Références bibliographiques
187
Zaaboul, R., 2021. Climate Change Information for Regional Impact and for Risk
Assessment. Clim. Chang. 2021 Phys. Sci. Basis. Contrib. Work. Gr. I to Sixth Assess.
Rep. Intergov. Panel Clim. Chang. 1767–1926.
Rasmussen, E.K., Svenstrup Petersen, O., Thompson, J.R., Flower, R.J., Ahmed, M.H., 2009.
Hydrodynamic-ecological model analyses of the water quality of Lake Manzala nile delta,
northern Egypt. Hydrobiologia 622, 195–220. https://doi.org/10.1007/s10750-008-9683-7
Rasmussen, R.M., Heymsfield, A.J., 1987. Melting and Shedding of Graupel and Hail. Part II:
Sensitivity Study. J. Atmos. Sci. 44, 2764–2782. https://doi.org/10.1175/15200469(1987)044<2764:masoga>2.0.co;2
Reale, M., Cabos Narvaez, W.D., Cavicchia, L., Conte, D., Coppola, E., Flaounas, E., Giorgi,
F., Gualdi, S., Hochman, A., Li, L., Lionello, P., Podrascanin, Z., Salon, S., SanchezGomez, E., Scoccimarro, E., Sein, D. V., Somot, S., 2022. Future projections of
Mediterranean cyclone characteristics using the Med-CORDEX ensemble of coupled
regional
climate
system
models.
Clim.
Dyn.
58,
2501–2524.
https://doi.org/10.1007/s00382-021-06018-x
Refes, W., 2011. Contribution à la connaissance de la biodiversité des fonds chalutables de la
côte algérienne : les peuplements ichtyologiques des fonds chalutables du secteur oriental
de la côte algérienne. Sci. la mer. Annaba Univ.
Rivas, V., Garmendia, C., Rasilla, D., 2022. Analysis of Ocean Parameters as Sources of
Coastal Storm Damage: Regional Empirical Thresholds in Northern Spain. Climate 10.
https://doi.org/10.3390/CLI10060088
Rocha, M.V.L.M. Da, 2016. Observation et modélisation des ondes infra-gravitaires et des nonlinéarités des vagues en milieu littoral.
Rosales, P., Ocampo-Torres, F.J., Osuna, P., Monbaliu, J., Padilla-Hernández, R., 2008. Wavecurrent interaction in coastal waters: Effects on the bottom-shear stress. J. Mar. Syst. 71,
131–148. https://doi.org/10.1016/J.JMARSYS.2007.06.006
Rosati, J.D., Kraus, N.C., 1989. Development of a portable sand trap for use in the nearshore /.
Coast. Eng. Res. Cent. Station. U.S. Army Eng. Waterw. Exp.
https://doi.org/10.5962/BHL.TITLE.48242
Sabatier, F., Anthony, E.J., Héquette, A., Suanez, S., Musereau, J., Ruz, M.H., Régnauld, H.,
2009. Fonctionnement morphodynamique des systèmes plage/dune : Exemples sur les
côtes
françaises.
Geomorphol.
Reli.
Process.
Environ.
3–22.
https://doi.org/10.4000/geomorphologie.7461
Sabatier, P., 2009. Reconstitution des évènements climatiques extrêmes ( crues et tempêtes ) au
cours de l ’ Holocène dans le Golfe d ’ Aigues-Mortes ( Sud de la France ). Université de
Montpellier 2.
Salcedo-Castro, J., Da Silva, N.P., De Camargo, R., Marone, E., Sepúlveda, H.H., 2018.
Estimation of extreme wave height return periods from short-term interpolation of multimission satellite data: Application to the South Atlantic. Ocean Sci. 14, 911–921.
https://doi.org/10.5194/OS-14-911-2018
Salehi, M., Strom, K., 2012. Measurement of critical shear stress for mud mixtures in the San
Jacinto estuary under different wave and current combinations. Cont. Shelf Res. 47, 78–
92. https://doi.org/10.1016/J.CSR.2012.07.004
Salem Cherif, Y., Mezouar, K., Guerfi, M., Sallaye, M., Dahmani, A.E.A., 2019. Nearshore
hydrodynamics and sediment transport processes along the sandy coast of Boumerdes,
Algeria. Arab. J. Geosci. 12, 1–17. https://doi.org/10.1007/s12517-019-4981-0
Sallaye, M., Mezouar, K., Dahmani, A., Cherif, Y.S., 2022. Coastal vulnerability assessment
and identification of adaptation measures to climate change between Cape Matifou and
Cape
Djinet
Algeria.
Geo-Eco-Marina
2022,
181–193.
