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Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods

Cilt: 9 Sayı: 1 30 Haziran 2025
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Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods

Öz

In this study, it will be calculated how much water evaporation will be prevented if a Floating Solar Power Plant (FSPP) is installed on a certain part of the Keban Dam lake in Elazığ (38.41˚N, 39.14˚E), Türkiye by using the Penman and Linacre methods and the Artificial Neural Networks (ANN) method, which are widely used in evaporation calculation. Thus, it will be calculated how much energy can be produced with this saved water. Keban Hydroelectric Power Plant (HPP), examined in this study, is Türkiye's 3rd largest hydroelectric power plant with an installed power of 1.330 MWe. It is the fourth largest lake in Türkiye and the second largest dam lake after the Atatürk Dam. Keban Dam meets the electrical energy needs of 1.750.733 people in their daily lives with an average electricity production of 5.794.927,279 kWh. It has been calculated that thanks to a floating photovoltaic power plant that will cover 10% of the dam lake, a total of 31.305.282 m3 of water in normal water code will be prevented from evaporating annually, and thanks to this water, energy benefit will be provided with the power plant with an installed power of 6.624,84 MWe. In addition, it has been analyzed that 11.297.018 kWh of electricity can be produced from the dam turbines with the water prevented from evaporating thanks to FSPP. Approximately 72.39 MWe energy is needed for the Ağın, Pertek, Serince, Palu-Kovancılar, Uluova, Kuzova irrigation projects around the Keban Dam lake. It has been determined that the amount of water and energy needed for irrigation of these plains can be obtained thanks to FSPP.

Anahtar Kelimeler

Floating solar power plant, Keban Dam Lake, irrigation system, energy efficiency gains., evaporation

Kaynakça

  1. Exley, G., Armstrong, A., Trevor, P., Page, T., & Jones, I. D. (2021). Floating photovoltaics could mitigate climate change impacts on water body temperature and stratification. Solar Energy, 219, 24–33.
  2. Dörenkämper, M., Wahed, A., Kumar, A., Jong, M., Kroon, J., & Reindl, T. (2021). The cooling effect of floating PV in two different climate zones: A comparison of field test data from the Netherlands and Singapore. Solar Energy, 214, 239–247.
  3. Melvin, G. K. X. (2015). Experimental study of the effect of floating solar panels on reducing evaporation in Singapore reservoirs (Master’s dissertation, National University of Singapore).
  4. Redón Santafé, M., Torregrosa Soler, J. B., Sánchez Romero, F. J., Ferrer Gisbert, P. S., Ferrán Gozálvez, J. J., & Ferrer Gisbert, C. M. (2014). Theoretical and experimental analysis of a floating photovoltaic cover for water irrigation reservoirs. Energy, 67, 246–255.
  5. Tsoutsos, T., Frantzeskaki, N., & Gekas, V. (2005). Environmental impacts from the solar energy technologies. Energy Policy, 33(3), 289–296.
  6. Farfan, J., & Breyer, C. (2018). Combining floating solar photovoltaic power plants and hydropower reservoirs: A virtual battery of great global potential. Energy Procedia, 155, 403–411.
  7. Reindl, T., et al. (2019). Where sun meets water: Floating solar market report. Retrieved April 10, 2020, from https://esmap.org/where_sun_meets_water_floating_solar_market_report
  8. Intersolar Europe. (2022). Floating PV: On the rise in Europe. Retrieved January 1, 2022, from https://www.intersolar.de/market-trends/floating-pv-europe
  9. Farrar, L. W., Bahaj, A. S., James, P., Anwar, A., & Amdar, N. (2022). Floating solar PV to reduce water evaporation in water stressed regions and powering water pumping: Case study Jordan. Energy Conversion and Management, 260, 115598.
  10. Işık, A. H., Arıcı, B., & Alhelali, S. Floating solar power plants technical guide. Clean Creative Technologies Consultancy and Engineering Inc.

Kaynak Göster

APA
Kurt, S., Esen, H., & Toka, Ü. (2025). Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods. International Journal of Innovative Engineering Applications, 9(1), 88-99. https://doi.org/10.46460/ijiea.1647566
AMA
1.Kurt S, Esen H, Toka Ü. Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods. ijiea, IJIEA. 2025;9(1):88-99. doi:10.46460/ijiea.1647566
Chicago
Kurt, Savaş, Hikmet Esen, ve Ünal Toka. 2025. “Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods”. International Journal of Innovative Engineering Applications 9 (1): 88-99. https://doi.org/10.46460/ijiea.1647566.
EndNote
Kurt S, Esen H, Toka Ü (01 Haziran 2025) Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods. International Journal of Innovative Engineering Applications 9 1 88–99.
IEEE
[1]S. Kurt, H. Esen, ve Ü. Toka, “Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods”, ijiea, IJIEA, c. 9, sy 1, ss. 88–99, Haz. 2025, doi: 10.46460/ijiea.1647566.
ISNAD
Kurt, Savaş - Esen, Hikmet - Toka, Ünal. “Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods”. International Journal of Innovative Engineering Applications 9/1 (01 Haziran 2025): 88-99. https://doi.org/10.46460/ijiea.1647566.
JAMA
1.Kurt S, Esen H, Toka Ü. Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods. ijiea, IJIEA. 2025;9:88–99.
MLA
Kurt, Savaş, vd. “Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods”. International Journal of Innovative Engineering Applications, c. 9, sy 1, Haziran 2025, ss. 88-99, doi:10.46460/ijiea.1647566.
Vancouver
1.Savaş Kurt, Hikmet Esen, Ünal Toka. Investigation of the Benefits of the Floating Solar Power Plant to be Established on Keban Dam Lake using Penman, Linacre and Artificial Neural Networks Methods. ijiea, IJIEA. 01 Haziran 2025;9(1):88-99. doi:10.46460/ijiea.1647566