137
Janssen, P.A.E.M., Janssen, P.A.E.M., 1989. Wave-Induced Stress and the Drag of Air Flow over
Sea
Waves.
J.
Phys.
Oceanogr.
19,
745–754.
https://doi.org/10.1175/15200485(1989)019<0745:WISATD>2.0.CO;2
Jimenez, J.A., Balouin, Y., Ciavola, P., Armaroli, C., Bosom, E., Gervais, M., 2009. Geomorphic
coastal vulnerability to storms in microtidal fetch-limited environments: application to NW
Mediterranean & N Adriatic Seas. J. Coast. Res. SI56, 1641–1645.
Jiménez, J.A., Sancho-García, A., Bosom, E., Valdemoro, H.I., Guillén, J., 2012. Storm-induced
damages along the Catalan coast (NW Mediterranean) during the period 1958–2008. Geomorphology
143–144, 24–33. https://doi.org/10.1016/J.GEOMORPH.2011.07.034
Joubert, J.R., 2008. An investigation of the wave energy resource on the South African Coast,
focusing on the spatial distribution of the South West coast.
Kasiulis, E., Kofoed, J., Povilaitis, A., Radzevičius, A., Kasiulis, E., Kofoed, J.P., Povilaitis, A.,
Radzevičius, A., 2017. Spatial Distribution of the Baltic Sea Near-Shore Wave Power Potential along
the Coast of Klaipėda, Lithuania. Energies 10, 2170. https://doi.org/10.3390/en10122170
Kateb, K., 2003. Changements démographiques et organisation familiale en Algérie. Maghreb
Machrek 95–110.
Katz, O., Mushkin, A., 2013. Characteristics of sea-cliff erosion induced by a strong winter storm
in the eastern Mediterranean. Quat. Res. 80, 20–32. https://doi.org/10.1016/j.yqres.2013.04.004
Kofoed, J.P., Frigaard, P., Friis-Madsen, E., Sørensen, H.C., 2006. Prototype testing of the wave
energy
converter
wave
dragon.
Renew.
Energy
31,
181–189.
https://doi.org/10.1016/J.RENENE.2005.09.005
Komen, G.J., Cavaleri, L., Donelan, M., Hasselmann, K., Hasselmann, S., Janssen, P.A.E.M., 1994.
Dynamics and Modelling of Ocean Waves, Cambridge University Press. Cambridge University Press.
Komen, G.J., Hasselmann, K., Hasselmann, K., 1984. On the Existence of a Fully Developed WindSea Spectrum. J. Phys. Oceanogr. 14, 1271–1285. https://doi.org/10.1175/15200485(1984)014<1271:OTEOAF>2.0.CO;2
Kutupoğlu, V., Çakmak, R.E., Akpınar, A., van Vledder, G.P., 2018. Setup and evaluation of a
SWAN wind wave modèle for the Sea of Marmara. Ocean Eng. 165, 450–464.
https://doi.org/10.1016/J.OCEANENG.2018.07.053
Larras J, 1991. Physique de la houle et des lames, Edf, numéro 36. ed. Paris.
Lavidas, G., Venugopal, V., 2017. A 35 year high-resolution wave atlas for nearshore energy
production and economics at the Aegean Sea. Renew. Energy 103, 401–417.
https://doi.org/10.1016/J.RENENE.2016.11.055
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