建筑集成太阳能光伏热(BIPVT)技术:设计创新,美学价值,性能限制,存储选择和政策的回顾

IF 2.1 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
M. Chandrasekar
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引用次数: 1

摘要

摘要:与现有的光伏热(PVT)技术的文献综述相比,建筑一体化太阳能光伏热(BIPVT)的文献综述很少,这促使我们对BIPVT的文献进行综述。本综述的目的是对各种BIPVT系统设计的发展时间线进行分类,量化BIPVT设备的美学价值,确定性能的阈值限制和可用的计算机工具,以进行性能分析,识别在选择特定储能选项时需要考虑的技术方面,并解释各种政策方案。本综述揭示了BIPVT系统设计演变的3时间机制的存在,并且观察到正面安装的BIPVT设计具有更高的美学价值0.5。审查还表明,BIPVT系统的热效率和电效率的阈值限制分别约为80%和20%。与其他储能方案相比,提出了多种基于pcm的储能材料。检讨亦着重介绍在不同政策设想下所采取的政策措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Building-integrated solar photovoltaic thermal (BIPVT) technology: a review on the design innovations, aesthetic values, performance limits, storage options and policies
ABSTRACT Compared to the existing literature review on the photovoltaic thermal (PVT) technique, very few review articles on building integrated solar photovoltaic thermal (BIPVT) were reported and this prompted us to present a review of BIPVT literature. The objectives of the present review are to classify the time line of evolution of various designs of BIPVT systems, to quantify the aesthetic value of BIPVT devices, to identify threshold limits of performance and useful computer-based tools available to carry out their performance analysis, to recognize the technical aspects to be considered during the selection of a particular energy storage option and to explain the various policy scenarios. The present review revealed the existence of 3-time regimes of the evolution of the design of BIPVT systems and a higher aesthetic value of 0.5 was observed for façade mounted BIPVT design. The review also indicated that the threshold limit of thermal and electrical efficiency of the BIPVT system was about 80% and 20%, respectively. A variety of PCM-based thermal energy storage materials were proposed compared to other energy storage options. Policy measures undertaken under various policy scenarios were also highlighted in this review.
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来源期刊
Advances in Building Energy Research
Advances in Building Energy Research CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
4.80
自引率
5.00%
发文量
11
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