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      Dynamics of tidewater glaciers: comparison of three models

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      Journal of Glaciology
      Cambridge University Press (CUP)

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          Abstract

          A minimal model of a tidewater glacier based solely on mass conservation is compared with two one-dimensional numerical flowline models, one with the calving rate proportional to water depth, and the other with the flotation criterion as a boundary condition at the glacier terminus. The models were run with two simplified bed geometries and two mass-balance formulations. The models simulate the full cycle of length variations and the equilibrium states for a tidewater glacier. This study shows that the branching of the equilibrium states depends significantly on the bed geometry. The similarity between the results of the three models indicates that if there is a submarine undulation at the terminus of a tidewater glacier, any model in which the frontal ice loss is related to the water depth yields qualitatively the same non-linear behaviour. For large glaciers extending into deep water, the flotation model causes unrealistic behaviour.

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          Most cited references15

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          The Creep of Polycrystalline Ice

          J. W. Glen (1955)
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            Fast tidewater glaciers

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              A Model for Sedimentation by Tidewater Glaciers

              Sampling of sediment from the fjord floor in front of tidewater glaciers in Glacier Bay, Alaska, has provided information about processes in this restricted glacimarine (Dreimanis 1979) setting. Sediment sampling, in conjunction with oceanographic and glacial dynamics data, has also enabled the discrimination of sediment types and their facies associations. Deposits are strongly controlled by: sea-water characteristics, position and sediment discharge of melt-water streams, iceberg calving, and rate of glacierfront retreat.
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                Author and article information

                Journal
                applab
                Journal of Glaciology
                J. Glaciol.
                Cambridge University Press (CUP)
                0022-1430
                1727-5652
                2006
                September 2017
                : 52
                : 177
                : 183-190
                Article
                10.3189/172756506781828755
                fd8a0f72-92bb-49e6-84fd-25be03989e96
                © 2006
                History

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