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The axial behaviour of piles driven in chalk.

Authors :
Jardine, Richard J.
Buckley, Róisín M.
Liu, Tingfa
Andolfsson, Thomas
Byrne, Byron W.
Kontoe, Stavroula
Mcadam, Ross A.
Schranz, Fabian
Vinck, Ken
Source :
Géotechnique; May2024, Vol. 74 Issue 6, p553-569, 17p
Publication Year :
2024

Abstract

This paper describes research into the poorly understood axial behaviour of piles driven in chalk. Comprehensive dynamic and monotonic axial testing on 27, mostly instrumented, piles undertaken for the ALPACA joint industry projects is reported and interpreted covering: diameters between 139 mm and 1·8 m; lengths from 3 to 18 m; different pile material types; tip and groundwater conditions; and ages after driving. The experiments show the factors that influence resistance most strongly are: (a) pile end conditions; (b) slenderness ratio and flexibility; (c) shaft material; (d) age after driving; (e) relative water table depth; and (f) whether loading is compressive or tensile. Varying the factors systematically identified a remarkable average long-term shaft resistance range from below 11 kPa to more than 200 kPa for piles driven at the same low- to medium-density chalk test site in Kent (UK). Dynamic and static analyses demonstrate that soil resistances to driving were generally well predicted by the Chalk ICP-18 short-term formulation. Considering the piles' long-term behaviour, the Chalk ICP-18 approach over-predicted capacity, while the widely used CIRIA approach proved over-conservative for most cases. The research enabled the development of a revised 'ALPACA-SNW' long-term capacity assessment method that matches the test outcomes far more faithfully. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00168505
Volume :
74
Issue :
6
Database :
Complementary Index
Journal :
Géotechnique
Publication Type :
Academic Journal
Accession number :
177323583
Full Text :
https://doi.org/10.1680/jgeot.22.00041