Références bibliographiques
198
Références bibliographiques
Achab, M., O. Ferreira, and J. A. Dias (2014), Evaluation of sedimentological and
morphological changes induced by the rehabilitation of sandy beaches from the Ria Formosa
Barrier Island system (South Portugal), Thalassas, 30(2), 21-31.
Agardy, T. (1997), Marine protected areas and ocean conservation, Austin, Academic Press,
1997, 244 p.
Alfieri, L., P. Salamon, A. Bianchi, J. Neal, P. Bates, and L. Feyen (2014), Advances in
pan‐European flood hazard mapping, Hydrological processes, 28(13), 4067-4077.
Amarni, N., Fernane, L., Naili, M., Lounas,R., Belkessa, R (2020), Mapping of the
vulnerability to marine intrusion “in coastal Cherchell aquifer, Central Algeria” using the
GALDIT method, Groundwater for Sustainable Development.11. 100481.
Ambraseys, N., and J. Vogt (1988), Material for the investigation of the seismicity of the
region of Algiers, European Earthquake Engineering, 3, 16-29.
Andersen, L., and E. Gosk (1987), Applicability of vulnerability maps. W: The vulnerability
of soil and Groundwater pollutions (red. W. Van Duijvenbooden, HG van Waegeningh): 321–
332, paper presented at Proceedings of International Conference, TNO.
Appeaning Appeaning Addo, K., L. Larbi, B. Amisigo, and P. K. Ofori-Danson (2011),
Impacts of coastal inundation due to climate change in a cluster of urban coastal communities
in Ghana, West Africa, Remote Sensing, 3(9), 2029-2050.
Araújo, I., J. Dias, and D. Pugh (2008), Model simulations of tidal changes in a coastal
lagoon, the Ria de Aveiro (Portugal), Continental Shelf Research, 28(8), 1010-1025.
Arnone, R. A., D. A. Wiesenburg, and K. D. Saunders (1990), The origin and characteristics
of the Algerian Current, Journal of Geophysical Research: Oceans, 95(C2), 1587-1598.
Ayadi, K., M. Boutiba, F. Sabatier, and M. S. Guettouche (2016), Detection and analysis of
historical variations in the shoreline, using digital aerial photos, satellite images, and
topographic surveys DGPS: case of the Bejaia bay (East Algeria), Arabian Journal of
Geosciences, 9(1), 26.
Bagdanavičiūtė, I., L. Kelpšaitė, and T. Soomere (2015), Multi-criteria evaluation approach to
coastal vulnerability index development in micro-tidal low-lying areas, Ocean & Coastal
Management, 104, 124-135.
Ballesteros, C., J. A. Jiménez, and C. Viavattene (2018), A multi-component flood risk
assessment in the Maresme coast (NW Mediterranean), Natural Hazards, 90(1), 265-292.
Batchi, M., A. Karkouri, M. El Maaqili, and I. Fenijiro (2014), Cartographie de la
vulnérabilité à l’intrusion marine de l’aquifère Côtier de Mnasra (littoral du Gharb, Maroc–
Nord-Occidental), Mar Sci Coast Res J, 11.
Batchi, M., J. A. Karkouri, I. Fenjiro, and M. E. Maaqili (2017), Étude comparative de deux
modèles (DRASTIC et SI) pour l'évaluation de la sensibilité de la nappe phréatique de Mnasra
198
Références bibliographiques
Achab, M., O. Ferreira, and J. A. Dias (2014), Evaluation of sedimentological and
morphological changes induced by the rehabilitation of sandy beaches from the Ria Formosa
Barrier Island system (South Portugal), Thalassas, 30(2), 21-31.
Agardy, T. (1997), Marine protected areas and ocean conservation, Austin, Academic Press,
1997, 244 p.
Alfieri, L., P. Salamon, A. Bianchi, J. Neal, P. Bates, and L. Feyen (2014), Advances in
pan‐European flood hazard mapping, Hydrological processes, 28(13), 4067-4077.
Amarni, N., Fernane, L., Naili, M., Lounas,R., Belkessa, R (2020), Mapping of the
vulnerability to marine intrusion “in coastal Cherchell aquifer, Central Algeria” using the
GALDIT method, Groundwater for Sustainable Development.11. 100481.
Ambraseys, N., and J. Vogt (1988), Material for the investigation of the seismicity of the
region of Algiers, European Earthquake Engineering, 3, 16-29.
Andersen, L., and E. Gosk (1987), Applicability of vulnerability maps. W: The vulnerability
of soil and Groundwater pollutions (red. W. Van Duijvenbooden, HG van Waegeningh): 321–
332, paper presented at Proceedings of International Conference, TNO.
Appeaning Appeaning Addo, K., L. Larbi, B. Amisigo, and P. K. Ofori-Danson (2011),
Impacts of coastal inundation due to climate change in a cluster of urban coastal communities
in Ghana, West Africa, Remote Sensing, 3(9), 2029-2050.
Araújo, I., J. Dias, and D. Pugh (2008), Model simulations of tidal changes in a coastal
lagoon, the Ria de Aveiro (Portugal), Continental Shelf Research, 28(8), 1010-1025.
Arnone, R. A., D. A. Wiesenburg, and K. D. Saunders (1990), The origin and characteristics
of the Algerian Current, Journal of Geophysical Research: Oceans, 95(C2), 1587-1598.
Ayadi, K., M. Boutiba, F. Sabatier, and M. S. Guettouche (2016), Detection and analysis of
historical variations in the shoreline, using digital aerial photos, satellite images, and
topographic surveys DGPS: case of the Bejaia bay (East Algeria), Arabian Journal of
Geosciences, 9(1), 26.
Bagdanavičiūtė, I., L. Kelpšaitė, and T. Soomere (2015), Multi-criteria evaluation approach to
coastal vulnerability index development in micro-tidal low-lying areas, Ocean & Coastal
Management, 104, 124-135.
Ballesteros, C., J. A. Jiménez, and C. Viavattene (2018), A multi-component flood risk
assessment in the Maresme coast (NW Mediterranean), Natural Hazards, 90(1), 265-292.
Batchi, M., A. Karkouri, M. El Maaqili, and I. Fenijiro (2014), Cartographie de la
vulnérabilité à l’intrusion marine de l’aquifère Côtier de Mnasra (littoral du Gharb, Maroc–
Nord-Occidental), Mar Sci Coast Res J, 11.
Batchi, M., J. A. Karkouri, I. Fenjiro, and M. E. Maaqili (2017), Étude comparative de deux
modèles (DRASTIC et SI) pour l'évaluation de la sensibilité de la nappe phréatique de Mnasra
