DOI QR코드

DOI QR Code

A Review on the Agri-voltaic and Fence PV System

  • Hasnain, Yousuf (Interdisciplinary Program in Photovoltaic System Engineering, Sungkyunkwan University) ;
  • Lee, Koo (Department of Electrical and Electronic Engineering, Sungkyunkwan University) ;
  • Young Hyun, Cho (Department of Electrical and Electronic Engineering, Sungkyunkwan University)
  • 투고 : 2022.11.25
  • 심사 : 2022.12.12
  • 발행 : 2022.12.31

초록

Solar energy is rapidly being utilized to generate power in Europe and other countries, but the environmental effect of building and operating solar farms is not fully understood. The building of a solar park demands the removal of certain vegetation and the leveling of the land. Solar energy infrastructure may involve considerable landscape change, altering soil biological processes and influencing hydrologic, carbon and vegetative dynamics. To rebuild the solar PV facilities soils, inherent plant fields might require to be re-established. Within the scope of this research, we presented an analysis of the effects that were caused by the solar farm.

키워드

과제정보

This research was supported by the New & Renewable Energy Technology Development Program of the Korea Institute of Energy Technology Evaluation and Planning (KETEP) funded by the Korean Ministry of Trade, Industry and Energy (MOTIE) Grant Nos. 20213030010140. Authors are also acknowledged to Kyungpook National University to provide facility for testing the Fence PV fields.

