65
Références bibliographiques
Algérie, M., Hallouz, F., Meddi, M., Mahe, G., Karahacane, H., & Rahmani, E. A.
(2022). Tendance des précipitations et évolution des écoulements dans Trend in
precipitation and evolution of discharge in a climate change context : Wadi Mina
watershed in Algeria écoulements dans un cadre de changement climatique : bassin
versant de l ’ oued mina en algérie.
AquaPortail. (2009). [En ligne]. [Consulté le 18 septembre 2022].
https://www.aquaportail.com/definition-5482-teledetection.html
Bahbah, L., Bensari, B., Chabane, K., Torras, X., Ballesteros, E., Seridi, H. (2020).
Cartography of littoral rocky-shore communities to assess the ecological status of water
bodies through the application of CARLIT method in Algeria (South-Western
Mediterranean Sea). Marine Pollution Bulletin, 157, p.p. 111 - 356.
Benzouaï, S., Louanchi, F., Smara, Y. (2018). Phytoplankton initiation bloom magnitude
in Algerian continental shelf waters using 11 years of ocean color observations. In C. R.
Bostater, S. P. Mertikas, & X. Neyt (Éds.), Remote Sensing of the Ocean, Sea Ice, Coastal
Waters, and Large Water Regions 2018 (p. 36).
Benzouaï, S., Louanchi, F., Smara, Y. (2020a). Phytoplankton phenology in algerian
continental shelf and slope waters using remotely sensed data. Estuarine, Coastal and Shelf
Science, p. 247.
Benzouaï, S., Louanchi, F., & Smara, Y. (2020b). Phytoplankton phenology in algerian
continental shelf and slope waters using remotely sensed data. Estuarine, Coastal and Shelf
Science, p. 247.
Benzouaï, S., Smara, M. Y., Aissa, M. A. B., Louanchi, M. F., Boulahdid, M. M., Diaf,
M. M., & Hirche, M. A. (2022). Détermination de la dynamique du phytoplancton pat
imagerie satellitaire : Cas des eaux Algériennes. Thèse de doctorat. Alger : Université des
Sciences et de la Technologie Houari Boumediène, p. 213.
Bermejo, R., Ramírez-Romero, E., Vergara, J. J., & Hernández, I. (2015). Spatial
patterns of macrophyte composition and landscape along the rocky shores of the
Mediterranean–Atlantic transition region (northern Alboran Sea). Estuarine, Coastal and
Shelf Science, 155, p.p. 17‑28.
Références bibliographiques
Algérie, M., Hallouz, F., Meddi, M., Mahe, G., Karahacane, H., & Rahmani, E. A.
(2022). Tendance des précipitations et évolution des écoulements dans Trend in
precipitation and evolution of discharge in a climate change context : Wadi Mina
watershed in Algeria écoulements dans un cadre de changement climatique : bassin
versant de l ’ oued mina en algérie.
AquaPortail. (2009). [En ligne]. [Consulté le 18 septembre 2022].
https://www.aquaportail.com/definition-5482-teledetection.html
Bahbah, L., Bensari, B., Chabane, K., Torras, X., Ballesteros, E., Seridi, H. (2020).
Cartography of littoral rocky-shore communities to assess the ecological status of water
bodies through the application of CARLIT method in Algeria (South-Western
Mediterranean Sea). Marine Pollution Bulletin, 157, p.p. 111 - 356.
Benzouaï, S., Louanchi, F., Smara, Y. (2018). Phytoplankton initiation bloom magnitude
in Algerian continental shelf waters using 11 years of ocean color observations. In C. R.
Bostater, S. P. Mertikas, & X. Neyt (Éds.), Remote Sensing of the Ocean, Sea Ice, Coastal
Waters, and Large Water Regions 2018 (p. 36).
Benzouaï, S., Louanchi, F., Smara, Y. (2020a). Phytoplankton phenology in algerian
continental shelf and slope waters using remotely sensed data. Estuarine, Coastal and Shelf
Science, p. 247.
Benzouaï, S., Louanchi, F., & Smara, Y. (2020b). Phytoplankton phenology in algerian
continental shelf and slope waters using remotely sensed data. Estuarine, Coastal and Shelf
Science, p. 247.
Benzouaï, S., Smara, M. Y., Aissa, M. A. B., Louanchi, M. F., Boulahdid, M. M., Diaf,
M. M., & Hirche, M. A. (2022). Détermination de la dynamique du phytoplancton pat
imagerie satellitaire : Cas des eaux Algériennes. Thèse de doctorat. Alger : Université des
Sciences et de la Technologie Houari Boumediène, p. 213.
Bermejo, R., Ramírez-Romero, E., Vergara, J. J., & Hernández, I. (2015). Spatial
patterns of macrophyte composition and landscape along the rocky shores of the
Mediterranean–Atlantic transition region (northern Alboran Sea). Estuarine, Coastal and
Shelf Science, 155, p.p. 17‑28.
