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Evaluation of Symmetric C-PVT Solar Collector Designs with Vertical Bifacial Receivers

机译:带有垂直双面接收器的对称C-PVT太阳能集热器设计评估

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Photovoltaic thermal (PVT) solar collectors can be an effective solution for system output improvement. Photovoltaic thermal collectors naturally have a more expensive receiver than simpler photovoltaic or thermal only collectors, therefore making concentration a more appealing solution to achieve cost reduction. However, concentrating systems need careful analysis on the design phase in order to optimize the annual output. In addition, for stationary (non-tracking) collectors, it is critical to determine the incidence angle modifier (IAM). For this reason, a reflector study was carried out to determine suitable reflector designs for a stationary concentrating PVT collector. The reflectors were simulated using a Monte Carlo raytracing software called Tonatiuh. The two selected reflectors designs were named "pure parabola" (PP) and "compound parabolic concentrator" (CPC). The concentration ratio of 1.2 and 1.6 were selected for each reflector designs, which means a total of 4 collector troughs. The next step involved the construction of the two selected C-PVT collector designs, which were built and subsequently tested by the authors. The IAM was assessed and discussed by simulation and outdoor testing in detail.The IAM results show similar decreases in longitudinal IAM for both the PP and the CPC CPVT collector for the 1.2 concentration factor. For the transversal IAM with 1.2 of concentration factor, the CPC over performs. For the 1.6 concentration prototype collectors, the results are fairly similar. Lastly, the annual output was also simulated and presented.
机译:光伏热(PVT)太阳能集热器可以成为提高系统输出的有效解决方案。光伏集热器自然比简单的光伏或仅集热器具有更昂贵的接收器,因此使集中成为实现成本降低的更具吸引力的解决方案。但是,集中系统需要在设计阶段进行仔细分析,以优化年产量。另外,对于固定(非跟踪)收集器,确定入射角修改器(IAM)至关重要。因此,进行了反射器研究,以确定用于固定式集中式PVT收集器的反射器设计。使用称为Tonatiuh的蒙特卡罗射线追踪软件对反射器进行了仿真。选择的两个反射器设计分别命名为“纯抛物线”(PP)和“复合抛物线聚光器”(CPC)。对于每种反射器设计,选择的聚光比为1.2和1.6,这意味着总共有4个收集槽。下一步涉及构建两个选定的C-PVT收集器设计,这些构建器由作者构建并随后进行了测试。通过模拟和室外测试对IAM进行了详细评估和讨论.IAM结果显示,PP和CPC CPVT收集器的1.2浓度因子在纵向IAM上都有相似的降低。对于浓度因子为1.2的横向IAM,CPC会执行。对于1.6浓度的原型收集器,结果相当相似。最后,还模拟了年产量。

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