EGU2020-22541, updated on 24 Jun 2020
https://doi.org/10.5194/egusphere-egu2020-22541
EGU General Assembly 2020
© Author(s) 2020. This work is distributed under
the Creative Commons Attribution 4.0 License.

Landfast ice zoning from SAR imagery

Valeria Selyuzhenok1, Denis Demchev2,3, and Thomas Krumpen4
Valeria Selyuzhenok et al.
  • 1Zubov Sate Oceanographic Insitute, Moscow, Russia
  • 2Nansen Environmental and Remote Sensing Center, Bergen, Norway
  • 3Nansen International Environmental and Remote Sensing Center, St. Petersburg, Russia
  • 4Alfred-Wegener-Institut, Helmholtz-Zentrum für Polar- und Meeresforschung

Landfast sea ice is a dominant sea ice feature of the Arctic coastal region. As a part of Arctic sea ice cover, landfast ice is an important part of coastal ecosystem, it provides functions as a climate regulator and platform for human activity. Recent changes in sea ice conditions in the Arctic have also affected landfast ice regime. At the same time, industrial interest in the Arctic shelf seas continue to increase. Knowledge on local landfast ice conditions are required to ensure safety of on ice operations and accurate forecasting.  In order to obtain a comprehensive information on landfast ice state we use a time series of wide swath SAR imagery.  An automatic sea ice tracking algorithm was applied to the sequential SAR images during the development stage of landfast ice cover. The analysis of resultant time series of sea ice drift allows to classify homogeneous sea ice drift fields and timing of their attachment to the landfast ice. In addition, the drift data allows to locate areas of formation of grounded sea ice accumulation called stamukha. This information сan be useful for local landfast ice stability assessment. The study is supported by the Russian Foundation for Basic Research (RFBR) grant 19-35-60033.

How to cite: Selyuzhenok, V., Demchev, D., and Krumpen, T.: Landfast ice zoning from SAR imagery, EGU General Assembly 2020, Online, 4–8 May 2020, EGU2020-22541, https://doi.org/10.5194/egusphere-egu2020-22541, 2020