DocumentCode :
1050883
Title :
A Multivariate Correlation Analysis of High- Frequency Bottom Backscattering Strength Measurements With Geotechnical Parameters
Author :
Simons, Dick G. ; Snellen, Mirjam ; Ainslie, Michael A.
Author_Institution :
Delft Univ. of Technol., Delft
Volume :
32
Issue :
3
fYear :
2007
fDate :
7/1/2007 12:00:00 AM
Firstpage :
640
Lastpage :
650
Abstract :
Sound backscattered from the seabed has been measured in a 10x10-nmi2 region of the North Sea, characterized by a variety of bottom types, including mud, sand, and gravel. The backscattering strength measurements are made by a forward-looking sonar, operating at 100 kHz and tilted at an angle of 30deg from the horizontal. Fifty bottom-grab samples, representative of the uppermost 20 cm, were taken and analyzed for gravel content, shell content, and grain-size distribution. The backscatter measurements are correlated with the gravel percentage, shell percentage, and median grain size. A strong positive correlation of the measured backscatter strength with shell and gravel percentage is observed. Additionally, a small positive correlation between the backscatter strength and the median grain size of the sand and mud part exists. The derived values for the backscatter strength compare well to those presented in the recent literature. From a least squares curve-fitting analysis, an empirical expression is obtained giving backscatter strength as a function of gravel percentage, shell percentage, and the median grain size of the sand and mud part.
Keywords :
acoustic wave scattering; backscatter; curve fitting; least squares approximations; oceanographic techniques; sand; sediments; sonar; underwater sound; North Sea; bottom grab samples; forward looking sonar; frequency 100 kHz; geotechnical parameters; gravel seabottom; high frequency bottom backscattering strength measurement; least squares curve fitting analysis; mud seabottom; multivariate correlation analysis; sand seabottom; seabed sound backscattering; seabottom grain size distribution; seabottom gravel content; seabottom shell content; Acoustic scattering; Backscatter; Frequency measurement; Geologic measurements; Grain size; Sea floor; Sea measurements; Sediments; Sonar measurements; Space technology; Modeling; scattering; seafloor; underwater acoustic measurements;
fLanguage :
English
Journal_Title :
Oceanic Engineering, IEEE Journal of
Publisher :
ieee
ISSN :
0364-9059
Type :
jour
DOI :
10.1109/JOE.2007.891890
Filename :
4443173
Link To Document :
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