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Falcão, A.F.O., Henriques, J.C.C., 2016. Oscillating-water-column wave energy converters and air
turbines: A review. Renew. Energy 85, 1391–1424. https://doi.org/10.1016/j.renene.2015.07.086
Fan, Y., Lin, S.-J., Held, I.M., Yu, Z., Tolman, H.L., 2012. Global Ocean Surface Wave Simulation
Using a Coupled Atmosphere–Wave Model. J. Clim. 25, 6233–6252. https://doi.org/10.1175/JCLID-11-00621.1
Farley, F.J.M., 2018. The underwater resonant airbag: a new wave energy converter. Proc. R. Soc.
A Math. Phys. Eng. Sci. 474, 20170192. https://doi.org/10.1098/rspa.2017.0192
Fernandez, H., Iglesias, G., Carballo, R., Castro, A., Fraguela, J.A., Taveira-Pinto, F., Sanchez, M.,
2012. The new wave energy converter WaveCat: Concept and laboratory tests. Mar. Struct. 29, 58–
70. https://doi.org/10.1016/J.MARSTRUC.2012.10.002
Gelci, R., Cazalé, H., Vassal, J., 1957. Prévision de la houle. La méthode des densités
spectroangulaires. Bull. d’information du Com. d’Océanographie d’Etude des Côtes 9, 416–435.
Giorgi, F., Lionello, P., 2008. Climate change projections for the Mediterranean region. Glob.
Planet. Change 63, 90–104. https://doi.org/10.1016/J.GLOPLACHA.2007.09.005
Guisado-Pintado, E., Malvárez, G., Navas, F., Carrero, R., 2014. Spatial distribution of storm wave
energy dissipation for the assessment of beach morphodynamics. J. Coast. Res. 70, 259–265.
https://doi.org/10.2112/SI70-044.1
Günther, H., Hasselmann, S., Janssen, P.A.E.M., 1992. The WAM Modèle cycle 4. Hamburg,
Germany.
Hagerman, G., 2001. Southern New England wave energy resource potential. Proceedings of the
Building Energy, Boston, USA.
Hasselmann, K., 1974. On the spectral dissipation of ocean waves due to white capping. BoundaryLayer Meteorol. 6, 107–127. https://doi.org/10.1007/BF00232479
Hasselmann, K., Barnett, T.P., Bouws, E., Carlson, H., Cartwright, D.E., Enke, K., Ewing, J.A.,
Gienapp, H., Hasselmann, D.E., Kruseman, P., Meerburg, A., Müller, P., Olbers, D.J., Richter, K.,
Part II: Parameterization of the Wind Input. J. Phys. Oceanogr. 36, 1672–1689.
https://doi.org/10.1175/JPO2933.1
Drew, B., Plummer, A.R., Sahinkaya, M.N., 2009. A review of wave energy converter technology.
Proc.
Inst.
Mech.
Eng.
Part
A
J.
Power
Energy
223,
887–902.
https://doi.org/10.1243/09576509JPE782
Falcão, A.F. de O., 2010. Wave energy utilization: A review of the technologies. Renew. Sustain.
Energy Rev. 14, 899–918. https://doi.org/10.1016/J.RSER.2009.11.003
Falcão, A.F.O., Henriques, J.C.C., 2016. Oscillating-water-column wave energy converters and air
turbines: A review. Renew. Energy 85, 1391–1424. https://doi.org/10.1016/j.renene.2015.07.086
Fan, Y., Lin, S.-J., Held, I.M., Yu, Z., Tolman, H.L., 2012. Global Ocean Surface Wave Simulation
Using a Coupled Atmosphere–Wave Model. J. Clim. 25, 6233–6252. https://doi.org/10.1175/JCLID-11-00621.1
Farley, F.J.M., 2018. The underwater resonant airbag: a new wave energy converter. Proc. R. Soc.
A Math. Phys. Eng. Sci. 474, 20170192. https://doi.org/10.1098/rspa.2017.0192
Fernandez, H., Iglesias, G., Carballo, R., Castro, A., Fraguela, J.A., Taveira-Pinto, F., Sanchez, M.,
2012. The new wave energy converter WaveCat: Concept and laboratory tests. Mar. Struct. 29, 58–
70. https://doi.org/10.1016/J.MARSTRUC.2012.10.002
Gelci, R., Cazalé, H., Vassal, J., 1957. Prévision de la houle. La méthode des densités
spectroangulaires. Bull. d’information du Com. d’Océanographie d’Etude des Côtes 9, 416–435.
Giorgi, F., Lionello, P., 2008. Climate change projections for the Mediterranean region. Glob.
Planet. Change 63, 90–104. https://doi.org/10.1016/J.GLOPLACHA.2007.09.005
Guisado-Pintado, E., Malvárez, G., Navas, F., Carrero, R., 2014. Spatial distribution of storm wave
energy dissipation for the assessment of beach morphodynamics. J. Coast. Res. 70, 259–265.
https://doi.org/10.2112/SI70-044.1
Günther, H., Hasselmann, S., Janssen, P.A.E.M., 1992. The WAM Modèle cycle 4. Hamburg,
Germany.
Hagerman, G., 2001. Southern New England wave energy resource potential. Proceedings of the
Building Energy, Boston, USA.
Hasselmann, K., 1974. On the spectral dissipation of ocean waves due to white capping. BoundaryLayer Meteorol. 6, 107–127. https://doi.org/10.1007/BF00232479
Hasselmann, K., Barnett, T.P., Bouws, E., Carlson, H., Cartwright, D.E., Enke, K., Ewing, J.A.,
Gienapp, H., Hasselmann, D.E., Kruseman, P., Meerburg, A., Müller, P., Olbers, D.J., Richter, K.,
