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Backscattering from buried sediment layers: The equivalent input backscattering strength model
- Source :
- The Journal of the Acoustical Society of America (0001-4966) (Acoustical Society of America), 2001, Vol. 109, N. 1, P. 122-132
- Publication Year :
- 2001
- Publisher :
- Acoustical Society of America, 2001.
-
Abstract
- Signals received by low-frequency multibeam echosounders are strongly affected by sound penetration inside the upper sediment layers and by backscattering from buried layers down to depths of a few meters; this may lead to serious ambiguities and misinterpretations of experimental data. These phenomena are modeled here using a concept of equivalent input backscattering strength (EIBS), based on a combination of classical models of local backscattering strength and propagation inside fluid layered media. The local backscattering strength at a buried interface is expressed first to account for the impedance adaptation due to the overlying layers, for the angular refraction effects due to the velocity profile, and for the layered structure of the underlying medium. It is then transferred to the upper water-sediment interface, accounting fur propagation inside the layered stack; the transfer coefficient is obtained from the classical theory of plane wave propagation in layered media. The volume backscattering effects are processed in the same way and account for the finite thickness of the layers. The various contributions are finally summed to give the backscattering strength, at the upper interface, that features the various effects of propagation and attenuation inside the layered structure.
- Subjects :
- Materials science
Acoustics and Ultrasonics
Backscatter
Sediment properties
Acoustics
Echosounding
Sound propagation
01 natural sciences
Layered structure
03 medical and health sciences
0302 clinical medicine
Arts and Humanities (miscellaneous)
0103 physical sciences
Sediment structure
030223 otorhinolaryngology
010301 acoustics
Electrical impedance
Physics::Atmospheric and Oceanic Physics
Plane wave propagation
Classical theory
Acoustic properties
Sediment
Computational physics
Multibeam sonar
Equivalent input
Acoustic impedance
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- The Journal of the Acoustical Society of America (0001-4966) (Acoustical Society of America), 2001, Vol. 109, N. 1, P. 122-132
- Accession number :
- edsair.doi.dedup.....635131ec68a84eed4fdd6ce9355f0699