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Effect of droplet characteristics on heat transfer of mist/air cooling in a pin-finned channel

机译:液滴特性对销翅沟道中雾/空气冷却热传递的影响

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摘要

Effects of droplet characteristics of mist/air cooling on heat transfer for three pin-fin structures are investigated. The round-tip pin-fin structure is newly proposed with partial detachment from one endwall with a round-shaped tip structure. A flat-tip pin-fin with partial detachment and a traditional pin-fin with full attachment serve as references. Reynolds-averaged Navier-Stokes equations and the shear-stress-transport turbulence model are applied. Influences of initial mist temperature, initial mist diameter and initial mist velocity are analyzed in the Reynolds number range 15,000 to 50,000. The round-tip pin-finned channel has highest heat transfer coefficient and lowest pressure loss among the structures. Heat transfer enhancement increases first gradually and then decreases sharply with increasing initial mist diameter but an optimal diameter exists for the highest Nusselt numbers. Nusselt number decreases monotonically with increasing initial mist temperature. Droplet movement and heat transfer are nearly independent of initial mist velocity.
机译:研究了薄雾/空气冷却对三根翅片结构热传递的液滴特性的影响。新建圆形尖翅结构,以圆形尖端结构的一个端壁部分拆卸。具有部分拆卸的平尖钉翅片和具有完整附件的传统销钉用作参考。雷诺平均普通的Navier-Stokes方程和剪切应力运输湍流模型。初始雾温度,初始薄雾直径和初始雾速度的影响在雷诺数范围15,000至50,000中分析。圆尖针尖沟道具有最高的传热系数和结构之间的最低压力损失。传热增强首先逐渐增加,然后随着初始薄雾直径的增加而急剧下降,但最佳的纽带数存在最佳直径。随着初始雾化温度的增加,纽带数单调单调。液滴运动和传热几乎与初始雾速几乎无关。

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