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Cell (module) temperature regulated performance of a building integrated photovoltaic system in tropical conditions

机译:在热带条件下建筑物集成光伏系统的电池(模块)温度调节性能

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The performance of a building integrated photovoltaic system (BIPV) has to be commendable, not only on the electrical front but also on the thermal comfort front, thereby fulfilling the true responsibility of an energy providing shelter. Given the low thermal mass of BIPV systems, unintended and undesired outcomes of harnessing solar energy - such as heat gain into the building, especially in tropical regions - have to be adequately addressed. Cell (module) temperature is one critical factor that affects both the electrical and the thermal performance of such installations. The current paper discusses the impact of cell (module) temperature on both the electrical efficiency and thermal comfort by investigating the holistic performance of one such system (5.25 kW_p) installed at the Centre for Sustainable Technologies in the Indian Institute of Science, Bangalore. Some recommendations (passive techniques) for improving the performance and making BIPV structures thermally comfortable have been listed out.
机译:建筑物集成光伏系统(BIPV)的性能不仅在电气方面而且在热舒适方面都必须得到称赞,从而真正履行了提供能量的庇护所的责任。鉴于BIPV系统的热质量低,必须充分解决利用太阳能的意外和不希望的结果-例如将热量吸收到建筑物中,尤其是在热带地区。电池(模块)温度是影响此类设备的电气和热性能的一个关键因素。本文通过调查安装在班加罗尔印度科学研究所可持续技术中心的一种系统(5.25 kW_p)的整体性能,来讨论电池(模块)温度对电效率和热舒适性的影响。列出了一些建议(无源技术),这些建议可改善性能并使BIPV结构热舒适。

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