Title :
Thickness estimation of marine oil slicks with near-infrared MERIS and MODIS imagery: The Lebanon oil spill case study
Author :
De Carolis, Giacomo ; Adamo, Maria ; Pasquariello, Guido
Author_Institution :
Inst. for Electromagn. Sensing of the Environ., Milan, Italy
Abstract :
The detection of marine oil slicks using satellite sun-glittered optical imagery has been recently assessed. As the nature of the imaging mechanism involves the altered features of the wind-roughened oil-covered sea surface, it is expected that the radiation reflected from the oil-water system carries information about the physical properties of the floating oil layer. In this paper, we report an investigation on the capability to retrieve the average thickness of thin marine oil slicks by using the sun-glittered component of the solar radiation in the near-infrared (NIR) bands of MERIS and MODIS images. The developed procedure exploits the Cox and Munk model to compute sun glint reflectance at the sea surface level for both clean and oil polluted sea surface as well. It is assumed that the Fresnel reflection coefficient of the oil-water system carries the relevant optical dependence on oil layer thickness and oil type. The expected oil-water system reflectance is computed by taking into account the non-uniform spatial distribution of the oil volume. This is achieved by considering a pdf of oil thicknesses that matches the observations on controlled oil slicks already reported in the scientific literature. MERIS and MODIS images gathered during the Lebanon oil spill occurred on July and August 2006 were selected as case study. When available, colocated SAR imagery was also considered to corroborate NIR-detected oil slicks.
Keywords :
infrared spectroscopy; light reflection; marine pollution; oceanographic regions; oceanographic techniques; oil pollution; remote sensing; underwater optics; water pollution measurement; AD 2006 07 to 08; Cox-Munk model; Fresnel reflection coefficient; Lebanon oil spill; NIR detected oil slicks; clean sea surface; floating oil layer physical properties; imaging mechanism; marine oil slick detection; marine oil slick thickness estimation; near infrared MERIS imagery; near infrared MODIS imagery; near infrared solar radiation; oil polluted sea surface; oil thickness PDF; oil type; oil volume nonuniform spatial distribution; oil-water system radiation reflection; oil-water system reflectance; satellite sun glittered optical imagery; sea surface sun glint reflectance; wind roughened oil covered sea surface; MODIS; Optical reflection; Optical sensors; Reflectivity; Sea surface; Sun; Surface contamination; NIR; oil slick thickness; sun glint;
Conference_Titel :
Geoscience and Remote Sensing Symposium (IGARSS), 2012 IEEE International
Conference_Location :
Munich
Print_ISBN :
978-1-4673-1160-1
Electronic_ISBN :
2153-6996
DOI :
10.1109/IGARSS.2012.6350794