187
Zaaboul, R., 2021. Climate Change Information for Regional Impact and for Risk
Assessment. Clim. Chang. 2021 Phys. Sci. Basis. Contrib. Work. Gr. I to Sixth Assess.
Rep. Intergov. Panel Clim. Chang. 1767–1926.
Rasmussen, E.K., Svenstrup Petersen, O., Thompson, J.R., Flower, R.J., Ahmed, M.H., 2009.
Hydrodynamic-ecological model analyses of the water quality of Lake Manzala nile delta,
northern Egypt. Hydrobiologia 622, 195–220. https://doi.org/10.1007/s10750-008-9683-7
Rasmussen, R.M., Heymsfield, A.J., 1987. Melting and Shedding of Graupel and Hail. Part II:
Sensitivity Study. J. Atmos. Sci. 44, 2764–2782. https://doi.org/10.1175/15200469(1987)044<2764:masoga>2.0.co;2
Reale, M., Cabos Narvaez, W.D., Cavicchia, L., Conte, D., Coppola, E., Flaounas, E., Giorgi,
F., Gualdi, S., Hochman, A., Li, L., Lionello, P., Podrascanin, Z., Salon, S., SanchezGomez, E., Scoccimarro, E., Sein, D. V., Somot, S., 2022. Future projections of
Mediterranean cyclone characteristics using the Med-CORDEX ensemble of coupled
regional
climate
system
models.
Clim.
Dyn.
58,
2501–2524.
https://doi.org/10.1007/s00382-021-06018-x
Refes, W., 2011. Contribution à la connaissance de la biodiversité des fonds chalutables de la
côte algérienne : les peuplements ichtyologiques des fonds chalutables du secteur oriental
de la côte algérienne. Sci. la mer. Annaba Univ.
Rivas, V., Garmendia, C., Rasilla, D., 2022. Analysis of Ocean Parameters as Sources of
Coastal Storm Damage: Regional Empirical Thresholds in Northern Spain. Climate 10.
https://doi.org/10.3390/CLI10060088
Rocha, M.V.L.M. Da, 2016. Observation et modélisation des ondes infra-gravitaires et des nonlinéarités des vagues en milieu littoral.
Rosales, P., Ocampo-Torres, F.J., Osuna, P., Monbaliu, J., Padilla-Hernández, R., 2008. Wavecurrent interaction in coastal waters: Effects on the bottom-shear stress. J. Mar. Syst. 71,
131–148. https://doi.org/10.1016/J.JMARSYS.2007.06.006
Rosati, J.D., Kraus, N.C., 1989. Development of a portable sand trap for use in the nearshore /.
Coast. Eng. Res. Cent. Station. U.S. Army Eng. Waterw. Exp.
https://doi.org/10.5962/BHL.TITLE.48242
Sabatier, F., Anthony, E.J., Héquette, A., Suanez, S., Musereau, J., Ruz, M.H., Régnauld, H.,
2009. Fonctionnement morphodynamique des systèmes plage/dune : Exemples sur les
côtes
françaises.
Geomorphol.
Reli.
Process.
Environ.
3–22.
https://doi.org/10.4000/geomorphologie.7461
Sabatier, P., 2009. Reconstitution des évènements climatiques extrêmes ( crues et tempêtes ) au
cours de l ’ Holocène dans le Golfe d ’ Aigues-Mortes ( Sud de la France ). Université de
Montpellier 2.
Salcedo-Castro, J., Da Silva, N.P., De Camargo, R., Marone, E., Sepúlveda, H.H., 2018.
Estimation of extreme wave height return periods from short-term interpolation of multimission satellite data: Application to the South Atlantic. Ocean Sci. 14, 911–921.
https://doi.org/10.5194/OS-14-911-2018
Salehi, M., Strom, K., 2012. Measurement of critical shear stress for mud mixtures in the San
Jacinto estuary under different wave and current combinations. Cont. Shelf Res. 47, 78–
92. https://doi.org/10.1016/J.CSR.2012.07.004
Salem Cherif, Y., Mezouar, K., Guerfi, M., Sallaye, M., Dahmani, A.E.A., 2019. Nearshore
hydrodynamics and sediment transport processes along the sandy coast of Boumerdes,
Algeria. Arab. J. Geosci. 12, 1–17. https://doi.org/10.1007/s12517-019-4981-0
Sallaye, M., Mezouar, K., Dahmani, A., Cherif, Y.S., 2022. Coastal vulnerability assessment
and identification of adaptation measures to climate change between Cape Matifou and
Cape
Djinet
Algeria.
Geo-Eco-Marina
2022,
181–193.
