Références bibliographiques
Pérès, J.-M. (1966). La vie dans l’océan. Seuil. https://www.decitre.fr/livres/la-vie-dans-l-ocean-9782020002158.html
Perrot, L., Gohin, F., Ruiz-Pino, D., & Lampert, L. (2016). Seasonal and interannual variability of coccolithophore
blooms in the North East-Atlantic Ocean from a 18-year time-series of satellite water-leaving radiance [Preprint].
Remote Sensing/Biological Processes/Surface/Shelf Seas. https://doi.org/10.5194/os-2016-13
Perrot, L., Gohin, F., Ruiz-Pino, D., Lampert, L., Huret, M., Dessier, A., Malestroit, P., Dupuy, C., & Bourriau, P.
(2018). Coccolith-derived turbidity and hydrological conditions in May in the Bay of Biscay. Progress in
Oceanography, 166, 41-53. https://doi.org/10.1016/j.pocean.2017.12.008
Pingree, R. D., & Maddock, L. (1979). The tidal physics of headland flows and offshore tidal bank formation. Marine
Geology, 32(3), 269-289. https://doi.org/10.1016/0025-3227(79)90068-9
Pope, R. M., & Fry, E. S. (1997). Absorption spectrum (380–700 nm) of pure water II Integrating cavity measurements.
Applied Optics, 36(33), 8710. https://doi.org/10.1364/AO.36.008710
Poulton, A. J., Holligan, P. M., Charalampopoulou, A., & Adey, T. R. (2017). Coccolithophore ecology in the tropical and
subtropical Atlantic Ocean : New perspectives from the Atlantic meridional transect (AMT) programme. Progress
in Oceanography, 158, 150-170. https://doi.org/10.1016/j.pocean.2017.01.003
Preisendorfer,
R.
W.
(1965).
Radiative
Transfer
on
Discrete
Spaces
(Vol.
74).
Elsevier.
https://www.elsevier.com/books/radiative-transfer-on-discrete-spaces/sneddon/978-0-08-010592-5
Rabehi, W., Guerfi, M., & Mahi, H. (2019). La baie d’Alger, un espace côtier prisé, entre pressions d’urbanisation et
gouvernance territoriale. Geo-Eco-Marina, 25, 113-130. https://doi.org/10.5281/ZENODO.3609744
Raimbault, P., Coste, B., Boulhadid, M., & Boudjellal, B. (1993). Origin of high phytoplankton concentration in deep
chlorophyll maximum (DCM) in a frontal region of the Southwestern Mediterranean Sea (algerian current). Deep
Sea Research Part I: Oceanographic Research Papers, 40(4), 791-804. https://doi.org/10.1016/09670637(93)90072-B
Riley, G. A. (1942). The Relationship of Vertical Turbulence and Spring Diatom Floweringsby. J. Mar. Res, 5, 67-87.
Riley, G., Conoer, A. M., Deever, G., Wheatland, S., Harris, E., & Sanders, H. (1956). Bulletin of the bingham
oceanographic collection, Volume XV. Yale University.
Rı́ os, A. F., Pérez, F. F., & Fraga, F. (2001). Long-term (1977–1997) measurements of carbon dioxide in the Eastern
North Atlantic : Evaluation of anthropogenic input. Deep Sea Research Part II: Topical Studies in Oceanography,
48(10), 2227-2239. https://doi.org/10.1016/S0967-0645(00)00182-X
Robin, M. (1998). La télédétection (Nathan). Nathan University.
Robinson, A. R., & Hill, M. N. (Éds.). (2005). Biological-physical interactions in the sea (1. Harvard Univ. Press
publication 2005). Harvard Univ. Press.
Roesler, C. S., & Perry, M. J. (1995). In situ phytoplankton absorption, fluorescence emission, and particulate
backscattering spectra determined from reflectance. Journal of Geophysical Research: Oceans, 100(C7),
13279-13294. https://doi.org/10.1029/95JC00455
Roesler, C. S., Perry, M. J., & Carder, K. L. (1989). Modeling in situ phytoplankton absorption from total absorption
spectra in productive inland marine waters : Modeling in situ absorption. Limnology and Oceanography, 34(8),
1510-1523. https://doi.org/10.4319/lo.1989.34.8.1510
Saba, V. S., Friedrichs, M. a. M., Antoine, D., Armstrong, R. A., Asanuma, I., Behrenfeld, M. J., Ciotti, A. M., Dowell,
M., Hoepffner, N., Hyde, K. J. W., Ishizaka, J., Kameda, T., Marra, J., Mélin, F., Morel, A., O’Reilly, J., Scardi,
M., Smith Jr., W. O., Smyth, T. J., … Westberry, T. K. (2011). An evaluation of ocean color model estimates of
marine primary productivity in coastal and pelagic regions across the globe. Biogeosciences, 8(2), 489-503.
