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Numerical estimation of pressure drop and heat transfer characteristics in annular-finned channel heat exchangers with different channel configurations

机译:不同通道配置的环形沟道热交换器中压降和传热特性的数值估计

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摘要

In this numerical investigation, three-dimensional analysis has been used to study the effect of finned channels configuration of (circular, square, and triangular shape) and fin spacing with four rows in staggered arrangements. The finite volume method with k-ω turbulent model is applied to estimate the heat transfer and flow characteristics. The results illustrate that the development of the boundary layer between the fins surfaces is credited to the finned channels configuration, fin spacing, and Reynolds number. Moreover, the results of pressure drop and heat transfer with various channel configuration and different fin spacings (1.6, 2, and 4 mm) are presented and validated with the available correlations. The triangular-finned channel with 1.6 mm fin spacing offered higher heat transfer enhancement followed by square- and circular-finned channels. A considerable agreement was observed when the current findings and the existing correlations were compared, with a maximum deviation of 15% for all the cases.
机译:在该数值研究中,三维分析已经用于研究(圆形,方形和三角形)的翅片通道配置的效果,并在交错布置中与四行排行的翅片间距。采用K-ω湍流模型的有限体积法应用于估计传热和流动特性。结果说明了翅片表面之间的边界层的开发被记入翅片通道配置,翅片间距和雷诺数。此外,用可用的相关性提出并验证了具有各种通道配置和不同鳍间距(1.6,2和4mm)的压降和热传递的结果。具有1.6毫米的三角形频道,翅片间距具有更高的传热增强,然后是方形和圆形翅片通道。在比较目前的调查结果和现有相关性时,观察到相当大的协议,所有病例的最大差为15%。

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