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Assessment of the intra-annual and inter-annual variability of the wave energy resource in the Bay of Biscay (France)

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  • Sierra, Joan Pau
  • White, Adam
  • Mösso, Cesar
  • Mestres, Marc

Abstract

In this paper, the wave energy potential in the western coast of France is assessed, analyzing 58 years of data from numerical models at 10 points located between latitudes 43º30′N and 47ºN. The study focuses on the temporal variability at different scales (monthly, seasonal and inter-annual). The northern part of this stretch is the most energetic (wave powers greater than 22 kW/m), with a decrease of the wave power southwards. The results show that both the wave power resource and the energy output of two wave energy converters (WECs) at the Atlantic coast of France have strong intra-annual and inter-annual variability. From one year to another the wave power may present variations of up to 200%, and the WEC energy output may almost double. These results illustrate that the average mean power alone is not sufficient for adequate wave resource quantification, and it is necessary to consider the intra-annual and inter-annual variability of the wave power and the WEC output when analyzing the potential installation of a wave energy farm in a certain area.

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  • Sierra, Joan Pau & White, Adam & Mösso, Cesar & Mestres, Marc, 2017. "Assessment of the intra-annual and inter-annual variability of the wave energy resource in the Bay of Biscay (France)," Energy, Elsevier, vol. 141(C), pages 853-868.
  • Handle: RePEc:eee:energy:v:141:y:2017:i:c:p:853-868
    DOI: 10.1016/j.energy.2017.09.112
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    3. Harshinie Karunarathna & Pravin Maduwantha & Bahareh Kamranzad & Harsha Rathnasooriya & Kasun De Silva, 2020. "Impacts of Global Climate Change on the Future Ocean Wave Power Potential: A Case Study from the Indian Ocean," Energies, MDPI, vol. 13(11), pages 1-22, June.
    4. Karunarathna, Harshinie & Maduwantha, Pravin & Kamranzad, Bahareh & Rathnasooriya, Harsha & de Silva, Kasun, 2020. "Evaluation of spatio-temporal variability of ocean wave power resource around Sri Lanka," Energy, Elsevier, vol. 200(C).
    5. Arredondo-Galeana, Abel & Olbert, Gerrit & Shi, Weichao & Brennan, Feargal, 2023. "Near wake hydrodynamics and structural design of a single foil cycloidal rotor in regular waves," Renewable Energy, Elsevier, vol. 206(C), pages 1020-1035.
    6. Vázquez, Rubén & Cabos, William & Nieto-Borge, José Carlos & Gutiérrez, Claudia, 2024. "Complementarity of offshore energy resources on the Spanish coasts: Wind, wave, and photovoltaic energy," Renewable Energy, Elsevier, vol. 224(C).
    7. Yang, Zhaoqing & García Medina, Gabriel & Neary, Vincent S. & Ahn, Seongho & Kilcher, Levi & Bharath, Aidan, 2023. "Multi-decade high-resolution regional hindcasts for wave energy resource characterization in U.S. coastal waters," Renewable Energy, Elsevier, vol. 212(C), pages 803-817.
    8. Joan Pau Sierra & Ricard Castrillo & Marc Mestres & César Mösso & Piero Lionello & Luigi Marzo, 2020. "Impact of Climate Change on Wave Energy Resource in the Mediterranean Coast of Morocco," Energies, MDPI, vol. 13(11), pages 1-19, June.
    9. Guillou, Nicolas & Chapalain, Georges, 2020. "Assessment of wave power variability and exploitation with a long-term hindcast database," Renewable Energy, Elsevier, vol. 154(C), pages 1272-1282.
    10. Guillou, Nicolas, 2020. "Estimating wave energy flux from significant wave height and peak period," Renewable Energy, Elsevier, vol. 155(C), pages 1383-1393.

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