The p–y method is currently the most popular design method to predict the response of piles to lateral load. The authors had previously used numerical methods to develop a cone penetration test (CPT)-based p–y formulation for piles in sand and this has subsequently been shown by independent verification to show considerable promise. This paper addresses some of the uncertainties associated with the original p–y formulation by examining the influence of pile bending stiffness, the presence of a water table, the cross-sectional shape of the pile and soil non-homogeneities. Numerical experiments are presented examining these four effects and lead to an updated proposal for a CPT-based p–y formulation. This formulation, which is consistent with the original proposal, is validated against three-dimensional finite-element calculations and data obtained from a full-scale offshore monopile foundation supporting a wind turbine.
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June 2016
Research Article|
February 10 2016
Updated CPT-based p–y formulation for laterally loaded piles in cohesionless soil under static loading
S. K. Suryasentana;
S. K. Suryasentana
*Department of Engineering Science, Oxford University, Oxford, UK; formerly the University of Western Australia.
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B. M. Lehane
B. M. Lehane
†School of Civil, Environmental and Mining Engineering, The University of Western Australia, Crawley, WA, Australia.
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Publisher: Emerald Publishing
Received:
August 17 2014
Accepted:
December 02 2015
Online ISSN: 1751-7656
Print ISSN: 0016-8505
© 2016 Thomas Telford Ltd
2016
Geotechnique (2016) 66 (6): 445–453.
Article history
Received:
August 17 2014
Accepted:
December 02 2015
Citation
Suryasentana SK, Lehane BM (2016), "Updated CPT-based p–y formulation for laterally loaded piles in cohesionless soil under static loading". Geotechnique, Vol. 66 No. 6 pp. 445–453, doi: https://doi.org/10.1680/jgeot.14.P.156
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