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      Velocities of Pine Island Glacier, West Antarctica, from ERS-1 SAR images

      , ,
      Annals of Glaciology
      Cambridge University Press (CUP)

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          Abstract

          Pine Island Glacier is one of the major ice streams draining West Antarctica. We calculated average velocities for both its grounded and floating parts by tracking crevasses and other patterns moving with the ice on two sequential images acquired in February and December 1992 by ERS-1 SAR (European Remote-Sensing Satellite, Synthetic Aperture Radar). Velocities in the fast-moving central parts of the glacier range from about 1.3 km a−1 on the grounded part to about 2.6 km a−1 on the floating part. Velocity increases rapidly just below the grounding line. For the floating part, velocities are approximately 0.3 km a−1 faster than previously established from Landsat images by other workers. This observation suggests that the discharge is larger and, therefore, the mass balance less positive than previously thought; however, our study also shows that current information is insufficient to allow for precise mass-balance calculations. Images of the glacier front show that a calving event released an iceberg about 5 km wide between February and December 1992. The position of the glacier front has not changed substantially between 1973 (Landsat image) and 1992 (ERS-1 images).

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          Most cited references10

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          West Antarctic ice sheet and CO2 greenhouse effect: a threat of disaster

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            Application of image cross-correlation to the measurement of glacier velocity using satellite image data

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              Satellite-Image-Derived Velocity Field of an Antarctic Ice Stream

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                Author and article information

                Journal
                applab
                Annals of Glaciology
                A. Glaciology.
                Cambridge University Press (CUP)
                0260-3055
                1727-5644
                1995
                January 2017
                : 21
                :
                : 277-283
                Article
                10.1017/S0260305500015949
                208d3307-e98c-41b9-ad3a-c937ff7abb17
                © 1995
                History

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