218
80. Djigo Kabani A (2001) etijde de la sismicite de l'offshore de tenes a partir de l'rnterpretation de deux
sections sismiques.
81. Djouder F, Boutiba M (2017) Vulnerability assessment of coastal areas to sea level rise from the
physical and socioeconomic parameters: case of the Gulf Coast of Bejaia, Algeria Arabian Journal of
Geosciences 10 doi:10.1007/s12517-017-3062-5
82. Dolan R, Fenster MS, Holme SJ (1991) Temporal analysis of shoreline recession and accretion
Journal of Coastal Research:723-744
83. Dolan R, Hayden B, Rea C, Heywood J (1979) Shoreline erosion rates along the middle Atlantic
coast of the United States Geology 7:602-606
84. Domínguez L, Anfuso G, Gracia F (2005) Vulnerability assessment of a retreating coast in SW Spain
Environmental Geology 47:1037-1044 doi:10.1007/s00254-005-1235-0
85. Domzig A (2006) Déformation active et récente, et structuration tectono-sédimentaire de la marge
sous-marine algérienne. Brest
86. Durand Delga, M., (1969). Mise au point sur la structure de l’Algérie septentrionale, Bull. Serv.
Carte Géol. Algérie, 39, 89–131. 49
87. Durand P (1998) Cinématique d'un littoral sableux à partir de photographies aériennes et de cartes
topographiques. Exemple du littoral d'Argelès-Plage à Saint-Cyprien (Roussillon,
France)/Kinematics of a sandy shoreline deduced from the analysis of aerial photographs and
topographic maps. Example of the beach extending from Argelès-Plage to Saint-Cyprien (Roussillon,
France) Géomorphologie: relief, processus, environnement 4:155-166
88. Durand-Delga M, Rossi P, Olivier P, Puglisi D (2000) Situation structurale et nature ophiolitique de
roches basiques jurassiques associées aux flyschs maghrébins du Rif (Maroc) et de Sicile (Italie)
Comptes Rendus de l'Académie des Sciences-Series IIA-Earth and Planetary Science 331:29-38
89. Eckstein D, Künzel V, Schäfer L, Winges M (2019) Global climate risk index 2020 Germanwatch
Available at: https://germanwatch org/sites/germanwatch org/files/20-2-01e% 20Global 20
90. Eldeberky Y, Battjes J (1995) Nonlinear coupling in waves propagating over a bar. In: Coastal
Engineering 1994. pp 157-167
91. Emery K, Aubrey DG (1991) Impact of sea-level/land-level change on society. In: Sea Levels, Land
Levels, and Tide Gauges. Springer, pp 167-174
92. Engelund F, Fredsøe J (1976) A sediment transport model for straight alluvial channels Hydrology
Research 7:293-306
93. Engelund F, Hansen E (1967) A monograph on sediment transport Technisk Forlag, Copenhagen,
Denmark
94. Engledow H, Bolton J (1994) Seaweed α-diversity within the lower eulittoral zone in Namibia: the
effects of wave action, sand inundation, mussels and limpets Botanica Marina 37:267-276
95. Fletcher C, Rooney J, Barbee M, Lim S-C, Richmond B (2003) Mapping shoreline change using
digital orthophotogrammetry on Maui, Hawaii Journal of Coastal Research:106-124
96. Fredsøe J, Deigaard R (1992) Mechanics of coastal sediment transport vol 3. World Scientific,
97. Gaki-Papanastassiou K, Karymbalis E, Poulos SE, Seni A, Zouva C (2010) Coastal vulnerability
assessment to sea-level rise bαsed on geomorphological and oceanographical parameters: the case of
Argolikos Gulf, Peloponnese, Greece Hellenic Journal of Geosciences 45:109
98. Galvin Jr CJ (1968) Breaker type classification on three laboratory beaches Journal of geophysical
research 73:3651-3659
99. Goda, Y. (2004). Spread parameter of extreme wave height distribution for performance-based
design of maritime structures. Journal of waterway, port, coastal, and ocean engineering, 130(1), 2938.
100. Godfrin M, Napoli A, Hagel Z (2015) Méthodologie d’élaboration d’une cartographie de l’exposition
au risque de submersion marine du littoral des Alpes Maritimes
101. Gomes ER, Mulligan RP, Brodie KL, McNinch JE (2016) Bathymetric control on the spatial
distribution of wave breaking in the surf zone of a natural beach Coastal Engineering 116:180-194
102. Gornitz V, White TW, Cushman RM (1991) Vulnerability of the US to future sea level rise. Oak
Ridge National Lab., TN (USA). doi:www.osti.gov/servlets/purl/5875484
103. Gornitz VM, Daniels RC, White TW, Birdwell KR (1994) The development of a coastal risk
assessment database: vulnerability to sea-level rise in the US Southeast Journal of Coastal
Research:327-338 doi:www.jstor.org/stable/25735608
104. Gourlay MR, Meulen T (1968) Beach and dune erosion tests (I) M0935
105. Gregory, G. L., Warren, L. S., Davis, D. D., Andreae, M. O., Bandy, A. R., Ferek, R. J., . . . Cooper,
D. J. (1993). An intercomparison of instrumentation for tropospheric measurements of dimethyl
sulfide: Aircraft results for concentrations at the parts‐per‐trillion level. Journal of Geophysical
Research: Atmospheres, 98(D12), 23373-23388.
