Références bibliographiques
188
https://doi.org/10.5281/ZENODO.7493268
Sallaye, M., Mezouar, K., Salem Cherif, Y., Dahmani, A.E.A., 2018. Morphological evolution
of center Boumerdes in Zemmouri Bay (Algeria) from 1922 to 2017. Arab. J. Geosci. 11,
1–8. https://doi.org/10.1007/s12517-018-3950-3
Sarpkaya, T.S., 2012. Wave forces on offshore structures. Wave Forces Offshore Struct.
9780521896, 1–322. https://doi.org/10.1017/CBO9781139195898
Sartini, L., Besio, G., Cassola, F., 2017. Spatio-temporal modelling of extreme wave heights in
the
Mediterranean
Sea.
Ocean
Model.
117,
52–69.
https://doi.org/10.1016/J.OCEMOD.2017.07.001
Schwendeman, M., Thomson, J., Gemmrich, J.R., 2014. Wave breaking dissipation in a Young
Wind Sea. J. Phys. Oceanogr. 44, 104–127. https://doi.org/10.1175/JPO-D-12-0237.1
Seelam, J.K., Guard, P.A., Baldock, T.E., 2011. Measurement and modeling of bed shear stress
under
solitary
waves.
Coast.
Eng.
58,
937–947.
https://doi.org/10.1016/J.COASTALENG.2011.05.012
Sevruk, B., Geiger, H., 1981. Selection of distribution types for extremes of precipitation. Sel.
Distrib. types Extrem. precipitation.
Seymour, R.J., Strange, R.R., Cayan, D.R., Nathan, R.A., 1984. Influence of El Ninos on
California’S Wave Climate. Coast. Eng. Proc. 1, 39. https://doi.org/10.9753/icce.v19.39
Shi, B., Wang, Y.P., Yang, Y., Li, M., Li, P., Ni, W., Gao, J., 2015. Determination of Critical
Shear Stresses for Erosion and Deposition Based on In Situ Measurements of Currents and
Waves over an Intertidal Mudflat. J. Coast. Res. 31, 1344–1356.
https://doi.org/10.2112/JCOASTRES-D-14-00239.1
Shi, B.W., Yang, S.L., Wang, Y.P., Bouma, T.J., Zhu, Q., 2012. Relating accretion and erosion
at an exposed tidal wetland to the bottom shear stress of combined current–wave action.
Geomorphology 138, 380–389. https://doi.org/10.1016/J.GEOMORPH.2011.10.004
Shoshany, M., Degani, A., 1992. Shoreline detection by digital image processing of aerial
photography. J. Coast. Res. URL https://www.jstor.org/stable/4297949.
Shvidchenko, A.B., Pender, G., Hoey, T.B., 2001. Critical shear stress for incipient motion of
sand/gravel
streambeds.
Water
Resour.
Res.
37,
2273–2283.
https://doi.org/10.1029/2000WR000036
Simons, R.K., Canali, G.E., Anderson-Newton, G.T., Cotton, G.K., 2000. Sediment transport
modeling: Calibration, verification, and evaluation. Soil Sediment Contam. 9, 261–289.
https://doi.org/10.1080/10588330091134239
Small, C., Nicholls, R.J., 2003. A global analysis of human settlement in coastal zones.
Smith, G.L., Zarillo, G.A., 1990. Calculating long-term shoreline recession rates using aerial
photographic and beach profiling techniques. J. Coast. Res. 6, 111–120.
Smith, J.A., 2006. Wave-current interactions in finite depth. J. Phys. Oceanogr. 36, 1403–1419.
https://doi.org/10.1175/JPO2911.1
Soares, C.G., Scotto, M.G., 2004. Application of the r largest-order statistics for long-term
predictions of significant wave height. Coast. Eng. 5–6, 387–394.
https://doi.org/10.1016/J.COASTALENG.2004.04.003
Soulsby, R., 1997. Dynamics of Marine Sands (HR Wallingford Titles): A Manual for Practical
Applications p137.
Soulsby, R.L., Clarke, S., 2005. Bed Shear-stresses Under Combined Waves and Currents on
Smooth and Rough Beds. Hydraul. Res. Rep. 1905, TR 137.
Soulsby, R.L., Whitehouse, R.J.., 1997. Threshold of sediment motion in coastal environments.
Proc. Pacific Coasts Ports 1997 Conf. 1, 149–154.
Splinter, K.D., Davidson, M.A., Golshani, A., Tomlinson, R., 2012. Climate controls on
longshore
sediment
transport.
Cont.
Shelf
Res.
