DocumentCode
375866
Title
Estimation of underwater acoustic fields at high frequencies
Author
Temsamani, Abdellatif Bey ; Vandenplas, Steve ; Van Biesen, Leo
Author_Institution
Vrije Univ., Brussels, Belgium
Volume
3
fYear
2001
fDate
2001
Firstpage
1562
Abstract
A parametric modeling of the underwater acoustic field is investigated in a laboratory scale at high frequencies (150-850 kHz). The aim is to develop experimentally verifiable theoretical models to investigate the acoustic field propagation in elastic and viscoelastic or porous media. To achieve this goal, the efforts have been directed to three integral parts pertaining to the development of the methods. The first part deals with the modeling of the underwater acoustic field following different approaches. The second treats the development of an efficient estimator to identify the model parameters from the experimental data. The third and the final part is the experimental verification of the theoretical approaches. Two new but different approaches are investigated and compared for the modeling of the bounded field diffracted in a water medium. Once the parametric models for the incident underwater acoustic field are determined, the application to the estimation of acoustical properties of viscoelastic or porous media by transmission or reflection measurements is carried out
Keywords
modelling; underwater sound; 150 to 850 kHz; acoustic propagation; acoustical properties; elastic media; experimental data; experimentally verifiable theoretical models; parametric modelling; parametric models; porous media; reflection measurements; transmission measurements; underwater acoustic fields; viscoelastic media; water; Acoustic diffraction; Acoustic measurements; Acoustic propagation; Acoustic reflection; Elasticity; Frequency estimation; Laboratories; Parametric statistics; Underwater acoustics; Viscosity;
fLanguage
English
Publisher
ieee
Conference_Titel
OCEANS, 2001. MTS/IEEE Conference and Exhibition
Conference_Location
Honolulu, HI
Print_ISBN
0-933957-28-9
Type
conf
DOI
10.1109/OCEANS.2001.968064
Filename
968064
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