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Small strain stiffness of salt-cemented granular media under low confinement

Authors
Truong, Q. H.Lee, C.Kim, Y. U.Lee, J. S.
Issue Date
10월-2012
Publisher
ICE PUBL
Keywords
fabric/structure of soils; laboratory tests; stiffness; waves and wave loading
Citation
GEOTECHNIQUE, v.62, no.10, pp.949 - 953
Indexed
SCIE
SCOPUS
Journal Title
GEOTECHNIQUE
Volume
62
Number
10
Start Page
949
End Page
953
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/107421
DOI
10.1680/geot.10.T.004
ISSN
0016-8505
Abstract
The mechanical behaviour of granular soils is affected by particle bonding including natural cementation. This study addresses a simple model of small strain stiffness and salt concentration based on the wave measurements of salt-cemented particulate media. Glass beads with a median diameter of D-50 = 0.5 mm are prepared in rectangular cells using the water-pluviated method in salt water with different concentrations. Piezo disc elements and bender elements embedded in the cell are used for the measurements of the compressional and shear waves. The relationships between the elastic wave velocities and salt concentration show an exponential function. The measured small strain stiffness matches well the predicted small strain stiffness based on the micromechanics of simple cubic monosized spherical particles. This study demonstrates that the salt concentration in a salt-cemented specimen can be evaluated by using elastic wave velocities.
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