Assessment of clay stiffness and strength parameters using index properties

Ahmed, Sayed;

Abstract


A new approach is developed to determine the shear wave velocity in saturated soft to firm clays using measurements of the liquid limit, plastic limit, and natural water content with depth. The shear wave velocity is assessed using the site-specific variation of the natural water content with the effective mean stress. Subsequently, an iterative process is envisaged to obtain the clay stiffness and strength parameters. The at-rest earth pressure coefficient, as well as bearing capacity factor and rigidity index related to the cone penetration test, is also acquired from the analyses. Comparisons are presented between the measured clay parameters and the results of corresponding analyses in five different case studies. It is demonstrated that the presented approach can provide acceptable estimates of saturated clay stiffness and strength parameters. One of the main privileges of the presented methodology is the site-specific procedure developed based on the relationships between clay strength and stiffness parameters, rather than adopting direct correlations. Despite of the utilized iterative processes, the presented approach can be easily implemented using a simple spreadsheet, benefiting both geotechnical researchers and practitioners.


Other data

Title Assessment of clay stiffness and strength parameters using index properties
Authors Ahmed, Sayed 
Keywords Atterberg limits;Cone penetration test;Shear wave velocity;Effective friction angle;Small-strain shear modulus;Soft to firm clays;Undrained shear strength;Constrained modulus
Issue Date 1-Jun-2018
Journal Journal of Rock Mechanics and Geotechnical Engineering 
Volume 10
Issue 3
Start page 579
End page 593
ISSN 16747755
DOI 10.1016/j.jrmge.2017.10.006
Scopus ID 2-s2.0-85042598341

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