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Effects of a three-lobe swirl generator on the thermal and flow fields in a heat exchanging tube: An experimental and numerical approach

机译:三瓣旋流发生器对换热管内热流场的影响:实验和数值方法

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The current experimental study primarily focuses on the effects of an injected swirling flow on the thermal performance of the test tube. The swirl generator is a helically twisted tube with a three-lobe cross section. To evaluate the thermal performance of the test tube equipped with the swirl generator, the Nusselt number and the friction factor are considered as the target outcomes. The study is carried out for different values of twist-angle (90 <= theta <= 360) and length (1 <= l <= 4) as the main geometrical parameters of the swirl generator, and the Reynolds number varies from 5000 to 30000. The experimental study is accompanied by a comprehensive Large Eddy Simulation (LES). The generated swirling flow and its dissipation rate along the test tube are numerically investigated in details. The numerical results clarify the potential of the swirl generator to enhance the convection rate. The Smagorinsky approach is used to model the effects of the sub-grid scales on the flow field. The simulation is performed using an open source CFD code named OpenFOAM. The results show that the swirl generator leads to a significant enhancement in Nusselt number accompanied by an acceptable increase in the friction factor. (C) 2017 Elsevier Ltd. All rights reserved.
机译:当前的实验研究主要集中在注入旋流对试管热性能的影响上。涡流发生器是具有三瓣横截面的螺旋扭曲管。为了评估装有涡流发生器的试管的热性能,将努塞尔数和摩擦系数视为目标结果。对于旋流发生器的主要几何参数,对不同的扭曲角值(90 <= theta <= 360)和长度(1 <= l <= 4)进行了研究,雷诺数在5000至30000。实验研究伴随着全面的大涡模拟(LES)。沿试管产生的旋流及其消散率进行了详细的数值研究。数值结果阐明了涡旋发生器提高对流速率的潜力。 Smagorinsky方法用于模拟子网格比例对流场的影响。使用名为OpenFOAM的开源CFD代码执行模拟。结果表明,涡旋发生器导致Nusselt数显着提高,同时摩擦系数得到可接受的提高。 (C)2017 Elsevier Ltd.保留所有权利。

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