Grid-Connected Semitransparent Building-Integrated Photovoltaic System: The Comprehensive Case Study of the 120 kWp Plant in Kunming, China

A 120 kWp building-integrated photovoltaic (BIPV) system was installed on the south facade of the Solar Energy Research Institute building in Yunnan Normal University. The area of the curtain wall was 1560 m2 (26 m × 60 m), which consisted of 720 semitransparent monocrystalline silicon double-glazin...

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Main Authors: Yunfeng Wang, Ming Li, Reda Hassanien Emam Hassanien, Xun Ma, Guoliang Li
Format: Article
Language:English
Published: Wiley 2018-01-01
Series:International Journal of Photoenergy
Online Access:http://dx.doi.org/10.1155/2018/6510487
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author Yunfeng Wang
Ming Li
Reda Hassanien Emam Hassanien
Xun Ma
Guoliang Li
author_facet Yunfeng Wang
Ming Li
Reda Hassanien Emam Hassanien
Xun Ma
Guoliang Li
author_sort Yunfeng Wang
collection DOAJ
description A 120 kWp building-integrated photovoltaic (BIPV) system was installed on the south facade of the Solar Energy Research Institute building in Yunnan Normal University. The area of the curtain wall was 1560 m2 (26 m × 60 m), which consisted of 720 semitransparent monocrystalline silicon double-glazing PV panels. This paper studied the yearly and monthly variations of power generation in terms of solar data and meteorological parameters. The total amount of power generation of the BIPV system measured from October 2014 to September 2015 was 64.607 MWh, and the simulation results with TRNSYS (Transient Systems Simulation Program) provided the 75.515 MWh predicted value of annual electricity production with the meteorological database of Meteonorm, while, based on the average value of the performance ratio (PR) of 60% and the life cycle assessment (LCA) of the system, the energy payback time (EPBT) of 9.38 years and the potential for pollutant emission reductions have been evaluated and the environmental cost is RMB ¥0.01053 per kWh. Finally, an economic analysis was carried out; the net present value (NPV) and the economic payback time of the BIPV system were estimated to be RMB ¥359,347 and 15 years, respectively.
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institution Kabale University
issn 1110-662X
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language English
publishDate 2018-01-01
publisher Wiley
record_format Article
series International Journal of Photoenergy
spelling doaj-art-20619526b7824477b3296054b376ea852025-02-03T07:23:35ZengWileyInternational Journal of Photoenergy1110-662X1687-529X2018-01-01201810.1155/2018/65104876510487Grid-Connected Semitransparent Building-Integrated Photovoltaic System: The Comprehensive Case Study of the 120 kWp Plant in Kunming, ChinaYunfeng Wang0Ming Li1Reda Hassanien Emam Hassanien2Xun Ma3Guoliang Li4Solar Energy Research Institute, Yunnan Normal University, Kunming, ChinaSolar Energy Research Institute, Yunnan Normal University, Kunming, ChinaSolar Energy Research Institute, Yunnan Normal University, Kunming, ChinaSolar Energy Research Institute, Yunnan Normal University, Kunming, ChinaSolar Energy Research Institute, Yunnan Normal University, Kunming, ChinaA 120 kWp building-integrated photovoltaic (BIPV) system was installed on the south facade of the Solar Energy Research Institute building in Yunnan Normal University. The area of the curtain wall was 1560 m2 (26 m × 60 m), which consisted of 720 semitransparent monocrystalline silicon double-glazing PV panels. This paper studied the yearly and monthly variations of power generation in terms of solar data and meteorological parameters. The total amount of power generation of the BIPV system measured from October 2014 to September 2015 was 64.607 MWh, and the simulation results with TRNSYS (Transient Systems Simulation Program) provided the 75.515 MWh predicted value of annual electricity production with the meteorological database of Meteonorm, while, based on the average value of the performance ratio (PR) of 60% and the life cycle assessment (LCA) of the system, the energy payback time (EPBT) of 9.38 years and the potential for pollutant emission reductions have been evaluated and the environmental cost is RMB ¥0.01053 per kWh. Finally, an economic analysis was carried out; the net present value (NPV) and the economic payback time of the BIPV system were estimated to be RMB ¥359,347 and 15 years, respectively.http://dx.doi.org/10.1155/2018/6510487
spellingShingle Yunfeng Wang
Ming Li
Reda Hassanien Emam Hassanien
Xun Ma
Guoliang Li
Grid-Connected Semitransparent Building-Integrated Photovoltaic System: The Comprehensive Case Study of the 120 kWp Plant in Kunming, China
International Journal of Photoenergy
title Grid-Connected Semitransparent Building-Integrated Photovoltaic System: The Comprehensive Case Study of the 120 kWp Plant in Kunming, China
title_full Grid-Connected Semitransparent Building-Integrated Photovoltaic System: The Comprehensive Case Study of the 120 kWp Plant in Kunming, China
title_fullStr Grid-Connected Semitransparent Building-Integrated Photovoltaic System: The Comprehensive Case Study of the 120 kWp Plant in Kunming, China
title_full_unstemmed Grid-Connected Semitransparent Building-Integrated Photovoltaic System: The Comprehensive Case Study of the 120 kWp Plant in Kunming, China
title_short Grid-Connected Semitransparent Building-Integrated Photovoltaic System: The Comprehensive Case Study of the 120 kWp Plant in Kunming, China
title_sort grid connected semitransparent building integrated photovoltaic system the comprehensive case study of the 120 kwp plant in kunming china
url http://dx.doi.org/10.1155/2018/6510487
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