Performance Evaluation of Novel Concentrating Photovoltaic Thermal Solar Collector under Quasi-Dynamic Conditions

Pub Date : 2023-04-11 DOI:10.3390/solar3020013
S. Hosouli, J. Gomes, Muhammad Talha Jahangir, George Pius
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引用次数: 2

Abstract

Concentrating Photovoltaic Thermal (CPVT) collectors are suitable for integration in limited roof space due to their higher solar conversion efficiency. Solar sunlight can be used more effectively by CPVT collectors in comparison to individual solar thermal collectors or PV modules. In this study, the experimental investigation of a novel CPVT collector called a PC (power collector) has been carried out in real outdoor conditions, and the test set-up has been designed based on ISO 9806:2013. A quasi-dynamic testing method has been used because of the advantages that this method can offer for collectors with a unique construction, such as the proposed collector, over the steady-state testing method. With a quasi-dynamic testing method, it is possible to characterize the collector within a wide range of incidence angles and a complex incidence angle modifier profile. The proposed novel collector has a gross area of 2.57 m2. A maximum power output per collector unit area of 1140 W is found at 0 °C reduced temperature (1000 W/m2 irradiance level), while at a higher reduced temperature (70 °C), it drops down to 510 W for the same irradiance level. The data have been fitted through a multiple linear regression method, and the obtained efficiency curve coefficients are 0.39, 0.192, 1.294, 0.023, 0.2, 0, −5929 and 0 for Kθd, b0, c1, c2, c3, c4, c5 and c6, respectively. The experimental characterization carried out on the collector proved that the output powers calculated by using the obtained parameters of the quasi-dynamic testing method are in good agreement with experimental points.
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准动态条件下新型聚光光伏太阳能集热器性能评价
聚光光伏热(CPVT)集热器由于其较高的太阳能转换效率,适合在有限的屋顶空间集成。与单独的太阳能集热器或光伏组件相比,CPVT集热器可以更有效地利用太阳能。在本研究中,对一种新型CPVT集热器PC(功率集热器)进行了实际室外条件下的实验研究,并根据ISO 9806:2013设计了测试装置。准动态测试方法已经被使用,因为这种方法可以为具有独特结构的集热器提供优势,例如所提议的集热器,而不是稳态测试方法。采用准动态测试方法,可以在大范围的入射角和复杂的入射角修正剖面内对集热器进行表征。拟议的新型收集器的总面积为2.57平方米。在0°C还原温度(1000 W/m2辐照度水平)下,每集热器单位面积的最大输出功率为1140 W,而在更高还原温度(70°C)下,相同辐照度水平下的最大输出功率降至510 W。采用多元线性回归方法对数据进行拟合,得到Kθd、b0、c1、c2、c3、c4、c5和c6的效率曲线系数分别为0.39、0.192、1.294、0.023、0.2、0、- 5929和0。对集电极进行的实验表征证明,利用准动态测试方法得到的参数计算的输出功率与实验点吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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