Références bibliographiques
Furnestin, J., & Allain, C. (1962). L’hydrologie Algérienne en Hiver (Campagne du Président-Théodore-Tissier, février
1960). Revue des Travaux de l’Institut des Pêches Maritimes, 26(3), 277-308.
Futura. (2020a). Caroténoïde. Futura. https://www.futura-sciences.com/planete/definitions/botanique-carotenoide-2217/
Futura. (2020b). Fluorescence. Futura. https://www.futura-sciences.com/sciences/definitions/physique-fluorescence-859/
Futura. (2020c). Hétérotrophe. Futura. https://www.futura-sciences.com/planete/definitions/environnement-heterotrophe4551/
Futura. (2020d). Photopériode. Futura. https://www.futura-sciences.com/sante/definitions/biologie-photoperiode-6101/
Futura. (2020e). Phycocyanine. Futura. https://www.futura-sciences.com/planete/definitions/botanique-phycocyanine5398/
Futura. (2021a). Diatomée. Futura. https://www.futura-sciences.com/planete/definitions/botanique-diatomee-12607/
Futura.
(2021b).
Océans :
La
pompe
à
carbone
et
le
rôle
du
plancton.
Futura.
https://www.futura-sciences.com/planete/questions-reponses/rechauffement-climatique-oceans-pompe-carbonerole-plancton-2625/
Garver, S. A., Siegel, D. A., & Greg, M. B. (1994). Variability in near‐surface particulate absorption spectra : What can a
satellite
ocean
color
imager
see?
Limnology
and
Oceanography,
39(6),
1349-1367.
https://doi.org/10.4319/lo.1994.39.6.1349
Gascard, J. C., & Richez, C. (1985). Water masses and circulation in the Western Alboran sea and in the Straits of
Gibraltar. Progress in Oceanography, 15(3), 157-216. https://doi.org/10.1016/0079-6611(85)90031-X
Gernez, P., Barillé, L., Lerouxel, A., Mazeran, C., Lucas, A., & Doxaran, D. (2014). Remote sensing of suspended
particulate matter in turbid oyster-farming ecosystems. Journal of Geophysical Research: Oceans, 119(10),
7277-7294. https://doi.org/10.1002/2014JC010055
Giorgi, F. (2006). Climate change hot-spots. Geophysical Research Letters, 33(8). https://doi.org/10.1029/2006GL025734
Giorgi, F., & Lionello, P. (2008). Climate change projections for the Mediterranean region. Global and Planetary Change,
63(2), 90-104. https://doi.org/10.1016/j.gloplacha.2007.09.005
Gohin, F. (2011). Annual cycles of chlorophyll-a, non-algal suspended particulate matter, and turbidity observed from
space and in-situ in coastal waters. Ocean Science, 7(5), 705-732. https://doi.org/10.5194/os-7-705-2011
Gohin, F., Druon, J. N., & Lampert, L. (2002). A five channel chlorophyll concentration algorithm applied to SeaWiFS
data processed by SeaDAS in coastal waters. International Journal of Remote Sensing, 23(8), 1639-1661.
https://doi.org/10.1080/01431160110071879
Gohin, F., Loyer, S., Lunven, M., Labry, C., Froidefond, J.-M., Delmas, D., Huret, M., & Herbland, A. (2005). Satellitederived parameters for biological modelling in coastal waters : Illustration over the eastern continental shelf of the
Bay of Biscay. Remote Sensing of Environment, 95(1), 29-46. https://doi.org/10.1016/j.rse.2004.11.007
Google Maps. (2021). Algeria—Google Maps. https://www.google.com/maps/place/Alger
Gordon, H. R. (1989). Can the Lambert-Beer law be applied to the diffuse attenuation coefficient of ocean water? :
Lambert-Beer
law
applied
to
K.
Limnology
and
Oceanography,
34(8),
1389-1409.
https://doi.org/10.4319/lo.1989.34.8.1389
Gordon, H. R., & Clark, D. K. (1981). Clear water radiances for atmospheric correction of coastal zone color scanner
imagery. Applied Optics, 20(24).
Gordon, H. R., Clark, D. K., Brown, J. W., Brown, O. B., Evans, R. H., & Broenkow, W. W. (1983). Phytoplankton
pigment concentrations in the Middle Atlantic Bight : Comparison of ship determinations and CZCS estimates.
