Références bibliographiques
177
Fernane, L., Matougui, R., Amarni, N., Belkessa, R., 2022. Variation in canyon morphology
and their relationship with tectonic: the example of the western Algerian margin. Arab. J.
Geosci. 2022 153 15, 1–19. https://doi.org/10.1007/S12517-022-09566-6
Ferrarin, C., Pantillon, F., Davolio, S., Bajo, M., Miglietta, M.M., Avolio, E., Carrió, D.S.,
Pytharoulis, I., Sanchez, C., Patlakas, P., González-Alemán, J.J., Flaounas, E., 2023.
Assessing the coastal hazard of medicane Ianos through ensemble modelling. EGUsphere
2023, 1–21. https://doi.org/10.5194/egusphere-2022-990
Ferreira, Ó., 2006. The role of storm groups in the erosion of sandy coasts. Earth Surf. Process.
Landforms 31, 1058–1060. https://doi.org/10.1002/ESP.1378
Ferreira, Ó., Almeida, L.P., Rodrigues, B., Matias, A., 2010. Determination of thresholds for
storm
impacts.
Av.
la
Geomorfol.
en
España
2008-2010.
URL
https://www.researchgate.net/publication/235951475_Determination_of_thresholds_for_
storm_impacts.
Fontoura, J.A.S., Almeida, L.E., Calliari, L.J., Cavalcanti, A.M., Möller, O., Romeu, M.A.R.,
Christófaro, B.R., 2013. Coastal Hydrodynamics and Longshore Transport of Sand on
Cassino Beach and on Mar Grosso Beach, Southern Brazil. J. Coast. Res. 289, 855–869.
https://doi.org/10.2112/jcoastres-d-11-00236.1
Forbes, D.L., Parkes, G.S., Manson, G.K., Ketch, L.A., 2004. Storms and shoreline retreat in
the
southern
Gulf
of
St.
Lawrence.
Mar.
Geol.
210,
169–204.
https://doi.org/10.1016/j.margeo.2004.05.009
Fredsøe, J., 1984. Turbulent Boundary Layer in Wave‐current Motion. J. Hydraul. Eng. 110,
1103–1120. https://doi.org/10.1061/(ASCE)0733-9429(1984)110:8(1103)
Fredsøe, J., Deigaard, R., 1992a. Mechanics of Coastal Sediment Transport, Advanced Series
on Ocean Engineering. WORLD SCIENTIFIC. https://doi.org/10.1142/1546
Fredsøe, J., Deigaard, R., 1992b. Mechanics of Coastal Sediment Transport, Advanced Series
on Ocean Engineering. WORLD SCIENTIFIC. https://doi.org/10.1142/1546
Furmańczyk, K.K., Dudzińska-Nowak, J., Furmańczyk, K.A., Paplińska-Swerpel, B.,
Brzezowska, N., 2012. Critical storm thresholds for the generation of significant dune
erosion at Dziwnow Spit, Poland. Geomorphology 143–144, 62–68.
https://doi.org/10.1016/J.GEOMORPH.2011.09.007
Gaertner, M.A., Jacob, D., Gil, V., Domínguez, M., Padorno, E., Sánchez, E., Castro, M., 2007.
Tropical cyclones over the Mediterranean Sea in climate change simulations. Geophys.
Res. Lett. 34, 14711. https://doi.org/10.1029/2007GL029977
Gencarelli, R., Tomasicchio, G.R., Veltri, P., 2007. Wave Height Long Term Prediction Based
on
the
Use
of
the
Spread
Parameter.
World
Sci.
701–713.
https://doi.org/10.1142/9789812709554_0060
George O’grady, J., 2018. NEARSHORE MODELLING OF LONGSHORE SEDIMENT
TRANSPORT IN THE APPLICATION TO CLIMATE CHANGE STUDIES AT
NINETY MILE BEACH, AUSTRALIA.
Gervais, M., 2012. Impacts morphologiques des surcotes et vagues de tempêtes sur le littoral
méditerranéen.
Gibeaut, J.C., Gutierrez, R., Hepner, T.L., 2002. Threshold Conditions for Episodic Beach
Erosion along the Southeast Texas Coast. Gulf Coast Assoc. Geol. Soc. Trans. 52.
Gilleland, E., Katz, R.W., 2016. ExtRemes 2.0: An extreme value analysis package in R. J. Stat.
Softw. 72. https://doi.org/10.18637/jss.v072.i08
Gilleland, E., Ribatet, M., Stephenson, A.G., 2013. A software review for extreme value
analysis. Extremes 16, 103–119. https://doi.org/10.1007/s10687-012-0155-0
Glangeaud, L., 1952. Histoire géologique de la province d’Alger.
