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using airborne laser altimetry. Journal of Coastal Research 20, 884–892.
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nearshore zone. Continental Shelf Research 18, 585–605.
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Zemmouri: modélisation hydro-sédimentaire et cinématique du trait de côte. (PhD
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coastal zones to multiple hazards (Doctoral Thesis). Università Ca’ Foscari Venezia.
Nazeer, M., Waqas, M., Shahzad, M.I., Zia, I., Wu, W., 2020. Coastline Vulnerability
Assessment through Landsat and Cubesats in a Coastal Mega City. Remote Sensing
12, 749. https://doi.org/10.3390/rs12050749
Northrop, P.J., Attalides, N., Jonathan, P., 2017. Cross-Validatory Extreme Value Threshold
Selection and Uncertainty with Application to Ocean Storm Severity. Journal of the
Royal Statistical Society Series C: Applied Statistics 66, 93–120.
https://doi.org/10.1111/rssc.12159
Parker, B.B., 2003. The difficulties in measuring a consistently defined shoreline—the
problem of vertical referencing. Journal of Coastal Research 44–56.
Paskoff, R., 1970. L’érosion des côtes, 1re édition : 2e trimestre 1981. ed.
Pickands, J., 1975. Statistical inference using extreme order statistics. the Annals of Statistics
119–131.
Quadrado, G.P., Dillenburg, S.R., Goulart, E.S., Barboza, E.G., 2021. Historical and
geological assessment of shoreline changes at an urbanized embayed sandy system in
Garopaba, Southern Brazil. Regional Studies in Marine Science 42, 101622.
Rabehi, W., Guerfi, M., Mahi, H., 2019. La baie d’Alger, un espace côtier prisé, entre
pressions d’urbanisation et gouvernance territoriale. Geo-Eco-Marina 25, 113–130.
https://doi.org/10.5281/zenodo.3609744
Rajasree, B.R., Deo, M.C., Sheela Nair, L., 2016. Effect of climate change on shoreline shifts
at a straight and continuous coast. Estuarine, Coastal and Shelf Science 183, 221–234.
https://doi.org/10.1016/j.ecss.2016.10.034
Rami, A., Nechimi, M., Haddad, M., Maârouf, S., Benkouider, T., 2016. Traitement du signal
marégraphique par analyse harmonique pour la détermination d’une référence
altimétrique pour l’Algérie.
Rangel-Buitrago, N.G., Anfuso, G., Williams, A.T., 2015. Coastal erosion along the
Caribbean coast of Colombia: Magnitudes, causes and management. Ocean & Coastal
Management 114, 129–144. https://doi.org/10.1016/j.ocecoaman.2015.06.024
Reeve, D.E., Horrillo-Caraballo, J., Karunarathna, H., Pan, S., 2019. A new perspective on
meso-scale shoreline dynamics through data-driven analysis. Geomorphology 341,
169–191. https://doi.org/10.1016/j.geomorph.2019.04.033
Remya, P.G., Kumar, R., Basu, S., Sarkar, A., 2012. Wave hindcast experiments in the Indian
Ocean using MIKE 21 SW model. J Earth Syst Sci 121, 385–392.
https://doi.org/10.1007/s12040-012-0169-7
Rigoni m, 2003. Erosion du littoral de la mer Méditerranée : les conséquences pour le
tourisme [WWW Document]. URL http://www.assembly.coe.int/nw/xml/XRef/X2HXref-ViewHTML.asp?FileID=10340&lang=fr (accessed 3.14.21).
Robertson, W., Whitman, D., Zhang, K., Leatherman, S.P., 2004. Mapping shoreline position
using airborne laser altimetry. Journal of Coastal Research 20, 884–892.
Ruessink, B.G., 1998. The temporal and spatial variability of infragravity energy in a barred
nearshore zone. Continental Shelf Research 18, 585–605.
Sallaye M, 2021. Processus mis en jeu dans l’évolution morpho-dynamique de la baie de
Zemmouri: modélisation hydro-sédimentaire et cinématique du trait de côte. (PhD
Thesis). Ecole nationale supérieure des sciences de la mer et de l’aménagement du ….
Santos, C.A.G., do Nascimento, T.V.M., Mishra, M., da Silva, R.M., 2021. Analysis of longand short-term shoreline change dynamics: A study case of João Pessoa city in Brazil.
Science of the Total Environment 769, 144889.
Satta, 2014. An index-based method to assess vulnerabilities and risks of Mediterranean
coastal zones to multiple hazards (Doctoral Thesis). Università Ca’ Foscari Venezia.
