Sea ice motion from low‐resolution satellite sensors: An alternative method and its validation in the Arctic

Author:

Lavergne T.1,Eastwood S.1,Teffah Z.1,Schyberg H.1,Breivik L.‐A.1

Affiliation:

1. Remote Sensing Section, Research and Development Division Norwegian Meteorological Institute Oslo Norway

Publisher

American Geophysical Union (AGU)

Subject

Paleontology,Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Atmospheric Science,Earth-Surface Processes,Geochemistry and Petrology,Soil Science,Water Science and Technology,Ecology,Aquatic Science,Forestry,Oceanography,Geophysics

Reference49 articles.

1. Estimation of large scale sea ice motion from SSMI 85.5 GHz imagery;Agnew T. A.;Ann. Glaciol.,1997

2. Andersen S. L.‐A.Breivik S.Eastwood Ø.Godøy M.Lind M.Porcires andH.Schyberg(2007) OSI SAF sea ice product manual–v3.5 Tech. Rep. SAF/OSI/met.no/TEC/MA/125 Eur. Organ. for the Exploit. of Meteorol. Satell. Ocean and Sea Ice Satell. Appl. Facil. Copenhagen.

3. Ashcroft P. andF.Wentz(2006) AMSR‐E/Aqua L2A Global Swath Spatially‐Resampled Brightness Temperatures http://nsidc.org/data/ae_l2a.html Natl. Snow and Ice Data Cent. Boulder Colo.(Updated daily.).

4. Ocean Currents from Successive Satellite Images: The Reciprocal Filtering Technique

5. Sea ice concentration, sea ice drift and thickness data assimilation in Norway: Assimilation and real‐time forecasting with the TOPAZ system;Bertino L.;Mercator Ocean Q. Newsl.,2008

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