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Numerical analysis of a vertical double-pipe single-flow heat exchanger applied in an active cooling system for high-power LED street lights

机译:立式双管单流换热器应用于大功率LED路灯主动冷却系统的数值分析

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The present study examines the use of a vertical double-pipe single-flow heat exchanger as part of an active air cooling system for a 150 W LED street light. The air is circulated inside the lamppost by an internal fan to form a closed-loop system. The heat is dissipated to the surrounding air by natural convection, reaching Rayleigh numbers up to Ra = 6.5 x 10(10). Experiments with a 5 m high prototype were conducted, and the data were used to validate the numerical model. The experimental results show that the LED excess temperature can be lowered to about 42 degrees C. A two-dimensional axisymmetric numerical simulation was performed to study the influence of various parameters, including pipe length, material conductivity, flow direction, pipe diameter ratio, and mass flow rate, on the heat transfer rate. The findings show that the additional heat loss created by extending the lamppost largely depends on the flow rate. When extending the lamppost from 3 to 5 m at a high mass flow rate of 0.014 kg/s, the heat loss increases by 34.1% to 120.2 W. The numerical study was also used to visualize the hydrodynamic boundary layers on the surface of the lamppost and the temperature contours in and outside of the heat exchanger. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本研究探讨了使用垂直双管单流热交换器作为150 W LED路灯主动空气冷却系统的一部分。空气通过内部风扇在灯柱内部循环,形成一个闭环系统。热量通过自然对流散发到周围的空气中,达到瑞利数,最高Ra = 6.5 x 10(10)。进行了一个5 m高的原型实验,并使用数据验证了数值模型。实验结果表明,LED的过高温度可以降低到约42摄氏度。进行了二维轴对称数值模拟,研究了各种参数的影响,包括管道长度,材料电导率,流向,管道直径比和质量流量,关于传热率。研究结果表明,延长灯柱所产生的额外热量损失在很大程度上取决于流速。当以0.014 kg / s的高质量流量将灯柱从3 m延伸到5 m时,热损失增加34.1%至120.2W。数值研究还用于可视化灯柱表面上的流体动力边界层。以及热交换器内部和外部的温度等高线。 (C)2017 Elsevier Ltd.保留所有权利。

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