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Journal Article

Transmission loss patterns from acoustic harassment and deterrent devices do not always follow geometrical spreading predictions

Ari D. Shapiro; Jakob Tougaard; Poul Boel Jørgensen; Line A. Kyhn; Jeppe Dalgaard Balle; Cristina Bernardez; Arne Fjälling; Junita Karlsen; Magnus Wahlberg
Marine Mammal Science · Vol. 25, Issue 1 · pp. 53-67 · 2009

Abstract

Acoustic harassment and deterrent devices have become increasingly popular mitigation tools for negotiating the impacts of marine mammals on fisheries. The rationale for their variable effectiveness remains unexplained, but high variability in the surrounding acoustic field may be relevant. In the present study, the sound fields of one acoustic harassment device and three acoustic deterrent devices were measured at three study sites along the Scandinavian coast. Superimposed onto an overall trend of decreasing sound exposure levels with increasing range were large local variations in the sound level for all sources in each of the environments. This variability was likely caused by source directionality, inter‐ping source level variation and multipath interference. Rapid and unpredictable variations in the sound level as a function of range deviated from expectations derived from spherical and cylindrical spreading models and conflicted with the classic concept of concentric zones of increasing disturbance with decreasing range. Under such conditions, animals may encounter difficulties when trying to determine the direction to and location of a sound source, which may complicate or jeopardize avoidance responses.

Bibliographic Information

JournalMarine Mammal Science
PublisherWiley
Publication Date2009-01-01
Publication Year2009
Volume25
Issue1
Pages53-67
Document TypeJournal Article
Print ISSN0824-0469
eISSN1748-7692
DOI10.1111/j.1748-7692.2008.00243.x
SubjectMarine Biology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/17487692
Publisher PageOpen Publisher Page
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