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Experimental study on the comprehensive performance of building curtain wall integrated compound parabolic concentrating photovoltaic

机译:建筑幕墙集成复合抛物线浓缩光伏的实验研究

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A novel concentrating photovoltaic curtain wall (CPV-CW) system integrated with building has been designed, tested and analyzed, and its application potential is determined and improvement suggestions are proposed. It can effectively improve the efficiency of photovoltaic (PV) module and provide a more uniform indoor lighting environment. The concentrator is constructed with truncated stationary asymmetric compound paraboloid. And cyclic olefin copolymer (COC) with high transmittance is selected as its structural material. A model building combined with CPV-CW system curtain wall has been designed and applied to the outdoor experiments. It was tested on its electricity generation efficiency, the internal lighting environment, and thermal insulation ability. According to the real time results, under the clear weather conditions, the transmittance of the CPV-CW system reaches 9.1%. The highest CPV-CW system generation efficiency, 26.5%, could be found in winter, followed by the autumn and summer separately. In addition, CPV-CW system can create a more uniform indoor light environment and meet the requirements of building insulation. Based on the analysis, the CPV-CW system has a broad application prospect for building integrated with concentrating photovoltaic.(c) 2021 Elsevier Ltd. All rights reserved.
机译:设计,测试和分析了一种与建筑物集成的新型集中光伏幕墙(CPV-CW)系统,并确定了其应用潜力,提出了改进建议。它可以有效提高光伏(PV)模块的效率,并提供更均匀的室内照明环境。浓缩器用截短的静止不对称复合抛物面构建。选择具有高透射率的环状烯烃共聚物(COC)作为其结构材料。设计并应用于户外实验的模型建筑物结合了CPV-CW系统幕墙。它在其发电效率,内部照明环境和隔热能力上进行了测试。根据实时结果,在晴朗的天气条件下,CPV-CW系统的透射率达到9.1%。最高的CPV-CW系统生成效率,26.5%,可以在冬季找到,其次分别在秋季和夏季。此外,CPV-CW系统可以创造更均匀的室内光环境,满足建筑物绝缘的要求。基于分析,CPV-CW系统具有广泛的建筑应用前景,集中光伏的建筑物。(c)2021 elestvier有限公司保留所有权利。

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