• DocumentCode
    1168522
  • Title

    Spatial and temporal variations in acoustic propagation characteristics at the New England shelfbreak front

  • Author

    Lynch, J.F. ; Newhall, A.E. ; Sperry, B. ; Gawarkiewicz, G. ; Fredricks, A. ; Tyack, P. ; Chiu, C.S. ; Abbot, P.

  • Author_Institution
    Woods Hole Oceanogr. Instn., MA, USA
  • Volume
    28
  • Issue
    1
  • fYear
    2003
  • fDate
    1/1/2003 12:00:00 AM
  • Firstpage
    129
  • Lastpage
    150
  • Abstract
    The spatial and temporal variability of the acoustic field in the region of a strong coastal shelfbreak front are examined, using the high-resolution environmental data from the 1996-1997 New England shelfbreak PRIMER experiment to provide input to acoustic propagation models. Specifically, the "SeaSoar" undulating conductivity-temperature-depth (CTD) probe across-shelf transects provide 1-km along-track resolution, including the front, during the spring, summer, and winter seasons. These data allow one to study the diurnal and seasonal temporal variation of the acoustic field, as well as the varying spatial structure of the field. Using the RAM parabolic equation code, across-shelf acoustic field structure at 200, 400, and 1000 Hz is studied for various source depths. A number of interesting propagation effects are noted, the most interesting of which are the inhibition of strong acoustic-bottom interaction by the warm shelf water beneath the shelfbreak front and the existence of small-scale ducts near the front, due to offshore transport. Data from the vertical line arrays deployed as part of PRIMER offer partial validation of the predictions made. Specifically, it is seen that the mean received levels are in reasonable accord with propagation calculations made using locally measured bottom properties and the SeaSoar water-column measurements.
  • Keywords
    oceanographic regions; underwater sound; 200 to 1000 Hz; AD 1996; AD 1997; New England; North Atlantic; USA; United States; acoustic propagation; acoustics; coastal shelfbreak; diurnal variation; dynamics; nonlinear internal wave; ocean; season; seasonal variation; shelfbreak front; soliton; spatial variation; spring; summer; temporal variability; temporal variation; thermohaline structure; underwater sound; warm shelf water; winter; Acoustic measurements; Acoustic propagation; Acoustic waves; Area measurement; Force measurement; Instruments; Probes; Professional communication; Sea measurements; Spatial resolution;
  • fLanguage
    English
  • Journal_Title
    Oceanic Engineering, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0364-9059
  • Type

    jour

  • DOI
    10.1109/JOE.2003.808833
  • Filename
    1190142