https://doi.org/10.5194/bg-8-489-2011
Sackmann, B. S., Perry, M. J., & Eriksen, C. C. (2008). Seaglider observations of variability in daytime fluorescence
quenching of chlorophyll-a in Northeastern Pacific coastal waters. Biogeosciences Discussions, 5(4), 2839-2865.
https://doi.org/10.5194/bgd-5-2839-2008
Salgado-Hernanz, P. M., Racault, M.-F., Font-Muñoz, J. S., & Basterretxea, G. (2019). Trends in phytoplankton
phenology in the Mediterranean Sea based on ocean-colour remote sensing. Remote Sensing of Environment, 221,
50-64. https://doi.org/10.1016/j.rse.2018.10.036
Sankey, T. (1973). The formation of deep water in the northwestern mediterranean. Progress in Oceanography, 6, 159IN54. https://doi.org/10.1016/0079-6611(73)90007-4
Schoellhamer, D. H., Mumley, T. E., & Leatherbarrow, J. E. (2007). Suspended sediment and sediment-associated
contaminants
in
San
Francisco
Bay.
Environmental
Research,
105(1),
119-131.
https://doi.org/10.1016/j.envres.2007.02.002
Seegers, B. N., Stumpf, R. P., Schaeffer, B. A., Loftin, K. A., & Werdell, P. J. (2018). Performance metrics for the
assessment of satellite data products : An ocean color case study. Optics Express, 26(6), 7404-7422.
https://doi.org/10.1364/OE.26.007404
Seybouse. (2018). In Wikipédia. https://fr.wikipedia.org/w/index.php?title=Seybouse&oldid=150309587
Shutler, J. D., Land, P. E., Brown, C. W., Findlay, H. S., Donlon, C. J., Medland, M., Snooke, R., & Blackford, J. C.
(2013). Coccolithophore surface distributions in the North Atlantic and their modulation of the air-sea flux of
CO<sub>2</sub> from 10 years of satellite Earth observation data. Biogeosciences, 10(4), 2699-2709.
https://doi.org/10.5194/bg-10-2699-2013
167
Pérès, J.-M. (1966). La vie dans l’océan. Seuil. https://www.decitre.fr/livres/la-vie-dans-l-ocean-9782020002158.html
Perrot, L., Gohin, F., Ruiz-Pino, D., & Lampert, L. (2016). Seasonal and interannual variability of coccolithophore
blooms in the North East-Atlantic Ocean from a 18-year time-series of satellite water-leaving radiance [Preprint].
Remote Sensing/Biological Processes/Surface/Shelf Seas. https://doi.org/10.5194/os-2016-13
Perrot, L., Gohin, F., Ruiz-Pino, D., Lampert, L., Huret, M., Dessier, A., Malestroit, P., Dupuy, C., & Bourriau, P.
(2018). Coccolith-derived turbidity and hydrological conditions in May in the Bay of Biscay. Progress in
Oceanography, 166, 41-53. https://doi.org/10.1016/j.pocean.2017.12.008
Pingree, R. D., & Maddock, L. (1979). The tidal physics of headland flows and offshore tidal bank formation. Marine
Geology, 32(3), 269-289. https://doi.org/10.1016/0025-3227(79)90068-9
Pope, R. M., & Fry, E. S. (1997). Absorption spectrum (380–700 nm) of pure water II Integrating cavity measurements.
Applied Optics, 36(33), 8710. https://doi.org/10.1364/AO.36.008710
Poulton, A. J., Holligan, P. M., Charalampopoulou, A., & Adey, T. R. (2017). Coccolithophore ecology in the tropical and
subtropical Atlantic Ocean : New perspectives from the Atlantic meridional transect (AMT) programme. Progress
in Oceanography, 158, 150-170. https://doi.org/10.1016/j.pocean.2017.01.003
Preisendorfer,
R.
W.
(1965).
Radiative
Transfer
on
Discrete
Spaces
(Vol.
74).