Applied Optics, 22(1), 20. https://doi.org/10.1364/AO.22.000020
Gordon, H. R., & Kenneth, J. V. (1999). MODIS Normalized Water-leaving Radiance Algorithm Theoretical Basis
Document (MOD 18) Version 4. Department of Physics University of Miami.
Gordon, H. R., & McCluney, W. R. (1975). Estimation of the Depth of Sunlight Penetration in the Sea for Remote
Sensing. Applied Optics, 14(2), 413. https://doi.org/10.1364/AO.14.000413
Grimes, S., Ruellet, T., Dauvin, J.-C., & Boutiba, Z. (2010). Ecological Quality Status of the soft-bottom communities on
the algerian coast : General patterns and diagnosis. Marine Pollution Bulletin, 60(11), 1969-1977.
https://doi.org/10.1016/j.marpolbul.2010.07.032
Guy, J. (2006). Écologie du plancton (Edition TEC&DOC). Lavoisier.
Hafen, R. (2016). Package ‘stlplus’, Enhanced Seasonal Decomposition of Time Series by Loess.
https://github.com/hafen/stlplus
Harid, R., Ait Kaci, M., Keraghel, M. A., Zerroukı, M., & Houma-Bachari, F. (2018). Seasonal and Interannual
Variability of Primary Production and Chlorophyll Concentrations in the Algerian Basin : Application of Ocean
Color. In A. Kallel, M. Ksibi, H. Ben Dhia, & N. Khélifi (Éds.), Recent Advances in Environmental Science from
the Euro-Mediterranean and Surrounding Regions (p. 1641-1643). Springer International Publishing.
https://doi.org/10.1007/978-3-319-70548-4_475
Harid, R., & Demarcq, H. (2021). Fortnight Climatology Average of Corrected Chlorophyll-a Concentration from MODIS
Level-2 Data in the Algerian Basin (2003-2018) [Data set]. Zenodo. https://doi.org/10.5281/zenodo.5390383
Harid, R., Demarcq, H., Keraghel, M.-A., Ait-Kaci, M., Zerrouki, M., Bachari, N.-E.-I., & Houma, F. (2022). Spatiotemporal variability of a chlorophyll-a based biomass index and influence of coastal sources of enrichment in the
Algerian Basin. Continental Shelf Research, 232, 104629. https://doi.org/10.1016/j.csr.2021.104629
163
Furnestin, J., & Allain, C. (1962). L’hydrologie Algérienne en Hiver (Campagne du Président-Théodore-Tissier, février
1960). Revue des Travaux de l’Institut des Pêches Maritimes, 26(3), 277-308.
Futura. (2020a). Caroténoïde. Futura. https://www.futura-sciences.com/planete/definitions/botanique-carotenoide-2217/
Futura. (2020b). Fluorescence. Futura. https://www.futura-sciences.com/sciences/definitions/physique-fluorescence-859/
Futura. (2020c). Hétérotrophe. Futura. https://www.futura-sciences.com/planete/definitions/environnement-heterotrophe4551/
Futura. (2020d). Photopériode. Futura. https://www.futura-sciences.com/sante/definitions/biologie-photoperiode-6101/
Futura. (2020e). Phycocyanine. Futura. https://www.futura-sciences.com/planete/definitions/botanique-phycocyanine5398/
Futura. (2021a). Diatomée. Futura. https://www.futura-sciences.com/planete/definitions/botanique-diatomee-12607/
Futura.
(2021b).
Océans :
La
pompe
à
carbone
et
le
rôle
du
plancton.
Futura.
https://www.futura-sciences.com/planete/questions-reponses/rechauffement-climatique-oceans-pompe-carbonerole-plancton-2625/
Garver, S. A., Siegel, D. A., & Greg, M. B. (1994). Variability in near‐surface particulate absorption spectra : What can a
satellite
ocean
color
imager
see?
Limnology
and
Oceanography,
39(6),
1349-1367.
