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Toward the Detection of Oil Spills in Newly Formed Sea Ice Using C-Band Multipolarization Radar

Asihene, Elvis (author)
Centre for Earth Observation Science (CEOS), University of Manitoba, Winnipeg, Canada
Desmond, Durell S. (author)
Centre for Earth Observation Science (CEOS), University of Manitoba, Winnipeg, Canada
Harasyn, Madison L. (author)
Centre for Earth Observation Science (CEOS), University of Manitoba, Winnipeg, Canada
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Landry, David (author)
Centre for Earth Observation Science (CEOS), University of Manitoba, Winnipeg, Canada
Veenaas, Cathrin, 1989- (author)
Örebro universitet,Institutionen för naturvetenskap och teknik,Centre for Earth Observation Science (CEOS), University of Manitoba, Winnipeg, Canada
Mansoori, Amirbahador (author)
Department of Electrical and Computer Engineering, University of Manitoba, Winnipeg, Canada
Fuller, Mark Christopher (author)
Cryosphere and Climate Research Group, Department of Geography, University of Calgary, Calgary, Canada
Stern, Gary (author)
Centre for Earth Observation Science (CEOS), University of Manitoba, Winnipeg, Canada
Barber, David G. (author)
Centre for Earth Observation Science (CEOS), University of Manitoba, Winnipeg, Canada
Gilmore, Colin (author)
Department of Electrical and Computer Engineering, University of Manitoba, Winnipeg, Canada
Isleifson, Dustin (author)
Centre for Earth Observation Science (CEOS) and the Department of Electrical and Computer Engineering, University of Manitoba, Winnipeg, Canada
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 (creator_code:org_t)
IEEE Geoscience and Remote Sensing Society, 2022
2022
English.
In: IEEE Transactions on Geoscience and Remote Sensing. - : IEEE Geoscience and Remote Sensing Society. - 0196-2892 .- 1558-0644. ; 60
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Oil spills in the Arctic are becoming more likely as shipping traffic increases in response to climate-related sea ice loss. To improve oil spill detection capability, we used a controlled mesocosm to analyze the multipolarized C-band backscatter response of oil in newly formed sea ice (NI). Artificial sea ice was grown in two cylindrical tubs at the Sea-ice Environmental Research Facility, University of Manitoba. The sea ice physical characteristics, including surface roughness, thickness, temperature, and salinity, were measured before and after oil injection below the ice sheet. Time-series C-band radar backscatter measurements detected the differences in the sea ice evolution and oil migration to the sea ice surface in the oil-contaminated tub, which was compared to uncontaminated ice in a control tub. Immediately prior to the presence of oil on the ice surface, the copolarized backscatter is increased by 13-dB local maximum, while the cross-polarized backscatter is decreased by 9-dB. Ice physical properties suggest that the local backscatter maximum and minimum, which occurred immediately before oil migrated onto the surface, were related to a combination of brine and oil upward migration. The findings of this work provide a baseline data interpretation for oil detection in the Arctic Ocean using current and future C-band multipolarization radar satellites.

Subject headings

NATURVETENSKAP  -- Geovetenskap och miljövetenskap -- Multidisciplinär geovetenskap (hsv//swe)
NATURAL SCIENCES  -- Earth and Related Environmental Sciences -- Geosciences, Multidisciplinary (hsv//eng)

Keyword

Sea ice
Oils
Ice
Ocean temperature
Sea surface
Backscatter
Spaceborne radar
Arctic
detection
oil spill
radar backscatter

Publication and Content Type

ref (subject category)
art (subject category)

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