DocumentCode
3261521
Title
The strength of correlations between geotechnical variables and acoustic classifications
Author
Preston, Jon M. ; Collins, William T. ; Mosher, David C. ; Poeckert, Roland H. ; Kuwahara, Ron H.
Author_Institution
Quester Tangent Corp., Sidney, BC, Canada
Volume
3
fYear
1999
fDate
1999
Firstpage
1123
Abstract
Seabed grain size, shear strength, bearing strength, and porosity were measured at 15 sites, all in bays and harbours around southern Vancouver Island. Sounder echoes at 38 and 200 kHz from the same sites were classified using the QTC VIEWTM technology. This approach uses a feature set generated from the direct echoes by a set of algorithms and then reduced by multivariate analysis, with similar acoustic responses put into the same class. Canonical correlation analysis was used to uncover correlations between two data sets: the frequency of occurrence of each acoustic class, and the four geotechnical variables. Bearing strength was found to be the major contributor to the first geotechnical canonical variable, which correlated with classes from the 38-kHz echoes with a coefficient of 0.94
Keywords
geophysical techniques; oceanographic regions; oceanographic techniques; seafloor phenomena; sediments; seismology; sonar; 200 kHz; 38 kHz; British Columbia; Canada; North Pacific; QTC VIEW; Vancouver Island; acoustic classification; acoustic method; bay; bearing strength; coast; geophysical measurement technique; geotechnical variables; grain size; harbour; marine sediment; mechanical property; porosity; rock mechanics; seabed; seafloor geology; seismology; shear strength; sonar; strength; ultrasonic method; Algorithm design and analysis; Frequency; Geologic measurements; Geology; Grain size; Gravity; Oceans; Sea measurements; Sediments; Size measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
OCEANS '99 MTS/IEEE. Riding the Crest into the 21st Century
Conference_Location
Seattle, WA
Print_ISBN
0-7803-5628-4
Type
conf
DOI
10.1109/OCEANS.1999.800147
Filename
800147
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