Unusually loud ambient noise in tidewater glacier fjords: A signal of ice melt

In glacierized fjords, the ice‐ocean boundary is a physically and biologically dynamic environment that is sensitive to both glacier flow and ocean circulation. Ocean ambient noise offers insight into processes and change at the ice‐ocean boundary. Here we characterize fjord ambient noise and show t...

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Veröffentlicht in:Geophysical research letters 2015-04, Vol.42 (7), p.2309-2316
Hauptverfasser: Pettit, Erin Christine, Lee, Kevin Michael, Brann, Joel Palmer, Nystuen, Jeffrey Aaron, Wilson, Preston Scot, O'Neel, Shad
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Sprache:eng
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Zusammenfassung:In glacierized fjords, the ice‐ocean boundary is a physically and biologically dynamic environment that is sensitive to both glacier flow and ocean circulation. Ocean ambient noise offers insight into processes and change at the ice‐ocean boundary. Here we characterize fjord ambient noise and show that the average noise levels are louder than nearly all measured natural oceanic environments (significantly louder than sea ice and nonglacierized fjords). Icy Bay, Alaska, has an annual average sound pressure level of 120 dB (referenced to 1 μPa) with a broad peak between 1000 and 3000 Hz. Bubble formation in the water column as glacier ice melts is the noise source, with variability driven by fjord circulation patterns. Measurements from two additional fjords, in Alaska and Antarctica, support that this unusually loud ambient noise in Icy Bay is representative of glacierized fjords. These high noise levels likely alter the behavior of marine mammals. Key Points Glacierized fjords are the loudest measured ambient noise oceanic environment The noise source is production of bubbles in water by melting of glacier ice These high noise levels may alter the behavior of marine mammals
ISSN:0094-8276
1944-8007
DOI:10.1002/2014GL062950