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Numerical optimization of location of 'common flow up' delta winglets for inline aligned finned tube heat exchanger

机译:直列式翅片管换热器“共同上流”三角翼小翼位置的数值优化

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摘要

Heat transfer augmentation of a fin and tube heat exchanger by the winglet type vortex generator strongly depends on the location of the winglet w.r.t tube centre. This study was aimed at optimizing the location of the 'common flow up' delta winglets for the maximum thermal compactness of a given inline aligned fin and tube heat exchanger. The winglets were erected with a conservative attack angle to avoid severe increase in the pressure drop. This work also attempts to first time model the contact resistance between the fins and the tube as a hypothetical conduction resistance. Beginning with the selection of all promising locations of the winglets, an optimal location was identified that allows maximum augmentation of the thermal performance on the fin side. This numerical study clearly shows that the optimally located 'common flow up' delta winglets have improved the average thermal performance of both the fins and the tubes at the same Reynolds number. (C) 2015 Elsevier Ltd. All rights reserved.
机译:小翼型涡旋发生器对翅片管式换热器的传热增加很大程度上取决于小翼与管中心的位置。这项研究旨在优化“常见向上流动”三角翼小翼的位置,以使给定的直列式翅片管换热器具有最大的热紧凑性。小翼以保守的迎角直立,以避免压降严重增加。这项工作还试图第一次将鳍片和管之间的接触电阻建模为假设的传导电阻。从选择小翼的所有有希望的位置开始,确定了一个最佳位置,该位置可以最大程度地增强散热片一侧的热性能。这项数值研究清楚地表明,处于最佳位置的“共同向上流动”的三角翼小翼改善了相同雷诺数下的鳍片和管子的平均热性能。 (C)2015 Elsevier Ltd.保留所有权利。

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