Références bibliographiques
181
https://doi.org/10.1007/S12601-022-00083-X
Kamphuis, J.W., 2010. Introduction to Coastal Engineering and Management, 2nd Edition.
Introd. to Coast. Eng. Manag. 2nd Ed. 1–525. https://doi.org/10.1142/7021
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
Kermani, S., Boutiba, M., Guendouz, M., Guettouche, M.S., Khelfani, D., 2016. Detection and
analysis of shoreline changes using geospatial tools and automatic computation: Case of
jijelian sandy coast (East Algeria). Ocean Coast. Manag. 132, 46–58.
https://doi.org/10.1016/J.OCECOAMAN.2016.08.010
Khalfani, D., Boutiba, M., 2019. Longshore Sediment Transport Rate Estimation near Harbor
under Low and High Wave-Energy Conditions: Fluorescent Tracers Experiment. J.
Waterw.
Port,
Coastal,
Ocean
Eng.
145,
04019015.
https://doi.org/10.1061/(asce)ww.1943-5460.0000517
Kleinhans, M.G., Rijn, L.C. van, 2002. Stochastic Prediction of Sediment Transport in SandGravel Bed Rivers. J. Hydraul. Eng. 128, 412–425. https://doi.org/10.1061/(ASCE)07339429(2002)128:4(412)
Klentzman, C.A., 2007. Using Principles of Momentum Conservation to Develop a Coastal
Storm Impulse Scale ( COSI ). Civ. Environ. Eng. Theses Diss. 431.
https://doi.org/10.25777/b63c-se03
Komar, P., 1998. Beach processes and sedimentation.
Komar, P.D., Miller, M.C., 1974. Sediment Threshold Under Oscillatory Waves. Coast. Eng.
Proc. 1, 756–775. https://doi.org/10.9753/icce.v14.44
Komen, G.J., Cavaleri, L., Donelan, M., Hasselmann, K., Hasselmann, S., Janssen, P.A.E.M.,
1994. Dynamics and Modelling of Ocean Waves, Dynamics and Modelling of Ocean
Waves. Cambridge University Press. https://doi.org/10.1017/cbo9780511628955
Kraus, N.C., 1987. Application of portable traps for obtaining point measurements of sediment
transport rates in the surf zone. J. Coast. Res. https://doi.org/10.2307/4297270
Kraus, N.C., Rosati, J.D., 1997. Interpretation of Shoreline-Position Data for Coastal
Engineering Analysis. https://doi.org/10.21236/ADA591274
Kriebel, D.L., Dean, R.G., 1993. Convolution Method for Time-Dependent Beach-Profile
Response.
J.
Waterw.
Port
Coast.
Ocean
Eng.
119,
204–226.
https://doi.org/10.1061/(ASCE)0733-950X(1993)119:2(204)
Kulmar, M., Lord, D., Sanderson, B., 2005. Future directions for wave data collection in New
South Wales. 17th Australas. Coast. Ocean Eng. Conf. 2005 10th Australas. Port Harb.
Conf. 2005, COASTS PORTS 2005 167–172.
Langbein, W.B., 1949. Annual floods and the partial-duration flood series. Eos, Trans. Am.
Geophys. Union 30, 879–881. https://doi.org/10.1029/TR030I006P00879
Larid, M., 2015. Feedback contribution to an integrated coastal management plan: Application
to the Reghaia’s coastal Wetland (Algiers province). Mediterranee 125, 141–152.
https://doi.org/10.4000/mediterranee.8091
Latapy, A., 2020. Influence des modifications morphologiques de l’avant-côte sur
l’hydrodynamisme et l’évolution du littoral des Hauts-de-France depuis le XIXe siècle.
http://www.theses.fr.
Le Hir, P., 2008. AIDE MEMOIRE DE DYNAMIQUE SEDIMENTAIRE.
Le Mauff, B., 2018. Dynamique hydro-sédimentaire du goulet de Fromentine et des plages
adjacentes jusqu’au Pays-de-Monts. http://www.theses.fr.
Le Roux, J.P., 2007. A simple method to determine breaker height and depth for different
deepwater wave height/length ratios and sea floor slopes. Coast. Eng. 54, 271–277.
