Literature DB >> 24116515

Observations of sound-speed fluctuations in the western Philippine Sea in the spring of 2009.

John A Colosi1, Lora J Van Uffelen, Bruce D Cornuelle, Matthew A Dzieciuch, Peter F Worcester, Brian D Dushaw, Steven R Ramp.   

Abstract

As an aid to understanding long-range acoustic propagation in the Philippine Sea, statistical and phenomenological descriptions of sound-speed variations were developed. Two moorings of oceanographic sensors located in the western Philippine Sea in the spring of 2009 were used to track constant potential-density surfaces (isopycnals) and constant potential-temperature surfaces (isotherms) in the depth range 120-2000 m. The vertical displacements of these surfaces are used to estimate sound-speed fluctuations from internal waves, while temperature/salinity variability along isopycnals are used to estimate sound-speed fluctuations from intrusive structure often termed spice. Frequency spectra and vertical covariance functions are used to describe the space-time scales of the displacements and spiciness. Internal-wave contributions from diurnal and semi-diurnal internal tides and the diffuse internal-wave field [related to the Garrett-Munk (GM) spectrum] are found to dominate the sound-speed variability. Spice fluctuations are weak in comparison. The internal wave and spice frequency spectra have similar form in the upper ocean but are markedly different below 170-m depth. Diffuse internal-wave mode spectra show a form similar to the GM model, while internal-tide mode spectra scale as mode number to the minus two power. Spice decorrelates rapidly with depth, with a typical correlation scale of tens of meters.

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Year:  2013        PMID: 24116515     DOI: 10.1121/1.4818784

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


  1 in total

1.  A test of deep water Rytov theory at 284 Hz and 107 km in the Philippine Sea.

Authors:  Rex K Andrew; Andrew W White; James A Mercer; Matthew A Dzieciuch; Peter F Worcester; John A Colosi
Journal:  J Acoust Soc Am       Date:  2015-10       Impact factor: 1.840

  1 in total

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