暖通空调>期刊目次>2020年>第8期

太阳能CPC聚光建筑屋顶热电性能及建筑节能的理论研究

Theoretical study on thermoelectric performance and building energy efficiency of solar CPC concentrating building roofs

陈海飞 蔡宝瑞 何文成 刘珣 黄淼 郭强
常州大学

摘要:

提出了一种附带有雨水收集功能的与建筑耦合的CPC聚光光伏系统,该系统主要包括集水箱、CPC、光伏电池板和矩形铝管等。利用集水箱进行雨天补水,晴天放水;CPC、光伏电池板置于屋顶表面,进行高效发电的同时,避免阳光直射辐射造成室内冷负荷增大;光伏板背部的中空铝制基板内嵌于建筑屋顶,其内通有收集的雨水,有效带走光伏余热。分析了冷却水流速和温度、聚光倍数对CPC聚光水冷系统性能的影响,室外空气流速和辐照度对3种不同形式光伏电池性能的影响,以及该系统的经济性。该系统降低了阳光直射屋顶表面所带来的建筑得热,有效降低了室内冷负荷,同时收集了雨水,并获得高品位电能,实现了与建筑的高度耦合及光电光热的综合利用,有效地降低了建筑能耗。

关键词:太阳能,CPC聚光光伏系统,雨水收集,辐射供冷,光电光热综合利用,节能

Abstract:

Presents a CPC concentrating photovoltaic system with rain-water collecting function coupled with buildings. The system mainly includes the water collection tank, CPC, photovoltaic panel and rectangular aluminum tube, etc. Uses the water collection tank to replenish water on rainy days and release water on sunny days. The CPC and photovoltaic panel are placed on the roof surface to efficiently generate electricity while avoiding the increase of indoor cooling load caused by direct sunlight radiation. The hollow aluminum substrate on the back of the photovoltaic panel is embedded in the roof of the building, which is filled with collected rain-water to effectively take away the photovoltaic residual heat. Analyses the effects of cooling water flow velocity and temperature and focusing multiple on the performance of CPC concentrating water cooling system, the effects of outdoor air velocity and irradiance on the performance of three different forms of photovoltaic cells, and the economy of the system. The system not only reduces the building heat gain caused by direct sunlight on the roof surface and the indoor cooling load, but also collects rain-water and generates high grade electric energy, which realizing the high-level coupling with the building and the comprehensive utilization of photoelectricity and photothermal, effectively reducing the building energy consumption.

Keywords:solar energy, CPC concentrating photovoltaic system, rain-water collection, radiation cooling, comprehensive utilization of photoelectricity and photothermal, energy saving

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