참고문헌

  1. US Department of Energy, "SunShot vision study," Washington DC (2012). 
  2. C, Bogdanov D, Gulagi A, Aghahosseini A, Barbosa LS, Koskinen O, Barasa M, Caldera U, Afanasyeva S, Child M, Farfan J., "On the role of solar photovoltaics in global energy transition scenarios," Prog. in PVs: Res and App, (8), 727-45 (2017). 
  3. Grigorescu I, Vrinceanu A, Vrinceanu A, Dumitra, scu M, Mocanu I, Dumitrica C, Mitric ˘ a B, Kuscicsa G and ˘ Serban P, "Regional, differences in the spatial distribution and environmental consequences of PV farms in southern Romania," Ukrainian Geogr. J., (3), 60-9 (2019). 
  4. Lambert Q, Bischoff A, Cluchier A, Cueff S and Gros R, "Effects of solar park construction and solar panels on soil quality, microclimate, CO2 effluxes and vegetation under a Mediterranean climate," Land Degradation and Development, (32), 5190-5202 (2021). 
  5. Vrinceanu A, Grigorescu I, Dumitra, scu M, Mocanu I, Dumitrica C, Micu D, Kucsicsa G and Mitrica B, "Impacts of photovoltaic farms on the environment in the Romanian plain," Energies, (12), 2533 (2019). 
  6. Bajehbaj RY, Zaliwciw D, Cibin R, McPhillips LE. "Minimizing environmental impacts of solar farms: a review of current science on landscape hydrology and guidance on stormwater management," Environmental Research: Infrastructure and Sustainability (2022). 
  7. Choi C S, Cagle A E, Macknick J, Bloom D E, Caplan J S and Ravi S, "Effects of revegetation on soil physical and chemical properties in solar photovoltaic infrastructure Front," Environ. Sci., (8), 140 (2020). 
  8. Raiesi F, Salek-Gilani S. "Development of a soil quality index for characterizing effects of land-use changes on degradation and ecological restoration of rangeland soils in a semi-arid ecosystem," Land Degradation & Development, 31(12), 1533-44 (2020).  https://doi.org/10.1002/ldr.3553
  9. Joimel S, Cortet J, Jolivet CC, Saby NP, Chenot ED, Branchu P, Consales JN, Lefort C, Morel JL, Schwartz C. "Physico-chemical characteristics of topsoil for contrasted forest, agricultural, urban and industrial land uses in France," Science of the Total Environment, (545), 40-7 (2016). 
  10. Joimel S, Schwartz C, Hedde M, Kiyota S, Krogh PH, Nahmani J, Peres G, Vergnes A, Cortet J. "Urban and industrial land uses have a higher soil biological quality than expected from physicochemical quality," Science of the Total Environment. (584), 614-21 (2017). 
  11. Khare P, Goyal DK. "Effect of high and low rank char on soil quality and carbon sequestration," Ecological engineering, (52), 161-6 (2013). 
  12. Romero-Diaz A, Ruiz-Sinoga JD, Robledano-Aymerich F, Brevik EC, Cerda A., "Ecosystem responses to land abandonment in Western Mediterranean Mountains," Catena, (149), 824-35 (201). 
  13. Rutgers M, Schouten AJ, Bloem J, Van Eekeren N, De Goede RG, Jagersop Akkerhuis GA, Van der Wal A, Mulder C, Brussaard L, Breure AM., "Biological measurements in a nationwide soil monitoring network," European Journal of Soil Science, 60(5), 820-32 (2009).  https://doi.org/10.1111/j.1365-2389.2009.01163.x
  14. Scarpare FV, van Lier QD, de Camargo L, Pires RC, RuizCorrea ST, Bezerra AH, Gava GJ, Dias CT., "Tillage effects on soil physical condition and root growth associated with sugarcane water availability," Soil and Tillage Research, (187), 110-8 (2019). 
  15. Yin R, Kardol P, Thakur MP, Gruss I, Wu GL, Eisenhauer N, Schadler M., "Soil functional biodiversity and biological quality under threat: Intensive land use outweighs climate change," Soil Biology and Biochemistry, (147), 107847 (2020). 
  16. Larney, F. J., Li, L., Janzen, H. H., Angers, D. A., and Olson, B. M., "Soil quality attributes, soil resilience, and legacy effects following topsoil removal and one-time amendments," Can. J. Soil Sci., (96), 177-190 (2016) 
  17. Holzel, N., and Otte, A., "Restoration of a species-rich flood meadow by topsoil removal and diaspore transfer with plant material," Appl. Veg. Sci., (6), 131-140 (2003). 
  18. Marrou, H., Dufour, L., and Wery, J., "How does a shelter of solar panels influence water flows in a soil-crop system?," Eur. J. Agron., (50), 38-51 (2013). 
  19. Barron-Gafford, G. A., Minor, R. L., Allen, N. A., Cronin, A. D., Brooks, A. E., and Pavao-Zuckerman, M. A., "The photovoltaic heat island effect: larger solar power plants increase local temperatures," Sci. Rep., (6), 35070 (2016). 
  20. Cook, P., "Infrastructure, rural electrification and development," Energy Sustain. Dev., (15), 304-313 (2011). 
  21. Riaz MH, Imran H, Younas R, Alam MA, Butt NZ., "Module technology for agrivoltaics: vertical bifacial versus tilted mono-facial farms," IEEE Journal of Photovoltaics, 11(2), 469-77 (2021).  https://doi.org/10.1109/JPHOTOV.2020.3048225
  22. Riaz MH, Imran H, Butt NZ., "Optimization of PV array density for fixed tilt bifacial solar panels for efficient agrivoltaic systems," In 2020 47th IEEE Photovoltaic Specialists Conference (PVSC), 1349-1352 (2020). 
  23. Imran H, Riaz MH., "Investigating the potential of east/west vertical bifacial photovoltaic farm for agrivoltaic systems," Journal of Renewable and Sustainable Energy, 13(3), 033502 (2021). 
  24. Younas R, Imran H, Riaz MH, Butt NZ., "Agrivoltaic farm design: Vertical bifacial vs. tilted monofacial photovoltaic panels," arXiv preprint, 1910.01076 (2019). 
  25. A. Ullah, H. Imran, Z. Maqsood, N. Z. Butt, "Investigation of optimal tilt angles and effects of soiling on pv energy production in pakistan," Renewable energy, (139), 830-843 (2019). 
  26. Dainese M, Martin EA, Aizen MA, Albrecht M, Bartomeus I, Bommarco R, Carvalheiro LG, Chaplin-Kramer R, Gagic V, Garibaldi LA, Ghazoul J., "A global synthesis reveals biodiversity-mediated benefits for crop production," Science advances, 5(10), 0121 (2019). 
  27. Kleijn D, Bommarco R, Fijen TP, Garibaldi LA, Potts SG, Van Der Putten WH., "Ecological intensification: bridging the gap between science and practice," Trends in ecology & evolution, 34(2), 154-66 (2019).  https://doi.org/10.1016/j.tree.2018.11.002
  28. D'Amato D, Droste N, Allen B, Kettunen M, Lahtinen K, Korhonen J, Leskinen P, Matthies BD, Toppinen A., "Green, circular, bio economy: A comparative analysis of sustainability avenues," Journal of cleaner production, (168), 716-34 (2017). 
  29. Campana PE, Stridh B, Amaducci S, Colauzzi M., "Optimisation of vertically mounted agrivoltaic systems," Journal of Cleaner Production, (325), 129091 (2021). 
  30. Armstrong A, Ostle NJ, Whitaker J., "Solar park microclimate and vegetation management effects on grassland carbon cycling," Environmental Research Letters, 11(7), 074016 (2016). 
  31. Hernandez RR, Hoffacker MK, Murphy-Mariscal ML, Wu GC, Allen MF., "Solar energy development impacts on land cover change and protected areas," Proceedings of the National Academy of Sciences, 112(44), 13579-84 (2015). https://doi.org/10.1073/pnas.1517656112