Geophysical Research Letters · 2019 · 54 citations · 34 references
GlacierFreshwater Calving GlacierEngineeringGeomorphologyOceanographyGlacial ProcessGlaciar GreyEarth ScienceSocial SciencesIce-water SystemGlaciologyGeographyGeologySea IceCryosphereUnderwater MeltingIce-structure InteractionPaleoecologyIce FrontBuoyant Force
Abstract Underwater ice geometry at the front of calving glaciers provides crucial information for calving and underwater melting. In this study, we present ice geometry captured by operating a side‐scanning sonar near the front of Glaciar Grey, a freshwater calving glacier in Patagonia. The observations revealed ice projecting into the lake with a substantially different structure from that of known tidewater glaciers. Terrace‐like ice structures were found at several tens of meters below the water surface and extended up to 100 m from the aerial ice front. The structure depicted by the sonar was confirmed when the ice front was exposed by flotation during a major calving event. We infer that buoyant force acting on the submerged ice terrace acted as a driver of the calving event. Our study demonstrates the importance of the underwater ice geometry, which affects sizable calving at the front of freshwater calving glaciers.
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Contribution of the Patagonia Icefields of South America to Sea Level Rise
Eric Rignot, Andrés Rivera, Gino Casassa · Science · 2003 · 508 citations · Full text
Glacier, Engineering, Geomorphology +22
Decadal changes from a multi-temporal glacier inventory of Svalbard
Christopher Nuth, Jack Kohler, Maximilian F. Konig et al. · The cryosphere · 2013 · 287 citations · Full text
Climatology, Glacier, Engineering +11