Now showing items 1-3 of 3

    • Erikson, L.; Morim, J.; Hemer, M.; Young, I.; Wang, X.L.; Mentaschi, L.; Mori, N.; Semedo, A.; Stopa, J.; Grigorieva, V.; Gulev, S.; Aarnes, O.; Bidlot, J.-R.; Breivik, Ø.; Bricheno, L.; Shimura, T.; Menendez, M.; Markina, M.; Sharmar, V.; Trenham, C.; Wolf, J.; Appendini, C.; Caires, S.; Groll, N.; Webb, A. (2022)
      Historical trends in the direction and magnitude of ocean surface wave height, period, or direction are debated due to diverse data, time-periods, or methodologies. Using a consistent community-driven ensemble of global ...
    • Breivik, Ø.; Carrasco, A.; Staneva, J.; Behrens, A.; Semedo, A.; Bidlot, J.; Aarnes, O. (2019)
      The future Stokes drift climate is investigated using a global wave climate projection (2071–2100) forced with EC-EARTH winds under the RCP8.5 scenario. The future climate run is compared against a historical run (1976–2005). ...
    • Morim, J.; Hemer, M.; Wang, X.; Cartwright, N.; Trenham, C.; Semedo, A.; Young, I.; Bricheno, L.; Camus, P.; Casas-Prat, M.; Erikson, L.; Mentaschi, L.; Mori, N.; Shimura, T.; Timmermans, B.; Aarnes, O.; Breivik, Ø.; Behrens, A.; Dobrynin, M.; Menendez, M.; Staneva, J.; Wehner, M.; Wolf, J.; Kamranzad, B.; Webb, A.; Stopa, J.; Andutta, F. (2019)
      Understanding climate-driven impacts on the multivariate global wind-wave climate is paramount to effective offshore/coastal climate adaptation planning. However, the use of single-method ensembles and variations arising ...