80. Djigo Kabani A (2001) etijde de la sismicite de l'offshore de tenes a partir de l'rnterpretation de deux
sections sismiques.
81. Djouder F, Boutiba M (2017) Vulnerability assessment of coastal areas to sea level rise from the
physical and socioeconomic parameters: case of the Gulf Coast of Bejaia, Algeria Arabian Journal of
Geosciences 10 doi:10.1007/s12517-017-3062-5
82. Dolan R, Fenster MS, Holme SJ (1991) Temporal analysis of shoreline recession and accretion
Journal of Coastal Research:723-744
83. Dolan R, Hayden B, Rea C, Heywood J (1979) Shoreline erosion rates along the middle Atlantic
coast of the United States Geology 7:602-606
84. Domínguez L, Anfuso G, Gracia F (2005) Vulnerability assessment of a retreating coast in SW Spain
Environmental Geology 47:1037-1044 doi:10.1007/s00254-005-1235-0
85. Domzig A (2006) Déformation active et récente, et structuration tectono-sédimentaire de la marge
sous-marine algérienne. Brest
86. Durand Delga, M., (1969). Mise au point sur la structure de l’Algérie septentrionale, Bull. Serv.
Carte Géol. Algérie, 39, 89–131. 49
87. Durand P (1998) Cinématique d'un littoral sableux à partir de photographies aériennes et de cartes
topographiques. Exemple du littoral d'Argelès-Plage à Saint-Cyprien (Roussillon,
France)/Kinematics of a sandy shoreline deduced from the analysis of aerial photographs and
topographic maps. Example of the beach extending from Argelès-Plage to Saint-Cyprien (Roussillon,
France) Géomorphologie: relief, processus, environnement 4:155-166
88. Durand-Delga M, Rossi P, Olivier P, Puglisi D (2000) Situation structurale et nature ophiolitique de
roches basiques jurassiques associées aux flyschs maghrébins du Rif (Maroc) et de Sicile (Italie)
Comptes Rendus de l'Académie des Sciences-Series IIA-Earth and Planetary Science 331:29-38
89. Eckstein D, Künzel V, Schäfer L, Winges M (2019) Global climate risk index 2020 Germanwatch
Available at: https://germanwatch org/sites/germanwatch org/files/20-2-01e% 20Global 20
90. Eldeberky Y, Battjes J (1995) Nonlinear coupling in waves propagating over a bar. In: Coastal
Engineering 1994. pp 157-167
91. Emery K, Aubrey DG (1991) Impact of sea-level/land-level change on society. In: Sea Levels, Land
Levels, and Tide Gauges. Springer, pp 167-174
92. Engelund F, Fredsøe J (1976) A sediment transport model for straight alluvial channels Hydrology
Research 7:293-306
93. Engelund F, Hansen E (1967) A monograph on sediment transport Technisk Forlag, Copenhagen,
Denmark
94. Engledow H, Bolton J (1994) Seaweed α-diversity within the lower eulittoral zone in Namibia: the
effects of wave action, sand inundation, mussels and limpets Botanica Marina 37:267-276
95. Fletcher C, Rooney J, Barbee M, Lim S-C, Richmond B (2003) Mapping shoreline change using
digital orthophotogrammetry on Maui, Hawaii Journal of Coastal Research:106-124
96. Fredsøe J, Deigaard R (1992) Mechanics of coastal sediment transport vol 3. World Scientific,
97. Gaki-Papanastassiou K, Karymbalis E, Poulos SE, Seni A, Zouva C (2010) Coastal vulnerability
assessment to sea-level rise bαsed on geomorphological and oceanographical parameters: the case of
Argolikos Gulf, Peloponnese, Greece Hellenic Journal of Geosciences 45:109
98. Galvin Jr CJ (1968) Breaker type classification on three laboratory beaches Journal of geophysical
research 73:3651-3659
99. Goda, Y. (2004). Spread parameter of extreme wave height distribution for performance-based
design of maritime structures. Journal of waterway, port, coastal, and ocean engineering, 130(1), 2938.
100. Godfrin M, Napoli A, Hagel Z (2015) Méthodologie d’élaboration d’une cartographie de l’exposition
au risque de submersion marine du littoral des Alpes Maritimes
101. Gomes ER, Mulligan RP, Brodie KL, McNinch JE (2016) Bathymetric control on the spatial
distribution of wave breaking in the surf zone of a natural beach Coastal Engineering 116:180-194
102. Gornitz V, White TW, Cushman RM (1991) Vulnerability of the US to future sea level rise. Oak
Ridge National Lab., TN (USA). doi:www.osti.gov/servlets/purl/5875484
103. Gornitz VM, Daniels RC, White TW, Birdwell KR (1994) The development of a coastal risk
assessment database: vulnerability to sea-level rise in the US Southeast Journal of Coastal
Research:327-338 doi:www.jstor.org/stable/25735608
104. Gourlay MR, Meulen T (1968) Beach and dune erosion tests (I) M0935
105. Gregory, G. L., Warren, L. S., Davis, D. D., Andreae, M. O., Bandy, A. R., Ferek, R. J., . . . Cooper,
D. J. (1993). An intercomparison of instrumentation for tropospheric measurements of dimethyl
sulfide: Aircraft results for concentrations at the parts‐per‐trillion level. Journal of Geophysical
Research: Atmospheres, 98(D12), 23373-23388.
