In this paper, a new approach is proposed to determine the undrained shear strength of intact clays using the undrained rigidity index inferred from piezocones and shear wave velocity measurements based on the theory of spherical cavity expansion. The derived cone factors are further simplified for young, uncemented (non-structured) clays to be solely expressed in terms of the cone behaviour type index. Moreover, an empirical expression is suggested to relate the undrained shear strength of fissured clays to the cone and shear wave measurements. The proposed approach is used to assess the values of undrained shear strengths in several well-reported test sites. The estimated strengths are found to be in a good agreement with the related field and laboratory measurements in intact clays, whereas in fissured clays, the estimated undrained strengths are shown to match less favourably with the laboratory measurements. This may be attributed to the strong dependence of the undrained shear strength of such clays on the site-specific orientations and properties of the prevailing fissures.
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April 2021
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Research Article|
November 25 2020
Undrained shear strength assessment using piezocone and shear wave measurements Available to Purchase
Sayed M. Ahmed, MSc, PhD
;
Sayed M. Ahmed, MSc, PhD
Assistant Professor, Department of Structural Engineering, Ain Shams University, Cairo, Egypt (corresponding author: sayed_mohamed@eng.asu.edu.eg)
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Shehab S. Agaiby, MSc, PhD
Shehab S. Agaiby, MSc, PhD
Associate Professor, Department of Public Works, Cairo University, Giza, Egypt
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Publisher: Emerald Publishing
Received:
May 06 2020
Accepted:
October 26 2020
Online ISSN: 1751-8563
Print ISSN: 1353-2618
ICE Publishing: All rights reserved
2020
Proceedings of the Institution of Civil Engineers - Geotechnical Engineering (2021) 174 (2): 126–138.
Article history
Received:
May 06 2020
Accepted:
October 26 2020
Citation
Ahmed SM, Agaiby SS (2021), "Undrained shear strength assessment using piezocone and shear wave measurements". Proceedings of the Institution of Civil Engineers - Geotechnical Engineering, Vol. 174 No. 2 pp. 126–138, doi: https://doi.org/10.1680/jgeen.20.00090
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