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Hydrodynamics and heat transfer characteristics of a novel heat exchanger with delta-winglet vortex generators

机译:带有三角翼小涡旋发生器的新型热交换器的流体动力学和传热特性

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摘要

The effects of vortex generators on heat transfer and pressure drop of a novel heat exchanger are investigated using computational fluid dynamics (CFD) method. The Reynolds numbers based on fin collar outside diameter varied from 600 to 2600, the attack angle from 10 degrees to 50 degrees, and the aspect ratio from 1 to 4. The numerical results are also analyzed from the view point of field synergy principle, according to which the reduction of the intersection between velocity and temperature gradient is the basic mechanism for augmentation of heat transfer. The results indicate that the enhanced configurations produce the longitudinal vortices and accelerate the flow, which result in significant augmentations of heat transfer with modest pressure drop penalties. It was found that the delta-winglet vortex generator with an attack angle of 20 degrees and an aspect ratio of 2 provides the best integrated performance over the range of Reynolds number computed. The Colburn j-factor of the optimal configuration is shown to increase by 35.1-45.2% with a corresponding increase of 19.3-34.5% in the friction factor.
机译:利用计算流体力学(CFD)方法研究了涡流发生器对新型换热器传热和压降的影响。基于鳍环外径的雷诺数在600到2600之间变化,迎角从10度到50度变化,纵横比从1到4。还从场协同原理的角度分析了数值结果,根据降低速度和温度梯度之间的交点是增加传热的基本机制。结果表明,增强的构型会产生纵向涡流并加速流动,从而在不增加压降的情况下显着增强传热。研究发现,在计算出的雷诺数范围内,攻角为20度且纵横比为2的三角翼小涡流发生器具有最佳的综合性能。最佳配置的Colburn j系数显示增加了35.1-45.2%,而摩擦系数相应地增加了19.3-34.5%。

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