East-West or North-South. Choice of Dual Orientation Photovoltaic Systems on Sloping Ground (Original).
Keywords:
two-sided orientation; east-west orientation; sloping groundAbstract
The double East-West orientation of the photovoltaic modules has several objectives: to obtain greater power and energy per area, greater generation in the early and late hours of the day and during the summer, less vulnerability of the structures to wind, and better economic results. In the literature, the North-South orientation is not mentioned as another alternative. However, the authors conclude that in the latitude range of Cuba and in terrains with certain combinations of slopes, based on simulations, systems with a North-South orientation could energetically surpass those with an East-West orientation. This confirms that each site requires a specific analysis: a tailored suit.
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References
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Ossenbrink, R. (30 de Octubre de 2013). IBC Solar: East-west solar park for own consumption in Germany. (S. Energy, Ed.) Alemania. Obtenido de https://www.sunwindenergy.com/news/ibc-solar-east-west-solar-park
Padrón Suárez, L., Gutiérrez Urdaneta, L., y Valladares Aguilera, J. (2021). Sistemas fotovoltaicos con limitaciones de terreno: la doble orientación como alternativa. Ingeniería Energética, 42(3), 1-11. Obtenido de https://rie.cujae.edu.cu
PVEurope. (7 de junio de 2016). IBC Solar: 1 MW rooftop PV plant for food cooling in Norway with self-consumption. Obtenido de https://www.pveurope.eu/installation/ibc-solar-1-mw-rooftop-pv-plant-food-cooling-norway-self-consumption
Smith, S. (Octubre de 2017). Solar tracker site design: How to maximize energy production while maintaining the lowest cost of ownership. Obtenido de Solvida Energy Group, Estados Unidos: https://solarflexrack.com/wp-content/uploads/2018/03/Solar_Tracker_Site_Design_White_Paper_Rev1_-Stephen-Smith.pdf
Cossu, S., Baccoli, R., y Ghiani, E. (2021). Utility Scale Ground Mounted Photovoltaic Plants with Gable Structure and Inverter Oversizing for Land-Use Optimization. Energies, 14(3084), 2-16. doi:10.3390/en14113084
EPA-NREL. (2013). Best Practices for Siting Solar Photovoltaics on Municipal Solid Waste Landfills. Obtenido de https://www.epa.gov/sites/production/files/2015-03/documents/best_practices_siting_solar_photovoltaic_final.pd
Group of Energy, Institute of the Sciences of the Enviroment. (2019). PVsyst V6.81. University of Geneva. Obtenido de https://www.pvsyst.com/download-pvsyst/
Gutiérrez Urdaneta, L. (2022). Distancias de diseño de parques fotovoltaicos sobre terrenos con pendientes. Roca, Universidad de Granma, 18(1). Obtenido de https://revistas.udg.co.cu/index.php/roca/issue/view/92
Lewis, G. (9 de Agosto de 2013). Dealing With Uneven Topography for PV Layouts. Solar FlexRack. Obtenido de https://solarflexrack.com/dealing-with-uneven-topography-for-pv-layouts/
Mermoud , A., y Lejeune, T. (2010). Partial shadings on PV arrays: by-pass diode benefits analysis. 25th European Photovoltaic Solar Energy Conference, Universidad de Ginebra. doi:10.4229/25THEUPVSEC2010-4BV.1.81
Ossenbrink, R. (30 de Octubre de 2013). IBC Solar: East-west solar park for own consumption in Germany. (S. Energy, Ed.) Alemania. Obtenido de https://www.sunwindenergy.com/news/ibc-solar-east-west-solar-park
Padrón Suárez, L., Gutiérrez Urdaneta, L., y Valladares Aguilera, J. (2021). Sistemas fotovoltaicos con limitaciones de terreno: la doble orientación como alternativa. Ingeniería Energética, 42(3), 1-11. Obtenido de https://rie.cujae.edu.cu
PVEurope. (7 de junio de 2016). IBC Solar: 1 MW rooftop PV plant for food cooling in Norway with self-consumption. Obtenido de https://www.pveurope.eu/installation/ibc-solar-1-mw-rooftop-pv-plant-food-cooling-norway-self-consumption
Smith, S. (Octubre de 2017). Solar tracker site design: How to maximize energy production while maintaining the lowest cost of ownership. Obtenido de Solvida Energy Group, Estados Unidos: https://solarflexrack.com/wp-content/uploads/2018/03/Solar_Tracker_Site_Design_White_Paper_Rev1_-Stephen-Smith.pdf
Published
2022-07-12
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How to Cite
East-West or North-South. Choice of Dual Orientation Photovoltaic Systems on Sloping Ground (Original). (2022). Roca. Scientific-Educational Publication of Granma Province., 18(3), 355-376. https://revistas.udg.co.cu/index.php/roca/article/view/3466