Elsevier.
https://www.elsevier.com/books/radiative-transfer-on-discrete-spaces/sneddon/978-0-08-010592-5
Rabehi, W., Guerfi, M., & Mahi, H. (2019). La baie d’Alger, un espace côtier prisé, entre pressions d’urbanisation et
gouvernance territoriale. Geo-Eco-Marina, 25, 113-130. https://doi.org/10.5281/ZENODO.3609744
Raimbault, P., Coste, B., Boulhadid, M., & Boudjellal, B. (1993). Origin of high phytoplankton concentration in deep
chlorophyll maximum (DCM) in a frontal region of the Southwestern Mediterranean Sea (algerian current). Deep
Sea Research Part I: Oceanographic Research Papers, 40(4), 791-804. https://doi.org/10.1016/09670637(93)90072-B
Riley, G. A. (1942). The Relationship of Vertical Turbulence and Spring Diatom Floweringsby. J. Mar. Res, 5, 67-87.
Riley, G., Conoer, A. M., Deever, G., Wheatland, S., Harris, E., & Sanders, H. (1956). Bulletin of the bingham
oceanographic collection, Volume XV. Yale University.
Rı́ os, A. F., Pérez, F. F., & Fraga, F. (2001). Long-term (1977–1997) measurements of carbon dioxide in the Eastern
North Atlantic : Evaluation of anthropogenic input. Deep Sea Research Part II: Topical Studies in Oceanography,
48(10), 2227-2239. https://doi.org/10.1016/S0967-0645(00)00182-X
Robin, M. (1998). La télédétection (Nathan). Nathan University.
Robinson, A. R., & Hill, M. N. (Éds.). (2005). Biological-physical interactions in the sea (1. Harvard Univ. Press
publication 2005). Harvard Univ. Press.
Roesler, C. S., & Perry, M. J. (1995). In situ phytoplankton absorption, fluorescence emission, and particulate
backscattering spectra determined from reflectance. Journal of Geophysical Research: Oceans, 100(C7),
13279-13294. https://doi.org/10.1029/95JC00455
Roesler, C. S., Perry, M. J., & Carder, K. L. (1989). Modeling in situ phytoplankton absorption from total absorption
spectra in productive inland marine waters : Modeling in situ absorption. Limnology and Oceanography, 34(8),
1510-1523. https://doi.org/10.4319/lo.1989.34.8.1510
Saba, V. S., Friedrichs, M. a. M., Antoine, D., Armstrong, R. A., Asanuma, I., Behrenfeld, M. J., Ciotti, A. M., Dowell,
M., Hoepffner, N., Hyde, K. J. W., Ishizaka, J., Kameda, T., Marra, J., Mélin, F., Morel, A., O’Reilly, J., Scardi,
M., Smith Jr., W. O., Smyth, T. J., … Westberry, T. K. (2011). An evaluation of ocean color model estimates of
marine primary productivity in coastal and pelagic regions across the globe. Biogeosciences, 8(2), 489-503.
https://doi.org/10.5194/bg-8-489-2011
Sackmann, B. S., Perry, M. J., & Eriksen, C. C. (2008). Seaglider observations of variability in daytime fluorescence
quenching of chlorophyll-a in Northeastern Pacific coastal waters. Biogeosciences Discussions, 5(4), 2839-2865.
https://doi.org/10.5194/bgd-5-2839-2008
Salgado-Hernanz, P. M., Racault, M.-F., Font-Muñoz, J. S., & Basterretxea, G. (2019). Trends in phytoplankton
phenology in the Mediterranean Sea based on ocean-colour remote sensing. Remote Sensing of Environment, 221,
50-64. https://doi.org/10.1016/j.rse.2018.10.036
Sankey, T. (1973). The formation of deep water in the northwestern mediterranean. Progress in Oceanography, 6, 159IN54. https://doi.org/10.1016/0079-6611(73)90007-4
Schoellhamer, D. H., Mumley, T. E., & Leatherbarrow, J. E. (2007). Suspended sediment and sediment-associated
contaminants
in
San
Francisco
Bay.
Environmental
Research,
105(1),
119-131.
https://doi.org/10.1016/j.envres.2007.02.002
Seegers, B. N., Stumpf, R. P., Schaeffer, B. A., Loftin, K. A., & Werdell, P. J. (2018). Performance metrics for the
assessment of satellite data products : An ocean color case study. Optics Express, 26(6), 7404-7422.
https://doi.org/10.1364/OE.26.007404
Seybouse. (2018). In Wikipédia. https://fr.wikipedia.org/w/index.php?title=Seybouse&oldid=150309587
Shutler, J. D., Land, P. E., Brown, C. W., Findlay, H. S., Donlon, C. J., Medland, M., Snooke, R., & Blackford, J. C.
(2013). Coccolithophore surface distributions in the North Atlantic and their modulation of the air-sea flux of
CO<sub>2</sub> from 10 years of satellite Earth observation data. Biogeosciences, 10(4), 2699-2709.
https://doi.org/10.5194/bg-10-2699-2013
167
