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Location alternatives generation and elimination of floatovoltaics with virtual power plant designs

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  • Tercan, Emre
  • Dereli, Mehmet Ali
  • Saracoglu, Burak Omer

Abstract

A floating photovoltaic solar power (floatovoltaics) systems' location alternatives generation and elimination application in Burdur is presented as a development activity of a proposed real-time robot and platform. Analytic Hierarchy Process as a weighting method, Weighted Linear Combination as a decision rule, and Ordinary Kriging as an interpolation method are applied with input layers like Global Horizontal Irradiance, wind speed, elevation, and power networks. 2 procedures are proposed for presenting discriminated and compound floatovoltaics suitability maps on all water bodies. Possibilistic power output estimations for virtual floatovoltaics systems on Burdur Lake and Karacaoren I Dam Reservoir are prepared based on the satellite images, hill shade, bathymetry, future drought analyses, and discrete power output estimations on Global Solar Atlas. The sensitivity analyses are also presented for investors. The capital expenditure estimations are made with a possibilistic approach too. The water conditions and projections are scary due to many irrevocable water use and precipitation problems. Hence, hybrid investments, and energy islands (hydro, photovoltaics, floatovoltaics, and similar) will be safer and risk-averse options. It is recommended to focus on sufficiently large, deep and calm water bodies too. This study is a good kick-off for the preliminary assessment of new floatovoltaics.

Suggested Citation

  • Tercan, Emre & Dereli, Mehmet Ali & Saracoglu, Burak Omer, 2022. "Location alternatives generation and elimination of floatovoltaics with virtual power plant designs," Renewable Energy, Elsevier, vol. 193(C), pages 1150-1163.
  • Handle: RePEc:eee:renene:v:193:y:2022:i:c:p:1150-1163
    DOI: 10.1016/j.renene.2022.04.145
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    1. Cazzaniga, R. & Cicu, M. & Rosa-Clot, M. & Rosa-Clot, P. & Tina, G.M. & Ventura, C., 2018. "Floating photovoltaic plants: Performance analysis and design solutions," Renewable and Sustainable Energy Reviews, Elsevier, vol. 81(P2), pages 1730-1741.
    2. Trapani, Kim & Millar, Dean L., 2014. "The thin film flexible floating PV (T3F-PV) array: The concept and development of the prototype," Renewable Energy, Elsevier, vol. 71(C), pages 43-50.
    3. Redón Santafé, Miguel & Torregrosa Soler, Juan Bautista & Sánchez Romero, Francisco Javier & Ferrer Gisbert, Pablo S. & Ferrán Gozálvez, José Javier & Ferrer Gisbert, Carlos M., 2014. "Theoretical and experimental analysis of a floating photovoltaic cover for water irrigation reservoirs," Energy, Elsevier, vol. 67(C), pages 246-255.
    4. Padilha Campos Lopes, Mariana & Nogueira, Tainan & Santos, Alberto José Leandro & Castelo Branco, David & Pouran, Hamid, 2022. "Technical potential of floating photovoltaic systems on artificial water bodies in Brazil," Renewable Energy, Elsevier, vol. 181(C), pages 1023-1033.
    5. Sulaeman, Samer & Brown, Erik & Quispe-Abad, Raul & Müller, Norbert, 2021. "Floating PV system as an alternative pathway to the amazon dam underproduction," Renewable and Sustainable Energy Reviews, Elsevier, vol. 135(C).
    6. Saaty, Thomas L., 1990. "How to make a decision: The analytic hierarchy process," European Journal of Operational Research, Elsevier, vol. 48(1), pages 9-26, September.
    7. Taboada, M.E. & Cáceres, L. & Graber, T.A. & Galleguillos, H.R. & Cabeza, L.F. & Rojas, R., 2017. "Solar water heating system and photovoltaic floating cover to reduce evaporation: Experimental results and modeling," Renewable Energy, Elsevier, vol. 105(C), pages 601-615.
    8. Dai, Jian & Zhang, Chi & Lim, Han Vincent & Ang, Kok Keng & Qian, Xudong & Wong, Johnny Liang Heng & Tan, Sze Tiong & Wang, Chien Looi, 2020. "Design and construction of floating modular photovoltaic system for water reservoirs," Energy, Elsevier, vol. 191(C).
    9. Sahu, Alok & Yadav, Neha & Sudhakar, K., 2016. "Floating photovoltaic power plant: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 66(C), pages 815-824.
    10. Jean-François Pekel & Andrew Cottam & Noel Gorelick & Alan S. Belward, 2016. "High-resolution mapping of global surface water and its long-term changes," Nature, Nature, vol. 540(7633), pages 418-422, December.
    11. Lee, Nathan & Grunwald, Ursula & Rosenlieb, Evan & Mirletz, Heather & Aznar, Alexandra & Spencer, Robert & Cox, Sadie, 2020. "Hybrid floating solar photovoltaics-hydropower systems: Benefits and global assessment of technical potential," Renewable Energy, Elsevier, vol. 162(C), pages 1415-1427.
    12. Rauf, Huzaifa & Gull, Muhammad Shuzub & Arshad, Naveed, 2020. "Complementing hydroelectric power with floating solar PV for daytime peak electricity demand," Renewable Energy, Elsevier, vol. 162(C), pages 1227-1242.
    13. Saaty, Thomas L. & Rogers, Paul C., 1976. "Higher education in the united states (1985-2000) : Scenario construction using a hierarchical framework with eigenvector weighting," Socio-Economic Planning Sciences, Elsevier, vol. 10(6), pages 251-263.
    14. Brad Carter & Claus Rinner, 2014. "Locally weighted linear combination in a vector geographic information system," Journal of Geographical Systems, Springer, vol. 16(3), pages 343-361, July.
    15. Bahaidarah, H. & Subhan, Abdul & Gandhidasan, P. & Rehman, S., 2013. "Performance evaluation of a PV (photovoltaic) module by back surface water cooling for hot climatic conditions," Energy, Elsevier, vol. 59(C), pages 445-453.
    16. Olayinka S. Ohunakin & Burak Omer Saracoglu, 2018. "A comparative study of selected multi-criteria decision-making methodologies for location selection of very large concentrated solar power plants in Nigeria," African Journal of Science, Technology, Innovation and Development, Taylor & Francis Journals, vol. 10(5), pages 551-567, July.
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    1. Kocabaldır, Canan & Yücel, Mehmet Ali, 2023. "GIS-based multicriteria decision analysis for spatial planning of solar photovoltaic power plants in Çanakkale province, Turkey," Renewable Energy, Elsevier, vol. 212(C), pages 455-467.

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