特性的影响相当有限。 (C)2014 Elsevier Ltd.保留所有权利。

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