Wind is a critical meteorological parameter that influences numerous environmental, oceanic, and human activities. This study presents a comprehensive spatio-temporal characterization of wind regimes in the Algerian Basin based on 84 years (1940-2024) of ERA5 reanalysis data. Statistical and geospatial analyses were conducted to explore monthly, seasonal, and annual variability in wind speed and direction. The study also applied anomaly detection, Mann-Kendall trend testing, and Empirical Orthogonal Functions (EOF) to identify dominant wind patterns. The results indicate significant variability, with higher wind speeds recorded in the winter season and stronger gradients observed in the eastern basin. A composite scoring system incorporating wind velocity, bathymetric depth, and distance to shore was used to select optimal sites for offshore wind farm development. Simulation of three candidate sites with 15 MW turbines showed considerable power generation potential. These findings contribute vital data for Algeria’s renewable energy planning and marine spatial strategy.
Cite this paper
Boufeniza, R. L. , Firad, B. , Brihoum, M. and Chahrour, M. (2026). Spatio-Temporal Characterization of Wind Regimes in the Algerian Basin: Implications for Offshore Wind Energy Development
. Open Access Library Journal, 13, e15079. doi: http://dx.doi.org/10.4236/oalib.1115079.
Soukissian, T. and Sotiriou, M. (2022) Long-term Variability of Wind Speed and Direction in the Mediter-ranean Basin. Wind, 2, 513-534. https://doi.org/10.3390/wind2030028
Claus, S., De Hauwere, N., Vanhoorne, B., Deckers, P., Souza Dias, F., Hernandez, F., et al. (2014) Marine Regions: Towards a Global Standard for Georeferenced Marine Names and Boundaries. Marine Geodesy, 37, 99-125. https://doi.org/10.1080/01490419.2014.902881
Tumse, S., Bilgili, M., Yildirim, A. and Sahin, B. (2024) Comparative Analysis of Global Onshore and Offshore Wind Energy Characteristics and Potentials. Sustainability, 16, Article 6614. https://doi.org/10.3390/su16156614
Sassi, S. and Bourouba, S. (2022) La Zone économique Exclusive Algérienne Entre Enjeux énergétiques Et Envi-ronnementaux Et Risque De Différends Maritimes. Journal of Legal Studies, 9, 869-897. https://doi.org/10.35777/1799-009-001-032
Pryor, S.C. and Barthelmie, R.J. (2010) Climate Change Impacts on Wind Energy: A Review. Renewable and Sustainable Energy Reviews, 14, 430-437. https://doi.org/10.1016/j.rser.2009.07.028
Zergane, S., Smaili, A. and Masson, C. (2018) Optimization of Wind Turbine Placement in a Wind Farm Using a New Pseudo-Random Number Generation Method. Renewable Energy, 125, 166-171. https://doi.org/10.1016/j.renene.2018.02.082
Yildiz, S.S. (2023) Determining Wind Energy Potential Using Geographic Information System Functions: A Case Study in Balıkesir, Türkiye. Applied Sciences, 13, Ar-ticle 9183. https://doi.org/10.3390/app13169183
Bianchini, A., Bangga, G., Baring-Gould, I., Croce, A., et al. (2022) Current Status and Grand Challenges for Small Wind Turbine Technology. Wind Energy Science, 7, 2003-2037. https://doi.org/10.5194/wes-7-2003-2022
Onea, F., Deleanu, L., Rusu, L. and Georgescu, C. (2016) Evaluation of the Wind Energy Potential along the Mediterranean Sea Coasts. Energy Exploration & Exploitation, 34, 766-792. https://doi.org/10.1177/0144598716659592
Lionello, P., Conte, D. and Reale, M. (2019) The Effect of Cyclones Crossing the Mediterranean Region on Sea Level Anomalies on the Mediterranean Sea Coast. Natural Hazards and Earth System Sciences, 19, 1541-1564. https://doi.org/10.5194/nhess-19-1541-2019
Houta, D. and Gadiyatov, V.G. (2023) Climatic Factors of the Algerian Coast. In: Chaplina, T., Ed., Pro-cesses in GeoMedia—Volume VI, Springer, 93-105. https://doi.org/10.1007/978-3-031-16575-7_10
Serri, L., Airoldi, D., Lanni, F., Naldi, R., Castorrini, A., Rispoli, F., et al. (2024) Technical and Eco-nomic Challenges for Floating Offshore Wind Deployment in Italy and in the Mediterranean Sea. WIREs Energy and Environment, 13, e533. https://doi.org/10.1002/wene.533
Drożdż, W. and Mróz-Malik, O. (2020) Challenges for the Polish Energy Policy in the Field of Offshore Wind Energy Development. Polityka Energetyczna—Energy Policy Journal, 23, 5-18. https://doi.org/10.33223/epj/119071
Kassem, Y., Çamur, H. and Aateg, R.A.F. (2020) Exploring Solar and Wind Energy as a Power Generation Source for Solving the Electricity Crisis in Libya. Energies, 13, Article 3708. https://doi.org/10.3390/en13143708
Kassem, Y., Gökçekus, H. and Çamur, H. (2018) Economic Assessment of Renewable Power Generation Based on Wind Speed and Solar Radiation in Urban Regions. Global Journal of Environmental Science and Management, 4, 465-482.
Myhr, A., Bjerkseter, C., Ågotnes, A. and Nygaard, T.A. (2014) Levelised Cost of Ener-gy for Offshore Floating Wind Turbines in a Life Cycle Perspective. Renewable Energy, 66, 714-728. https://doi.org/10.1016/j.renene.2014.01.017
Jansen, M., Beiter, P., Riepin, I., Müsgens, F., Guajardo-Fajardo, V.J., Staffell, I., et al. (2022) Policy Choices and Outcomes for Offshore Wind Auctions Globally. Energy Policy, 167, Article ID: 113000. https://doi.org/10.1016/j.enpol.2022.113000
Wilhelmsson, D., Malm, T. and Öhman, M.C. (2006) The Influence of Offshore Windpower on Demersal Fish. ICES Journal of Marine Science, 63, 775-784. https://doi.org/10.1016/j.icesjms.2006.02.001
Boehlert, G. and Gill, A. (2010) Environmental and Ecological Effects of Ocean Renewable Energy De-velopment—A Current Synthesis. Oceanography, 23, 68-81. https://doi.org/10.5670/oceanog.2010.46