https://doi.org/10.4319/lo.1994.39.6.1349
Gascard, J. C., & Richez, C. (1985). Water masses and circulation in the Western Alboran sea and in the Straits of
Gibraltar. Progress in Oceanography, 15(3), 157-216. https://doi.org/10.1016/0079-6611(85)90031-X
Gernez, P., Barillé, L., Lerouxel, A., Mazeran, C., Lucas, A., & Doxaran, D. (2014). Remote sensing of suspended
particulate matter in turbid oyster-farming ecosystems. Journal of Geophysical Research: Oceans, 119(10),
7277-7294. https://doi.org/10.1002/2014JC010055
Giorgi, F. (2006). Climate change hot-spots. Geophysical Research Letters, 33(8). https://doi.org/10.1029/2006GL025734
Giorgi, F., & Lionello, P. (2008). Climate change projections for the Mediterranean region. Global and Planetary Change,
63(2), 90-104. https://doi.org/10.1016/j.gloplacha.2007.09.005
Gohin, F. (2011). Annual cycles of chlorophyll-a, non-algal suspended particulate matter, and turbidity observed from
space and in-situ in coastal waters. Ocean Science, 7(5), 705-732. https://doi.org/10.5194/os-7-705-2011
Gohin, F., Druon, J. N., & Lampert, L. (2002). A five channel chlorophyll concentration algorithm applied to SeaWiFS
data processed by SeaDAS in coastal waters. International Journal of Remote Sensing, 23(8), 1639-1661.
https://doi.org/10.1080/01431160110071879
Gohin, F., Loyer, S., Lunven, M., Labry, C., Froidefond, J.-M., Delmas, D., Huret, M., & Herbland, A. (2005). Satellitederived parameters for biological modelling in coastal waters : Illustration over the eastern continental shelf of the
Bay of Biscay. Remote Sensing of Environment, 95(1), 29-46. https://doi.org/10.1016/j.rse.2004.11.007
Google Maps. (2021). Algeria—Google Maps. https://www.google.com/maps/place/Alger
Gordon, H. R. (1989). Can the Lambert-Beer law be applied to the diffuse attenuation coefficient of ocean water? :
Lambert-Beer
law
applied
to
K.
Limnology
and
Oceanography,
34(8),
1389-1409.
https://doi.org/10.4319/lo.1989.34.8.1389
Gordon, H. R., & Clark, D. K. (1981). Clear water radiances for atmospheric correction of coastal zone color scanner
imagery. Applied Optics, 20(24).
Gordon, H. R., Clark, D. K., Brown, J. W., Brown, O. B., Evans, R. H., & Broenkow, W. W. (1983). Phytoplankton
pigment concentrations in the Middle Atlantic Bight : Comparison of ship determinations and CZCS estimates.
Applied Optics, 22(1), 20. https://doi.org/10.1364/AO.22.000020
Gordon, H. R., & Kenneth, J. V. (1999). MODIS Normalized Water-leaving Radiance Algorithm Theoretical Basis
Document (MOD 18) Version 4. Department of Physics University of Miami.
Gordon, H. R., & McCluney, W. R. (1975). Estimation of the Depth of Sunlight Penetration in the Sea for Remote
Sensing. Applied Optics, 14(2), 413. https://doi.org/10.1364/AO.14.000413
Grimes, S., Ruellet, T., Dauvin, J.-C., & Boutiba, Z. (2010). Ecological Quality Status of the soft-bottom communities on
the algerian coast : General patterns and diagnosis. Marine Pollution Bulletin, 60(11), 1969-1977.
https://doi.org/10.1016/j.marpolbul.2010.07.032
Guy, J. (2006). Écologie du plancton (Edition TEC&DOC). Lavoisier.
Hafen, R. (2016). Package ‘stlplus’, Enhanced Seasonal Decomposition of Time Series by Loess.
https://github.com/hafen/stlplus
Harid, R., Ait Kaci, M., Keraghel, M. A., Zerroukı, M., & Houma-Bachari, F. (2018). Seasonal and Interannual
Variability of Primary Production and Chlorophyll Concentrations in the Algerian Basin : Application of Ocean
Color. In A. Kallel, M. Ksibi, H. Ben Dhia, & N. Khélifi (Éds.), Recent Advances in Environmental Science from
the Euro-Mediterranean and Surrounding Regions (p. 1641-1643). Springer International Publishing.
https://doi.org/10.1007/978-3-319-70548-4_475
Harid, R., & Demarcq, H. (2021). Fortnight Climatology Average of Corrected Chlorophyll-a Concentration from MODIS
Level-2 Data in the Algerian Basin (2003-2018) [Data set]. Zenodo. https://doi.org/10.5281/zenodo.5390383
Harid, R., Demarcq, H., Keraghel, M.-A., Ait-Kaci, M., Zerrouki, M., Bachari, N.-E.-I., & Houma, F. (2022). Spatiotemporal variability of a chlorophyll-a based biomass index and influence of coastal sources of enrichment in the
Algerian Basin. Continental Shelf Research, 232, 104629. https://doi.org/10.1016/j.csr.2021.104629
163
