David Doxaran
Research scientist (2007-present)
Contact information:
Phone: +33 (0)4 93 76 37 24
Fax: +33 (0)4 93 76 38 39

Ph.D. (2000-2002)

UMR-EPOC 5805, Université Bordeaux 1 (France)
Dissertation topic:Ocean colour remote sensing and numerical transport modelling of sedimentary fluxes in the Gironde estuary Get PDF
DEA (1998-1999)
UMR-EPOC 5805, Université Bordeaux 1 (France)
Dissertation topic:Quantification of suspended sediments in the Gironde estuary using SPOT satellite data and the numerical transport model (SAM-2D).
M.Sc. in Physics Applied to Ocean-Atmosphere (1997-1998)
Université de Toulon et du Var (France)
B.Sc. in Physics (1997)
Université de Pau et des pays de l’Adour (France)
 
 
Research interests:
Ocean colour remote sensing, optical properties of turbid estuarine and coastal waters, bio-optical modelling, atmospheric corrections, sediment transport modelling
Publications:

    Submitted

  • Doron, M, S. Bélanger, D. Doxaran and M. Babin. Spectral variations in the near-infrared ocean reflectance. Remote Sensing of Environment, submitted.
  • In press

  • Leymarie, E. , D. Doxaran, and M. Babin (2010). Uncertainties associated to measurements of inherent optical properties in natural waters, Applied Optics, in press.
  • 2010

  • Petus, C., Chust, G., Gohin, F., Doxaran,, D., Froidefond, J.M. and Y. Sagarminaga (2010). Estimating turbidity and total suspended matter in the Adour River plume (South Bay of Biscay) using MODIS 250-m imagery. Continental Shelf Research, 30, 379-392. (Get PDF Reprint)
  • 2009

  • Doxaran D., J.M. Froidefond, P. Castaing and M. Babin, 2009. Dynamics of the turbidity maximum zone in a macrotidal estuary (the Gironde, France): Observations from field and MODIS satellite data. Estuarine, Coastal and Shelf Science 81, 321–332. (Get PDF Reprint)
  • Doxaran D., Ruddick K. McKee D., Gentili B., Tailliez D., Chami M., and M. Babin (2009), Spectral variations of light scattering by marine particles in coastal waters, from the visible to the near infrared. Limnology and Oceanography, 54, 1257-1271. (Get PDF Reprint)
  • McKee, D.,Chami, M., Brown, I., Calzado, V. S., Doxaran, D., and A. Cunningham, A. (2009). Role of measurement uncertainties in observed variability in the spectral backscattering ratio: a case study in mineral-rich coastal waters, Applied Optics, 48 (24), 4663-4675. (Get PDF Reprint)
  • 2007

  • Doxaran, D., M. Babin and E. Leymarie.  Near-infrared light scattering by particles in coastal waters. Optics Express, Vol. 15, No. 20 12834-12849 (Get PDF Reprint).
  • 2006

  • Doxaran, D., Cherukuru, R.C.N. and Lavender, S.J., 2006. Inherent and apparent optical properties of turbid estuarine waters: measurements, modelling and application to remote sensing. Applied Optics, 45, 2310-2324.

Doxaran, D., Castaing, P. and Lavender, S.J. (2006). Monitoring the maximum turbidity zone and detecting fine-scale turbidity features in the Gironde estuary using high spatial resolution satellite sensor (SPOT HRV, Landsat ETM+) data. International Journal of Remote Sensing, 27, 2303-2321. (Get PDF Reprint)

Doxaran, D., Cherukuru, R.C.N. and Lavender, S.J. (2005). Use of reflectance band ratios to estimate suspended and dissolved matter concentrations in estuarine waters. International Journal of Remote Sensing, 26, 1763-1769. (Get PDF Reprint)

Doxaran, D., Cherukuru, C. R.C., Lavender, S.J. and Moore, G.F. (2004b). Use of a spectralon panel to measure the downwelling irradiance signal: case studies and recommendations. Applied Optics, 43, 5981-5986. (Get PDF Reprint)

Doxaran, D., Cherukuru, R.C.N. and Lavender, S.J. (2004a). Surface reflection effects on upwelling radiance field measurements in turbid waters. Journal of Optics A: Pure and Applied Optics, 6, 690-697. (Get PDF Reprint)

Froidefond, J.M., Lahet, F., Doxaran, D., Prost, M.T. and Ternon, J.F. (2004). Mudflats and mud suspension observed from satellite data in French Guiana. Marine Geology, 208, 153-168. (Get PDF Reprint)

Doxaran, D., Froidefond, J.M. and Castaing, P. (2003). Remote sensing reflectance of turbid sediment- dominated waters. Reduction of sediment type variations and changing illumination conditions effects using reflectance ratios. Applied Optics, 42, 2623-2634. (Get PDF Reprint)

Doxaran, D., Froidefond, J.M. and Castaing, P. (2002b). A reflectance band ratio used to estimate suspended matter concentrations in coastal sediment-dominated waters. International Journal of Remote Sensing, 23, 5079-5085. (Get PDF Reprint)

Doxaran, D., Froidefond, J.M., Lavender,S.J. and Castaing, P. (2002a). Spectral signature of highly turbid waters. Application with SPOT data to quantify suspended particulate matter concentrations. Remote Sensing of Environment, 81, 149-161. (Get PDF Reprint)

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