Goda, Y., 2010. Reanalysis of regular and random breaking wave statistics. Coast. Eng. J. 52,
177
Fernane, L., Matougui, R., Amarni, N., Belkessa, R., 2022. Variation in canyon morphology
and their relationship with tectonic: the example of the western Algerian margin. Arab. J.
Geosci. 2022 153 15, 1–19. https://doi.org/10.1007/S12517-022-09566-6
Ferrarin, C., Pantillon, F., Davolio, S., Bajo, M., Miglietta, M.M., Avolio, E., Carrió, D.S.,
Pytharoulis, I., Sanchez, C., Patlakas, P., González-Alemán, J.J., Flaounas, E., 2023.
Assessing the coastal hazard of medicane Ianos through ensemble modelling. EGUsphere
2023, 1–21. https://doi.org/10.5194/egusphere-2022-990
Ferreira, Ó., 2006. The role of storm groups in the erosion of sandy coasts. Earth Surf. Process.
Landforms 31, 1058–1060. https://doi.org/10.1002/ESP.1378
Ferreira, Ó., Almeida, L.P., Rodrigues, B., Matias, A., 2010. Determination of thresholds for
storm
impacts.
Av.
la
Geomorfol.
en
España
2008-2010.
URL
https://www.researchgate.net/publication/235951475_Determination_of_thresholds_for_
storm_impacts.
Fontoura, J.A.S., Almeida, L.E., Calliari, L.J., Cavalcanti, A.M., Möller, O., Romeu, M.A.R.,
Christófaro, B.R., 2013. Coastal Hydrodynamics and Longshore Transport of Sand on
Cassino Beach and on Mar Grosso Beach, Southern Brazil. J. Coast. Res. 289, 855–869.
https://doi.org/10.2112/jcoastres-d-11-00236.1
Forbes, D.L., Parkes, G.S., Manson, G.K., Ketch, L.A., 2004. Storms and shoreline retreat in
the
southern
Gulf
of
St.
Lawrence.
Mar.
Geol.
210,
169–204.
https://doi.org/10.1016/j.margeo.2004.05.009
Fredsøe, J., 1984. Turbulent Boundary Layer in Wave‐current Motion. J. Hydraul. Eng. 110,
1103–1120. https://doi.org/10.1061/(ASCE)0733-9429(1984)110:8(1103)
Fredsøe, J., Deigaard, R., 1992a. Mechanics of Coastal Sediment Transport, Advanced Series
on Ocean Engineering. WORLD SCIENTIFIC. https://doi.org/10.1142/1546
Fredsøe, J., Deigaard, R., 1992b. Mechanics of Coastal Sediment Transport, Advanced Series
on Ocean Engineering. WORLD SCIENTIFIC. https://doi.org/10.1142/1546
Furmańczyk, K.K., Dudzińska-Nowak, J., Furmańczyk, K.A., Paplińska-Swerpel, B.,
Brzezowska, N., 2012. Critical storm thresholds for the generation of significant dune
erosion at Dziwnow Spit, Poland. Geomorphology 143–144, 62–68.
https://doi.org/10.1016/J.GEOMORPH.2011.09.007
Gaertner, M.A., Jacob, D., Gil, V., Domínguez, M., Padorno, E., Sánchez, E., Castro, M., 2007.
Tropical cyclones over the Mediterranean Sea in climate change simulations. Geophys.
Res. Lett. 34, 14711. https://doi.org/10.1029/2007GL029977
Gencarelli, R., Tomasicchio, G.R., Veltri, P., 2007. Wave Height Long Term Prediction Based
on
the
Use
of
the
Spread
Parameter.
World
Sci.
701–713.
https://doi.org/10.1142/9789812709554_0060
George O’grady, J., 2018. NEARSHORE MODELLING OF LONGSHORE SEDIMENT
TRANSPORT IN THE APPLICATION TO CLIMATE CHANGE STUDIES AT
NINETY MILE BEACH, AUSTRALIA.
Gervais, M., 2012. Impacts morphologiques des surcotes et vagues de tempêtes sur le littoral
méditerranéen.
Gibeaut, J.C., Gutierrez, R., Hepner, T.L., 2002. Threshold Conditions for Episodic Beach
Erosion along the Southeast Texas Coast. Gulf Coast Assoc. Geol. Soc. Trans. 52.
Gilleland, E., Katz, R.W., 2016. ExtRemes 2.0: An extreme value analysis package in R. J. Stat.
Softw. 72. https://doi.org/10.18637/jss.v072.i08
Gilleland, E., Ribatet, M., Stephenson, A.G., 2013. A software review for extreme value
analysis. Extremes 16, 103–119. https://doi.org/10.1007/s10687-012-0155-0
Glangeaud, L., 1952. Histoire géologique de la province d’Alger.
Goda, Y., 2010. Reanalysis of regular and random breaking wave statistics. Coast. Eng. J. 52,
