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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >An experimental study of facade-integrated photovoltaic/water-heating system
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An experimental study of facade-integrated photovoltaic/water-heating system

机译:幕墙集成式光伏/热水系统的实验研究

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摘要

The worldwide fast development of building-integrated solar technology has prompted the design alternatives of fixing the solar panels on the building facades. How to make full use of an integrative system to achieve the best energy performance can be an important area in the technology promotion. Hybrid solar system applying in buildings has the advantage of increasing the energy output per unit installed collector area. This paper describes an experimental study of a centralized photovoltaic and hot water collector wall system that can serve as a water pre-heating system. Collectors are mounted at vertical facades. Different operating modes were performed with measurements in different seasons. Natural water circulation was found more preferable than forced circulation in this hybrid solar collector system. The thermal efficiency was found 38.9% at zero reduced temperature, and the corresponding electricity conversion efficiency was 8.56%, during the late summer of Hong Kong. With the PVT wall, the space thermal loads can be much reduced both in summer and winter, leading to substantial energy savings. Suggestions were given on how to further improve the system performance. (C) 2006 Elsevier Ltd. All rights reserved.
机译:全球范围内集成太阳能技术的快速发展促使人们选择了将太阳能电池板固定在建筑物外墙上的设计方案。如何充分利用集成系统来实现最佳能源性能,可能是技术推广中的重要领域。在建筑物中应用的混合太阳能系统具有增加单位安装的收集器面积的能量输出的优点。本文描述了可以用作水预热系统的集中式光伏和热水收集器壁系统的实验研究。集热器安装在垂直立面上。在不同季节进行了不同的操作模式测量。在这种混合太阳能收集器系统中,发现自然水循环比强制循环更可取。在香港夏季末,在零降低温度下的热效率为38.9%,相应的电转换效率为8.56%。使用PVT墙,夏季和冬季均可大大降低空间热负荷,从而节省大量能源。提出了有关如何进一步提高系统性能的建议。 (C)2006 Elsevier Ltd.保留所有权利。

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