48,
146–156.
188
https://doi.org/10.5281/ZENODO.7493268
Sallaye, M., Mezouar, K., Salem Cherif, Y., Dahmani, A.E.A., 2018. Morphological evolution
of center Boumerdes in Zemmouri Bay (Algeria) from 1922 to 2017. Arab. J. Geosci. 11,
1–8. https://doi.org/10.1007/s12517-018-3950-3
Sarpkaya, T.S., 2012. Wave forces on offshore structures. Wave Forces Offshore Struct.
9780521896, 1–322. https://doi.org/10.1017/CBO9781139195898
Sartini, L., Besio, G., Cassola, F., 2017. Spatio-temporal modelling of extreme wave heights in
the
Mediterranean
Sea.
Ocean
Model.
117,
52–69.
https://doi.org/10.1016/J.OCEMOD.2017.07.001
Schwendeman, M., Thomson, J., Gemmrich, J.R., 2014. Wave breaking dissipation in a Young
Wind Sea. J. Phys. Oceanogr. 44, 104–127. https://doi.org/10.1175/JPO-D-12-0237.1
Seelam, J.K., Guard, P.A., Baldock, T.E., 2011. Measurement and modeling of bed shear stress
under
solitary
waves.
Coast.
Eng.
58,
937–947.
https://doi.org/10.1016/J.COASTALENG.2011.05.012
Sevruk, B., Geiger, H., 1981. Selection of distribution types for extremes of precipitation. Sel.
Distrib. types Extrem. precipitation.
Seymour, R.J., Strange, R.R., Cayan, D.R., Nathan, R.A., 1984. Influence of El Ninos on
California’S Wave Climate. Coast. Eng. Proc. 1, 39. https://doi.org/10.9753/icce.v19.39
Shi, B., Wang, Y.P., Yang, Y., Li, M., Li, P., Ni, W., Gao, J., 2015. Determination of Critical
Shear Stresses for Erosion and Deposition Based on In Situ Measurements of Currents and
Waves over an Intertidal Mudflat. J. Coast. Res. 31, 1344–1356.
https://doi.org/10.2112/JCOASTRES-D-14-00239.1
Shi, B.W., Yang, S.L., Wang, Y.P., Bouma, T.J., Zhu, Q., 2012. Relating accretion and erosion
at an exposed tidal wetland to the bottom shear stress of combined current–wave action.
Geomorphology 138, 380–389. https://doi.org/10.1016/J.GEOMORPH.2011.10.004
Shoshany, M., Degani, A., 1992. Shoreline detection by digital image processing of aerial
photography. J. Coast. Res. URL https://www.jstor.org/stable/4297949.
Shvidchenko, A.B., Pender, G., Hoey, T.B., 2001. Critical shear stress for incipient motion of
sand/gravel
streambeds.
Water
Resour.
Res.
37,
2273–2283.
https://doi.org/10.1029/2000WR000036
Simons, R.K., Canali, G.E., Anderson-Newton, G.T., Cotton, G.K., 2000. Sediment transport
modeling: Calibration, verification, and evaluation. Soil Sediment Contam. 9, 261–289.
https://doi.org/10.1080/10588330091134239
Small, C., Nicholls, R.J., 2003. A global analysis of human settlement in coastal zones.
Smith, G.L., Zarillo, G.A., 1990. Calculating long-term shoreline recession rates using aerial
photographic and beach profiling techniques. J. Coast. Res. 6, 111–120.
Smith, J.A., 2006. Wave-current interactions in finite depth. J. Phys. Oceanogr. 36, 1403–1419.
https://doi.org/10.1175/JPO2911.1
Soares, C.G., Scotto, M.G., 2004. Application of the r largest-order statistics for long-term
predictions of significant wave height. Coast. Eng. 5–6, 387–394.
https://doi.org/10.1016/J.COASTALENG.2004.04.003
Soulsby, R., 1997. Dynamics of Marine Sands (HR Wallingford Titles): A Manual for Practical
Applications p137.
Soulsby, R.L., Clarke, S., 2005. Bed Shear-stresses Under Combined Waves and Currents on
Smooth and Rough Beds. Hydraul. Res. Rep. 1905, TR 137.
Soulsby, R.L., Whitehouse, R.J.., 1997. Threshold of sediment motion in coastal environments.
Proc. Pacific Coasts Ports 1997 Conf. 1, 149–154.
Splinter, K.D., Davidson, M.A., Golshani, A., Tomlinson, R., 2012. Climate controls on
longshore
sediment
transport.
Cont.
Shelf
Res.
48,
146–156.
