Title :
A technique for measuring in-situ compressional wave speed dispersion in marine sediments
Author :
Holland, Charles W. ; Dettmer, Jan ; Dosso, Stan E.
Author_Institution :
Appl. Res. Lab., Pennsylvania State Univ., State College, PA
Abstract :
Compressional speed dispersion exists in all marine sediments. If the dispersion is great enough it may play a significant role in acoustic interaction with the seabed. On the other hand if dispersion is weak, seabed models and databases can be substantially simpler. The ocean acoustics community is divided on this issue, in part because of the lack of observations. One of the experimental challenges has been to measure speed over several decades of frequency using a single technique so that observed speed changes cannot be due to different biases in the techniques. A simple in-situ experimental approach was developed that measures the critical angle as a function of frequency and thus infers the speed dispersion. Measurements on the mid to outer continental shelf (Malta Plateau and the New Jersey Shelf STRATAFORM area) show a weak dispersion over the band from ~102-104 Hz. This implies (via the Kramers-Kronig relations) that the compressional wave attenuation for these sediments is small and/or approximately linear over this band
Keywords :
acoustic dispersion; dispersive media; oceanographic regions; oceanographic techniques; seafloor phenomena; sediments; underwater acoustic propagation; Kramers-Kronig relations; Malta Plateau; New Jersey Shelf STRATAFORM area; acoustic interaction; compressional wave attenuation; compressional wave speed dispersion; critical angle; dispersive media; marine sediments; ocean acoustics; seabed databases; seabed models; speed dispersion measurement; Acoustic measurements; Area measurement; Databases; Dispersion; Frequency measurement; Goniometers; Oceans; Sea measurements; Sediments; Velocity measurement; Dispersive media; frequency dependence of compressional wave attenuation; sediments; speed dispersion measurement;
Journal_Title :
Oceanic Engineering, IEEE Journal of
DOI :
10.1109/JOE.2005.862136