A preliminary techno-economic study of a building integrated photovoltaic (BIPV) system for a residential building cluster in Sweden by the integrated toolkit of BIM and PVSITES

IF 2.1 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Samer Quintana, Pei Huang, P. Saini, Xingxing Zhang
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引用次数: 10

Abstract

ABSTRACT This paper proposes an integrated simulation framework for both building design and energy performance analysis. Literature review shows that, although many studies exist, most of them did not fully consider the integrated techno-economic evaluation of building-integrated photovoltaic (BIPV) system. Therefore, this research aims to use the interoperability potential offered by applying a building information modelling BIM-friendly software to an integrated simulation tool to conduct a comprehensive techno-economic evaluation of a BIPV system in a building cluster. Through visual integration in a digital mock-up, the solar irradiation, surrounding shadings, BIPV location, BIPV components/system (string, inverter, battery), and economic analysis have been performed on a residential building cluster located in Ludvika, Sweden. The results show the optimal location for the 615 m2 BIPV system with a yielding of 27,394 kWh/year. Under the defined boundary conditions, the payback period is 10 years in the mixed feed-in and self-consumption mode, over its 20 years’ life span. Further sensitivity analysis of 18 cases is carried out in order to evaluate the impact of installation position (capacity), future climate change, shadings, and operating mode. This study will help improve decision-making by analysing the impact of the aforementioned factors on a BIPV system techno-economic performance.
通过BIM和PVSITES的集成工具包,对瑞典住宅建筑群的建筑集成光伏(BIPV)系统进行了初步的技术经济研究
摘要:本文提出了一个用于建筑设计和能源性能分析的综合仿真框架。文献综述表明,虽然已有很多研究,但大多没有充分考虑建筑光伏一体化系统的综合技术经济评价。因此,本研究旨在利用互操作性潜力,将bim友好的建筑信息建模软件应用于集成仿真工具,对建筑集群中的BIPV系统进行全面的技术经济评估。通过数字模型的视觉整合,太阳辐射、周围遮阳、BIPV位置、BIPV组件/系统(串、逆变器、电池)和经济分析在瑞典Ludvika的住宅建筑群中进行。结果显示了615 m2 BIPV系统的最佳位置,发电量为27394千瓦时/年。在定义的边界条件下,在上网与自用混合模式下,投资回收期为10年,其使用寿命为20年。进一步对18个案例进行敏感性分析,评估安装位置(容量)、未来气候变化、遮阳、运行方式等因素的影响。通过分析上述因素对BIPV系统技术经济绩效的影响,本研究将有助于改进决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Intelligent Buildings International
Intelligent Buildings International CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
4.60
自引率
4.30%
发文量
8
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