Literature DB >> 15810696

Statistics and vertical directionality of low-frequency ambient noise at the North Pacific Acoustic Laboratory site.

Arthur B Baggeroer1, Edward K Scheer, J A Colosi, B D Cornuelle, B D Dushaw, M A Dzieciuch, B M Howe, J A Mercer, W H Munk, R C Spindel, P F Worcester.   

Abstract

We examine statistical and directional properties of the ambient noise in the 10-100 Hz frequency band from the NPAL array. Marginal probability densities are estimated as well as mean square levels, skewness and kurtoses in third octave bands. The kurotoses are markedly different from Gaussian except when only distant shipping is present. Extremal levels reached approximately 150 dB re 1 micro Pa, suggesting levels 60dB greater than the mean ambient were common in the NPAL data sets. Generally, these were passing ships. We select four examples: i) quiescent noise, ii) nearby shipping, iii) whale vocalizations and iv) a micro earthquake for the vertical directional properties of the NPAL noise since they are representative of the phenomena encountered. We find there is modest broadband coherence for most of these cases in their occupancy band across the NPAL aperture. Narrowband coherence analysis from VLA to VLA was not successful due to ambiguities. Examples of localizing sources based upon this coherence are included. kw diagrams allow us to use data above the vertical aliasing frequency. Ducted propagation for both the quiescent and micro earthquake (T phase) are identified and the arrival angles of nearby shipping and whale vocalizations. MFP localizations were modestly successful for nearby sources, but long range ones could not be identified, most likely because of signal mismatch in the MFP replica.

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Year:  2005        PMID: 15810696     DOI: 10.1121/1.1855035

Source DB:  PubMed          Journal:  J Acoust Soc Am        ISSN: 0001-4966            Impact factor:   1.840


  1 in total

1.  Spatial Vertical Directionality and Correlation of Low-Frequency Ambient Noise in Deep Ocean Direct-Arrival Zones.

Authors:  Qiulong Yang; Kunde Yang; Ran Cao; Shunli Duan
Journal:  Sensors (Basel)       Date:  2018-01-23       Impact factor: 3.576

  1 in total

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