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      Under-ice ambient noise in Eastern Beaufort Sea, Canadian Arctic, and its relation to environmental forcing.

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          Abstract

          This paper analyzes an 8-month time series (November 2005 to June 2006) of underwater noise recorded at the mouth of the Amundsen Gulf in the marginal ice zone of the western Canadian Arctic when the area was >90% ice covered. The time-series of the ambient noise component was computed using an algorithm that filtered out transient acoustic events from 7-min hourly recordings of total ocean noise over a [0-4.1] kHz frequency band. Under-ice ambient noise did not respond to thermal changes, but showed consistent correlations with large-scale regional ice drift, wind speed, and measured currents in upper water column. The correlation of ambient noise with ice drift peaked for locations at ranges of ~300 km off the mouth of the Amundsen Gulf. These locations are within the multi-year ice plume that extends westerly along the coast in the Eastern Beaufort Sea due to the large Beaufort Gyre circulation. These results reveal that ambient noise in Eastern Beaufort Sea in winter is mainly controlled by the same meteorological and oceanographic forcing processes that drive the ice drift and the large-scale circulation in this part of the Arctic Ocean.

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          Author and article information

          Journal
          J. Acoust. Soc. Am.
          The Journal of the Acoustical Society of America
          Acoustical Society of America (ASA)
          1520-8524
          0001-4966
          Jul 2013
          : 134
          : 1
          Affiliations
          [1 ] Grenoble Images Parole Signal Automatique Lab, Grenoble Institute of Technology and Centre National de la Recherche Scientifique, 11 rue des Mathématiques, 38402 Saint-Martin d'Hères, France. bazile.kinda@ensta-bretagne.fr
          Article
          10.1121/1.4808330
          23862786
          511a8ed6-4494-47a5-8714-fe38334ad92c
          History

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