Optical remote sensing is one of the most commonly used techniques to detect oil in the surface ocean. This is because oil has optical properties that are different from water to modulate oil-water spatial and spectral contrasts. However, understanding these contrasts is challenging because of variable results from laboratory and field experiments as well as from different observing conditions and spatial/spectral resolutions of remote sensing imagery. Here, through reviewing published oil-water spectral contrasts and analyzing remotely sensed spectra collected by several satellite and airborne sensors (MERIS, MODIS, MISR, Landsat, and AVIRIS) from the Deepwater Horizon oil spill, we provide the interpretation of the spatial/spectral contra...
The remote detection and quantification of oil spills and hydrocarbon seepage represent a key resear...
Using fine spatial resolution (~7.6m) hyperspectral AVIRIS data collected over the Deepwater Horizon...
Using fine spatial resolution (~7.6m) hyperspectral AVIRIS data collected over the Deepwater Horizon...
Optical remote sensing is one of the most commonly used techniques to detect oil in the surface ocea...
Optical remote sensing is one of the most commonly used techniques to detect oil in the surface ocea...
In this dataset, we present the spectral variability of oil slicks under different observing conditi...
In this dataset, we present the spectral variability of oil slicks under different observing conditi...
In this dataset, we present the spectral variability of oil slicks under different observing conditi...
Assessment of oil spills in the ocean using passive remote sensing (i.e., reflected sun light) faces...
Assessment of oil spills in the ocean using passive remote sensing (i.e., reflected sun light) faces...
Water in oil (WO) and oil in water (OW) emulsions from marine oil spills have different physical pro...
Water in oil (WO) and oil in water (OW) emulsions from marine oil spills have different physical pro...
Optical identification and quantification of various marine-spilled oils play an important role in o...
Optical identification and quantification of various marine-spilled oils play an important role in o...
The remote detection and quantification of oil spills and hydrocarbon seepage represent a key resear...
The remote detection and quantification of oil spills and hydrocarbon seepage represent a key resear...
Using fine spatial resolution (~7.6m) hyperspectral AVIRIS data collected over the Deepwater Horizon...
Using fine spatial resolution (~7.6m) hyperspectral AVIRIS data collected over the Deepwater Horizon...
Optical remote sensing is one of the most commonly used techniques to detect oil in the surface ocea...
Optical remote sensing is one of the most commonly used techniques to detect oil in the surface ocea...
In this dataset, we present the spectral variability of oil slicks under different observing conditi...
In this dataset, we present the spectral variability of oil slicks under different observing conditi...
In this dataset, we present the spectral variability of oil slicks under different observing conditi...
Assessment of oil spills in the ocean using passive remote sensing (i.e., reflected sun light) faces...
Assessment of oil spills in the ocean using passive remote sensing (i.e., reflected sun light) faces...
Water in oil (WO) and oil in water (OW) emulsions from marine oil spills have different physical pro...
Water in oil (WO) and oil in water (OW) emulsions from marine oil spills have different physical pro...
Optical identification and quantification of various marine-spilled oils play an important role in o...
Optical identification and quantification of various marine-spilled oils play an important role in o...
The remote detection and quantification of oil spills and hydrocarbon seepage represent a key resear...
The remote detection and quantification of oil spills and hydrocarbon seepage represent a key resear...
Using fine spatial resolution (~7.6m) hyperspectral AVIRIS data collected over the Deepwater Horizon...
Using fine spatial resolution (~7.6m) hyperspectral AVIRIS data collected over the Deepwater Horizon...