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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Performance evaluation of a novel flat-plate solar air collector with micro-heat pipe arrays (MHPA)
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Performance evaluation of a novel flat-plate solar air collector with micro-heat pipe arrays (MHPA)

机译:小型平板太阳能空气收集器与微热管阵列的性能评价(MHPA)

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摘要

This paper proposes a new type of a flat-plate solar air collector (SAC) with micro-heat pipe arrays (MHPA), which consist of a heat collection and transfer section and an air ventilation and heat exchange section. In the unique structure, the heat exchange of air is separated from heat collection and transmission. This work experimentally and theoretically investigates the heat transfer and friction factor characteristics of the proposed MHPA-flat plate solar air collector. Numerical simulation and experimental results are compared to show the instantaneous performance of the collector under quasi-steady state conditions. Efficiency, time constant, inlet temperature, outlet temperature, absorber temperature, and glass cover temperature are obtained. The effects of weather condition, and operational parameters are evaluated on the basis of thermal efficiency, outlet temperature, heat loss, and heat transfer. Results reveal that the average efficiency is approximately 69% at a flow rate of 290 m(3)/h. In the testing range of the air flow rate, the frictional coefficient varies from 0.05 to 0.18. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新型的平板太阳能空气收集器(SAC),带有微热管阵列(MHPA),其包括热收集和转移部分和空气通风和热交换部分。在独特的结构中,空气的热交换与热收集和变速器分离。这项工作实验和理论上研究了所提出的MHPA平板太阳能空气收集器的传热和摩擦系数特性。比较数值模拟和实验结果,以显示在准稳态条件下收集器的瞬时性能。获得效率,时间常数,入口温度,出口温度,吸收体温度和玻璃覆盖温度。基于热效率,出口温度,热损失和传热评估天气状况和操作参数的影响。结果表明,平均效率约为69%,流速为290米(3)/ h。在空气流速的测试范围内,摩擦系数从0.05变化到0.18。 (c)2017 Elsevier Ltd.保留所有权利。

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