Compression and shear wave velocities of unsaturated soils
In this report, an ultrasonic velocity test system consisting of compression and shear wave transducers, a pulser and a data acquisition system was used to obtain the compression and shear wave velocities of three different soil types. The pressure plate test was also conducted to determine the chan...
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2009
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sg-ntu-dr.10356-160912023-03-03T17:19:46Z Compression and shear wave velocities of unsaturated soils Wee, Rayner Jian De. Leong Eng Choon School of Civil and Environmental Engineering DRNTU::Engineering::Civil engineering::Geotechnical In this report, an ultrasonic velocity test system consisting of compression and shear wave transducers, a pulser and a data acquisition system was used to obtain the compression and shear wave velocities of three different soil types. The pressure plate test was also conducted to determine the change in water content over various matric suction values. The effects of degree of saturation, the compression and shear wave velocities were investigated. Gassmann equation was found to be inadequate in estimating the P-wave velocity. A modification to Gassmann equation still underestimates the P-wave velocity by 22% to 63%. Bachelor of Engineering (Civil) 2009-05-21T01:39:57Z 2009-05-21T01:39:57Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/16091 en Nanyang Technological University 126 p. application/pdf |
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DRNTU::Engineering::Civil engineering::Geotechnical Wee, Rayner Jian De. Compression and shear wave velocities of unsaturated soils |
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In this report, an ultrasonic velocity test system consisting of compression and shear wave transducers, a pulser and a data acquisition system was used to obtain the compression and shear wave velocities of three different soil types. The pressure plate test was also conducted to determine the change in water content over various matric suction values. The effects of degree of saturation, the compression and shear wave velocities were investigated. Gassmann equation was found to be inadequate in estimating the P-wave velocity. A modification to Gassmann equation still underestimates the P-wave velocity by 22% to 63%. |
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Leong Eng Choon |
author_facet |
Leong Eng Choon Wee, Rayner Jian De. |
format |
Final Year Project |
author |
Wee, Rayner Jian De. |
author_sort |
Wee, Rayner Jian De. |
title |
Compression and shear wave velocities of unsaturated soils |
title_short |
Compression and shear wave velocities of unsaturated soils |
title_full |
Compression and shear wave velocities of unsaturated soils |
title_fullStr |
Compression and shear wave velocities of unsaturated soils |
title_full_unstemmed |
Compression and shear wave velocities of unsaturated soils |
title_sort |
compression and shear wave velocities of unsaturated soils |
publishDate |
2009 |
url |
http://hdl.handle.net/10356/16091 |
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1759855664523378688 |