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Thermal performance of a new CPC solar air collector with flat micro-heat pipe arrays

机译:具有扁平微热管阵列的新型CPC太阳能集热器的热性能

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A new type of compound parabolic concentrator (CPC) solar air collector (SAC) with flat micro-heat pipe arrays (FMHPA) was investigated in this study. A cylindrical absorber was constructed by inserting the FMHPA into an evacuated glass tube to transport heat during the working process. The new FMHPA-CPC SAC is an edge ray collector with a concentration ratio of 1.8. The core concept is the integration of the FMHPA, an absorber tube, and a CPC reflector as a heat-collecting unit. Thermal performance investigation was conducted theoretically and experimentally. This study mainly analyzed the effect of different factors on the thermal performance of the collector. The efficiencies and heat loss coefficients of the new collector were determined. Experimental curves with different testing conditions are presented. The optimal value of efficiency was determined for the SAC. The aperture area of each CPC collecting unit is approximately 0.4 m(2). The new FMHPA-CPC SAC was tested in Beijing, China. The average efficiency was approximately 61% at a volume flow rate of 320 m(3)/h, with a radiation of 799 W/m(2) (ambient temperature of 28.8 C). The instantaneous efficiency reached 68%, depending on the solar radiation, air volume flow rate, and ambient temperature. In addition, the time constant of the collector was approximately 14.8 min, with an air volume flow rate of 260 m(3)/h. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究研究了一种新型的带有平面微热管阵列(FMHPA)的复合抛物面聚光器(CPC)太阳能空气收集器(SAC)。通过将FMHPA插入抽真空的玻璃管中来构造圆柱形吸收器,以在工作过程中传递热量。新型FMHPA-CPC SAC是浓度为1.8的边缘射线收集器。核心概念是FMHPA,吸收器管和CPC反射器作为集热单元的集成。在理论和实验上进行了热性能研究。本研究主要分析了不同因素对集热器热性能的影响。确定了新收集器的效率和热损失系数。给出了具有不同测试条件的实验曲线。确定了SAC的最佳效率值。每个CPC收集单元的孔径面积约为0.4 m(2)。新型FMHPA-CPC SAC已在中国北京进行了测试。在体积流量为320 m(3)/ h时的平均效率约为61%,辐射为799 W / m(2)(环境温度为28.8 C)。瞬时效率达到68%,具体取决于太阳辐射,空气体积流量和环境温度。此外,收集器的时间常数约为14.8分钟,风量流速为260 m(3)/ h。 (C)2016 Elsevier Ltd.保留所有权利。

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