DocumentCode :
1890121
Title :
A semi-empirical basis for a modified Lambert´s law for low-grazing bottom backscattering
Author :
Caruthers, Jerald W. ; Novarini, Jorge C.
Author_Institution :
Naval Res. Lab., Naval Ocean Res. & Dev. Activity, Stennis Space Center, MS, USA
Volume :
3
fYear :
1995
fDate :
9-12 Oct 1995
Firstpage :
1676
Abstract :
Recently developed bottom scattering models require an array of parameters to describe low-grazing backscattering. In stark contrast to this is the simplicity of Lambert´s law which requires only a single empirical coefficient. Lambert´s law is currently used for most sonar applications, but it has shortcomings. It has a cosine-squared angular functional form which sometimes fails to fit data. What little theoretical justification there is for Lambert´s law is based on surface roughness scattering. Today, it is commonly thought that, at low-grazing, volume inhomogeneities are mainly responsible for backscatter. An angular functional form for volume-induced backscattering referenced to the bottom surface plane would, in general, be different from cosine-squared. The authors discuss a development of volume-induced backscattering referenced to a flat bottom which provides a theoretical basis for a modified angular functional form. This functional form involves a Lambert-like coefficient times an angular function. The coefficient may have values close to those used in Lambert´s law (e.g., Mackenzie´s value of 27 dB) for various sediments and, through part of the angular range, the angular form can be Lambert like. Thus, Lambert´s law is a subset, and has been successful in some angular regions where it applies. While a theoretical form for the coefficient and the angular dependency has been derived some of the parameters needed would probably be established empirically, leaving the possibility that one might as well determine the single coefficient empirically. From this viewpoint, the extensive work already done with Lambert´s law could be extended to this new angular form
Keywords :
acoustic wave scattering; backscatter; bathymetry; geophysical techniques; oceanographic techniques; seafloor phenomena; sediments; sonar imaging; Lambert law; acoustic imaging; acoustic scattering; bathymetry; geophysical measurement technique; grazing incidence; low-grazing bottom backscattering; marine sediment; modified Lambert´s law; ocean; rough surface; sea; seafloor topography; semi-empirical basis; sonar imaging; surface roughness; theory; Acoustic scattering; Backscatter; Rough surfaces; Scattering parameters; Sea floor; Sea surface; Sediments; Sonar applications; Surface fitting; Surface roughness;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
OCEANS '95. MTS/IEEE. Challenges of Our Changing Global Environment. Conference Proceedings.
Conference_Location :
San Diego, CA
Print_ISBN :
0-933957-14-9
Type :
conf
DOI :
10.1109/OCEANS.1995.528736
Filename :
528736
Link To Document :
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