Seabed Attenuation In Water Saturated Sands On New Jersey Continental Shelf In 50-3000 Hz Band

dc.contributor.utaustinauthorKnobles, D. P.en
dc.creatorKnobles, D. P.en
dc.date.accessioned2015-04-16T14:47:42Zen
dc.date.available2015-04-16T14:47:42Zen
dc.date.issued2010-09en
dc.description.abstractThe Shallow Water 2006 ocean acoustics experiment on the New Jersey continental shelf was designed in part to determine the frequency dependence of sound speed and attenuation for a sandy sediment in the 50-3000 Hz band. Two acoustic arrays in L-geometries were positioned about 25 km apart on a ridge of coarse sand. Segments of narrowband and impulsive acoustic data were analyzed for the information they contain on the seabed geoacoustic structure and the frequency dependence of the top sediment layer attenuation. The results clearly demonstrate a nonlinear frequency dependence of the absorption.en
dc.description.departmentApplied Research Laboratoriesen
dc.identifier.citationD. P. Knobles. AIP Conference Proceedings 1272, 140 (Sep., 2010); doi: 10.1063/1.3493055en
dc.identifier.doi10.1063/1.3493055en
dc.identifier.issn0094-243Xen
dc.identifier.urihttp://hdl.handle.net/2152/29419en
dc.language.isoEnglishen
dc.relation.ispartofserialShallow-Water Acousticsen_US
dc.rightsAdministrative deposit of works to UT Digital Repository: This works author(s) is or was a University faculty member, student or staff member; this article is already available through open access or the publisher allows a PDF version of the article to be freely posted online. The library makes the deposit as a matter of fair use (for scholarly, educational, and research purposes), and to preserve the work and further secure public access to the works of the University.en
dc.subjectshallow water acousticsen
dc.subjectseabed geoacousticsen
dc.subjectattenuationen
dc.subjectmarine-sedimentsen
dc.subjectacoustic-wavesen
dc.subjectfrequency rangeen
dc.subjectelastic wavesen
dc.subjectambient noiseen
dc.subjectpropagationen
dc.subjectsounden
dc.subjectmediaen
dc.subjectflooren
dc.subjectacousticsen
dc.titleSeabed Attenuation In Water Saturated Sands On New Jersey Continental Shelf In 50-3000 Hz Banden
dc.typeArticleen

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