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Analysis and Monitoring Results of a Building Integrated Photovoltaic Façade Using PV Ceramic Tiles in Taiwan

机译:台湾光伏建筑幕墙建筑光伏立面的分析与监测结果

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Single-crystal silicon-based solar cells laminated with tempered-glass and ceramic tiles for use in a building’s façade have been developed. The optical, thermal, and electrical properties of the proposed PV module are first evaluated, and then a wind-resistance test is carried out to evaluate the feasibility of installing it in Taiwan. The electrical and deflection characteristics of the proposed PV module did not change significantly after a 50 thermal cycling test and a 200-hour humidity-freeze test, based on IEC 61215 and a wind-resistance test. Finally, the electrical power generation ability of the proposed BIPV system with 1 kWp electrical power capacity was examined. Building information modeling software tools were used to simulate the BIPV system and carry out the energy analysis. The simulation results show a very consistent trend with regard to the actual monthly electricity production of the BIPV system designed in this work. The BIPV system was able to produce an accumulative electrical power of 185 kWh during the 6-month experimental period. In addition, the exterior temperature of the demonstration house was about 10°C lower than the surface of the BIPV system, which could reduce indoor temperature.
机译:已经开发出用于建筑立面的单晶硅基太阳能电池,层压有钢化玻璃和瓷砖。首先评估所提出的光伏组件的光学,热和电性能,然后进行抗风性测试,以评估在台湾安装该组件的可行性。根据IEC 61215和抗风性测试,在经过50次热循环测试和200小时的湿度冻结测试之后,所提出的PV模块的电学和挠度特性没有明显变化。最后,研究了所建议的BIPV系统具有1 kWp电力容量的发电能力。建筑信息建模软件工具用于模拟BIPV系统并进行能耗分析。仿真结果表明,在这项工作中设计的BIPV系统的实际每月发电量具有非常一致的趋势。在六个月的实验期间,BIPV系统能够产生185 kWh的累积电力。此外,示范房屋的外部温度比BIPV系统的表面低约10°C,这可以降低室内温度。

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