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Effects of tube diameter and tubeside fin geometry on the heat transfer performance of air-cooled condensers

机译:管直径和管翅片几何对空气冷却冷凝器传热性能的影响

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摘要

A theoretical study has been made on the effects of tube diameter and tubeside fin geometry on the heat transfer performance of air-cooled condensers. Extensive numerical calculations of overall heat transfer from refrigerant R410A flowing inside a horizontal microfin tube to ambient air were conducted for a typical operating condition of the air-cooled condenser. The tubeside heat transfer coefficient was calculated by applying a modified stratified flow model developed by Wang et al. The numerical results show that the effects of tube diameter, fin height, fin number and helix angle of groove are significant, whereas those of the width of flat portion at the fin tip, the radius of round corner at the fin tip and the fin half tip angle are small.
机译:管直径和管蛋白翅片几何形状对气冷冷凝器的传热性能的影响,是一种理论研究。 对从水平微素管内流入到环境空气的制冷剂R410a的整体传热的大规模计算用于空气冷却冷凝器的典型操作状态。 通过施加由Wang等人开发的改进的分层流动模型来计算管酰胺传热系数。 数值结果表明,管直径,翅片高度,翅片数和螺旋角的沟槽的效果显着,而翅片尖端的平坦部分的宽度的宽度,翅片尖端的圆角和翅片半径 尖角很小。

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