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Estimation of environmental effect of PVNB installed along a metro line in China

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Listed:
  • Gu, Minan
  • Liu, Yongsheng
  • Yang, Jingjing
  • Peng, Lin
  • Zhao, Chunjiang
  • Yang, Zhenglong
  • Yang, Jinhuan
  • Fang, Wengjian
  • Fang, Jin
  • Zhao, Zhenjie

Abstract

The paper presents the complete design of a photovoltaic noise barrier (PVNB) installation that can be used either to supply local electrical loads or for sale using the premium subsidy awarded by the China government. Possible designs for the PVNB are investigated together with economic and environmental analysis. For the first time, a PVNB has been installed along a metro line in China. The installed power is 8 kWp and the total length of the PV array is 360 m. According to the site and environmental conditions, the form and electrical connections of PVNB have been determined. Net Present Value (NPV) and the Pay-Back Period are chosen as the parameters to determine the profitability of a PVNB installation. At the same time, energy pay-back time (EPBT) is used to evaluate the environmental benefits of PVNB systems; for the specific system analyzed the EPBT is 5.4 years.

Suggested Citation

  • Gu, Minan & Liu, Yongsheng & Yang, Jingjing & Peng, Lin & Zhao, Chunjiang & Yang, Zhenglong & Yang, Jinhuan & Fang, Wengjian & Fang, Jin & Zhao, Zhenjie, 2012. "Estimation of environmental effect of PVNB installed along a metro line in China," Renewable Energy, Elsevier, vol. 45(C), pages 237-244.
  • Handle: RePEc:eee:renene:v:45:y:2012:i:c:p:237-244
    DOI: 10.1016/j.renene.2012.02.021
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    References listed on IDEAS

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    1. Zhong, Teng & Zhang, Kai & Chen, Min & Wang, Yijie & Zhu, Rui & Zhang, Zhixin & Zhou, Zixuan & Qian, Zhen & Lv, Guonian & Yan, Jinyue, 2021. "Assessment of solar photovoltaic potentials on urban noise barriers using street-view imagery," Renewable Energy, Elsevier, vol. 168(C), pages 181-194.
    2. Wang, Yuan & Zhu, Xin & Zhang, Tingsheng & Bano, Shehar & Pan, Hongye & Qi, Lingfei & Zhang, Zutao & Yuan, Yanping, 2018. "A renewable low-frequency acoustic energy harvesting noise barrier for high-speed railways using a Helmholtz resonator and a PVDF film," Applied Energy, Elsevier, vol. 230(C), pages 52-61.
    3. Zuo, Jianyong & Dong, Liwei & Yang, Fan & Guo, Ziheng & Wang, Tianpeng & Zuo, Lei, 2023. "Energy harvesting solutions for railway transportation: A comprehensive review," Renewable Energy, Elsevier, vol. 202(C), pages 56-87.
    4. Wadhawan, Siddharth R. & Pearce, Joshua M., 2017. "Power and energy potential of mass-scale photovoltaic noise barrier deployment: A case study for the U.S," Renewable and Sustainable Energy Reviews, Elsevier, vol. 80(C), pages 125-132.
    5. Zhang, Kai & Wang, Dajiang & Chen, Min & Zhu, Rui & Zhang, Fan & Zhong, Teng & Qian, Zhen & Wang, Yazhou & Li, Hengyue & Wang, Yijie & Lü, Guonian & Yan, Jinyue, 2024. "Power generation assessment of photovoltaic noise barriers across 52 major Chinese cities," Applied Energy, Elsevier, vol. 361(C).
    6. Kakoulaki, G. & Szabo, S. & Fahl F, F. & Taylor, N. & Gracia-Amillo, A. & Kenny, R. & Ulpiani, G. & Chatzipanagi, A. & Gkoumas, K. & Jäger-Waldau, A., 2024. "European transport infrastructure as a solar photovoltaic energy hub," Renewable and Sustainable Energy Reviews, Elsevier, vol. 196(C).

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