181
https://doi.org/10.1007/S12601-022-00083-X
Kamphuis, J.W., 2010. Introduction to Coastal Engineering and Management, 2nd Edition.
Introd. to Coast. Eng. Manag. 2nd Ed. 1–525. https://doi.org/10.1142/7021
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
Kermani, S., Boutiba, M., Guendouz, M., Guettouche, M.S., Khelfani, D., 2016. Detection and
analysis of shoreline changes using geospatial tools and automatic computation: Case of
jijelian sandy coast (East Algeria). Ocean Coast. Manag. 132, 46–58.
https://doi.org/10.1016/J.OCECOAMAN.2016.08.010
Khalfani, D., Boutiba, M., 2019. Longshore Sediment Transport Rate Estimation near Harbor
under Low and High Wave-Energy Conditions: Fluorescent Tracers Experiment. J.
Waterw.
Port,
Coastal,
Ocean
Eng.
145,
04019015.
https://doi.org/10.1061/(asce)ww.1943-5460.0000517
Kleinhans, M.G., Rijn, L.C. van, 2002. Stochastic Prediction of Sediment Transport in SandGravel Bed Rivers. J. Hydraul. Eng. 128, 412–425. https://doi.org/10.1061/(ASCE)07339429(2002)128:4(412)
Klentzman, C.A., 2007. Using Principles of Momentum Conservation to Develop a Coastal
Storm Impulse Scale ( COSI ). Civ. Environ. Eng. Theses Diss. 431.
https://doi.org/10.25777/b63c-se03
Komar, P., 1998. Beach processes and sedimentation.
Komar, P.D., Miller, M.C., 1974. Sediment Threshold Under Oscillatory Waves. Coast. Eng.
Proc. 1, 756–775. https://doi.org/10.9753/icce.v14.44
Komen, G.J., Cavaleri, L., Donelan, M., Hasselmann, K., Hasselmann, S., Janssen, P.A.E.M.,
1994. Dynamics and Modelling of Ocean Waves, Dynamics and Modelling of Ocean
Waves. Cambridge University Press. https://doi.org/10.1017/cbo9780511628955
Kraus, N.C., 1987. Application of portable traps for obtaining point measurements of sediment
transport rates in the surf zone. J. Coast. Res. https://doi.org/10.2307/4297270
Kraus, N.C., Rosati, J.D., 1997. Interpretation of Shoreline-Position Data for Coastal
Engineering Analysis. https://doi.org/10.21236/ADA591274
Kriebel, D.L., Dean, R.G., 1993. Convolution Method for Time-Dependent Beach-Profile
Response.
J.
Waterw.
Port
Coast.
Ocean
Eng.
119,
204–226.
https://doi.org/10.1061/(ASCE)0733-950X(1993)119:2(204)
Kulmar, M., Lord, D., Sanderson, B., 2005. Future directions for wave data collection in New
South Wales. 17th Australas. Coast. Ocean Eng. Conf. 2005 10th Australas. Port Harb.
Conf. 2005, COASTS PORTS 2005 167–172.
Langbein, W.B., 1949. Annual floods and the partial-duration flood series. Eos, Trans. Am.
Geophys. Union 30, 879–881. https://doi.org/10.1029/TR030I006P00879
Larid, M., 2015. Feedback contribution to an integrated coastal management plan: Application
to the Reghaia’s coastal Wetland (Algiers province). Mediterranee 125, 141–152.
https://doi.org/10.4000/mediterranee.8091
Latapy, A., 2020. Influence des modifications morphologiques de l’avant-côte sur
l’hydrodynamisme et l’évolution du littoral des Hauts-de-France depuis le XIXe siècle.
http://www.theses.fr.
Le Hir, P., 2008. AIDE MEMOIRE DE DYNAMIQUE SEDIMENTAIRE.
Le Mauff, B., 2018. Dynamique hydro-sédimentaire du goulet de Fromentine et des plages
adjacentes jusqu’au Pays-de-Monts. http://www.theses.fr.
Le Roux, J.P., 2007. A simple method to determine breaker height and depth for different
deepwater wave height/length ratios and sea floor slopes. Coast. Eng. 54, 271–277.
