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Impact study of operating temperatures and cell layout under different concentration factors in a CPC-PV solar collector in combination with a vertical glass receiver composed by bifacial cells

机译:CPC-PV太阳能集热器与双面电池组成的垂直玻璃接收器结合使用时,在不同浓度因子下工作温度和电池布局的影响研究

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Solar Collectors with Compound Parabolic Concentrator (CPC) reflectors redirect solar irradiance into the receiver (placed in optimal position). The concept of such devices is to reduce the installation area and energy costs. This research focuses on the behaviour and efficiency of a stationary CPC-PV solar collector. Each trough of this collector has different concentration factors (1.25 and 1.66) with vertically placed bi- facial cell receivers. An analysis of the electrical efficiency is performed in order to evaluate the viability of a CPC geometry with a vertical bifacial PV receiver. Furthermore, an investigation on bifacial cells performance due to concentration (and consequently increased cell temperature) is carried out. A numerical simulation of the yearly available radiation and the Incident Angle Modifiers (IAM) for each geometry is also conducted. Finally, a comparison between the simulations and the outdoor testing on the prototype collector is detailed. The tests took place in Gaevle. Sweden (61° Latitude). The results showed that higher concentration factors led to larger operating temperatures (114°C for a concentration factor of 1.66 and 96°C for a concentration factor of 1.25). Although this may compromise the cell performance and shorten the device's life cycle, it is shown that appropriate ventilation will allow manageable operating temperatures.
机译:具有复合抛物面聚光器(CPC)反射器的太阳能收集器将太阳辐射重定向到接收器中(放置在最佳位置)。这种设备的概念是为了减少安装面积和能源成本。这项研究的重点是固定式CPC-PV太阳能集热器的性能和效率。该收集器的每个槽在垂直放置的双面电池接收器中都具有不同的集中系数(1.25和1.66)。为了评估带有垂直双面PV接收器的CPC几何形状的可行性,需要进行电效率分析。此外,对由于浓度(以及因此导致的细胞温度升高)引起的双面细胞性能的研究。还对每种几何结构的年度可用辐射和入射角修正器(IAM)进行了数值模拟。最后,详细介绍了在原型收集器上进行的模拟与室外测试之间的比较。测试在盖夫勒进行。瑞典(纬度61度)。结果表明,较高的浓缩系数会导致较大的工作温度(对于1.66的浓缩系数,为114°C;对于1.25的浓缩系数,为96°C)。尽管这可能会损害电池性能并缩短设备的使用寿命,但事实证明,适当的通风将允许可控的工作温度。

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