Références bibliographiques
183
Conf. Coast. Eng. ICCE 2000 276, 559–572. https://doi.org/10.1061/40549(276)44
Loureiro, C., Ferreira, Ó., Cooper, J.A.G., 2012. Extreme erosion on high-energy embayed
beaches: Influence of megarips and storm grouping. Geomorphology 139–140, 155–171.
https://doi.org/10.1016/j.geomorph.2011.10.013
Lozano, C., Candela, J., 1995. OCEANOLOGICA ACTA-VOL. 18-N°4 ~ The M 2 tide in the
Mediterranean Sea: dynamic analysis and data assimilation PRIM0-0 Ti de Semi-enclosed
basin mode Meditcrranean circulation Data assimilation, Oceanologica Acta. GauthierVillars.
Luijendijk, A., Hagenaars, G., Ranasinghe, R., Baart, F., Donchyts, G., Aarninkhof, S., 2018.
The State of the World’s Beaches. Sci. Reports 2018 81 8, 1–11.
https://doi.org/10.1038/s41598-018-24630-6
Lykke Andersen, T., Frigaard, P., Damsgaard, M.L., De Vos, L., 2011. Wave run-up on slender
piles in design conditions — Model tests and design rules for offshore wind. Coast. Eng.
58, 281–289. https://doi.org/10.1016/J.COASTALENG.2010.10.002
Mahabot, M.-M., 2016. SUIVI MORPHODYNAMIQUE DES PLAGES RECIFALES DE LA
REUNION EN CONTEXTE D’OBSERVATOIRE.
Malarkey, J., Davies, A.G., 2012. A simple procedure for calculating the mean and maximum
bed stress under wave and current conditions for rough turbulent flow based on method.
Comput. Geosci. 43, 101–107. https://doi.org/10.1016/J.CAGEO.2012.02.020
Manca, E., Pascucci, V., Deluca, M., Cossu, A., Andreucci, S., 2013. Shoreline evolution
related to coastal development of a managed beach in Alghero, Sardinia, Italy. Ocean
Coast. Manag. 85, 65–76. https://doi.org/10.1016/J.OCECOAMAN.2013.09.008
Maouche, S., 1987. Mecanismes hydrosedimentaires en baie d’alger (algerie) : approche
sedimentologique, geochimique et traitement statistique. theses.fr.
Maouche, S., Morhange, C., Meghraoui, M., 2009. Large boulder accumulation on the Algerian
coast
evidence
tsunami
events
in
the
western
Mediterranean.
https://doi.org/10.1016/j.margeo.2009.03.013
Martzikos, N.T., Prinos, P.E., Memos, C.D., Tsoukala, V.K., 2021. Statistical analysis of
Mediterranean
coastal
storms.
Oceanologia
63,
133–148.
https://doi.org/10.1016/J.OCEANO.2020.11.001
Masselink, G., Austin, M., Scott, T., Poate, T., Russell, P., 2014. Role of wave forcing, storms
and NAO in outer bar dynamics on a high-energy, macro-tidal beach. Geomorphology
226, 76–93. https://doi.org/10.1016/J.GEOMORPH.2014.07.025
Masselink, G., Black, K.P., 1995. Magnitude and cross-shore distribution of bed return flow
measured on natural beaches. Coast. Eng. 25, 165–190. https://doi.org/10.1016/03783839(95)00002-S
Masselink, G., Kroon, A., Davidson-Arnott, R.G.D., 2006. Morphodynamics of intertidal bars
in wave-dominated coastal settings - A review. Geomorphology 73, 33–49.
https://doi.org/10.1016/j.geomorph.2005.06.007
MATEV, 2014. Plan de gestion reghaia -algerie-. Ministère l’aménagement du Territ.
l’environnement la V.
Mathiesen, M., Goda, Y., Hawkes, P.J., Mansard, E., Martín, M.J., Peltier, E., Thompson, E.F.,
Van Vledder, G., 1994. Methodes conseillées pour 1’analyse des houles extreme. J.
Hydraul. Res. 32, 803–814. https://doi.org/10.1080/00221689409498691
Mauff, B.L., 2019. Les dynamiques hydro-sédimentaires du Goulet de Fromentine, de la Baie
de Bourgneuf et des plages adjacentes. undefined.
McHugh, C.M.G., Damuth, J.E., Mountain, G.S., 2002. Cenozoic mass-transport facies and
their correlation with relative sea-level change, New Jersey continental margin. Mar. Geol.
184, 295–334. https://doi.org/10.1016/S0025-3227(01)00240-7
Précédent

Evolution morpho-dynamique de la baie d’Alger: observation et modélisation hydrodynamique et sédimentaire - 204/232

Suivant