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      Tracing Atlantic Water Signature in the Arctic Sea Ice Cover East of Svalbard

      , , , ,
      Advances in Meteorology
      Hindawi Limited

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          Abstract

          We focus on the Arctic Ocean between Svalbard and Franz Joseph Land in order to elucidate the possible role of Atlantic water (AW) inflow in shaping ice conditions. Ice conditions substantially affect the temperature regime of the Spitsbergen archipelago, particularly in winter. We test the hypothesis that intensive vertical mixing at the upper AW boundary releases substantial heat upwards that eventually reaches the under-ice water layer, thinning the ice cover. We examine spatial and temporal variation of ice concentration against time series of wind, air temperature, and AW temperature. Analysis of 1979–2011 ice properties revealed a general tendency of decreasing ice concentration that commenced after the mid-1990s. AW temperature time series in Fram Strait feature a monotonic increase after the mid-1990s, consistent with shrinking ice cover. Ice thins due to increased sensible heat flux from AW; ice erosion from below allows wind and local currents to more effectively break ice. The winter spatial pattern of sea ice concentration is collocated with patterns of surface heat flux anomalies. Winter minimum sea ice thickness occurs in the ice pack interior above the AW path, clearly indicating AW influence on ice thickness. Our study indicates that in the AW inflow region heat flux from the ocean reduces the ice thickness.

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          Accelerated decline in the Arctic sea ice cover

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            On the halocline of the Arctic Ocean

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              Thinning of the Arctic sea-ice cover

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                Author and article information

                Journal
                Advances in Meteorology
                Advances in Meteorology
                Hindawi Limited
                1687-9309
                1687-9317
                2012
                2012
                : 2012
                :
                : 1-11
                Article
                10.1155/2012/201818
                9046ef5e-1434-4894-b162-a7cacb117a33
                © 2012

                http://creativecommons.org/licenses/by/3.0/

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