Urban development in congested cities requires a better exploitation of the available surface, leading to taller structures. These buildings are usually founded on piles that have to be increased in dimension to accommodate the larger loads, resulting in increases in both the cost and the carbon dioxide footprint of the pile foundation. An alternative option is to improve pile performance by enhancing the shaft capacity, which is commonly the most important factor in determining the ultimate capacity of a pile constructed in a clay soil subjected to axial load. For piles in stiff clays such as London Clay, the soil–pile friction may be increased by profiling the side walls of a bored cast in situ pile with small discrete ‘impressions’ such that the latter form nodules on the shaft of the concreted pile. Centrifuge tests carried out at City, University of London, and field trials undertaken by Keltbray Piling across different London sites showed an increase in the shaft capacity of around 40%. In this work, a simple design method based on experimental evidence and an existing plastic failure mechanism was derived for ‘impression’ piles. The proposed method shows good agreement with data and enables a direct prediction of the increase in capacity for future designs.
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February 2022
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Research Article|
September 15 2021
Design method for the ‘impression pile’
Leonardo Maria Lalicata, MSc, PhD;
Leonardo Maria Lalicata, MSc, PhD
Postdoctoral Research Fellow, City, University of London, London, UK (corresponding author: leonardo.lalicata@city.ac.uk)
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Sarah Elizabeth Stallebrass, MA, PhD;
Sarah Elizabeth Stallebrass, MA, PhD
Professor, City, University of London, London, UK
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Andrew McNamara, MSc, PhD;
Andrew McNamara, MSc, PhD
Senior Lecturer, City, University of London, London, UK
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Jignasha Prakash Panchal, MEng, PhD, CEng
Jignasha Prakash Panchal, MEng, PhD, CEng
Technical Manager, Keltbray Piling, London, UK
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Publisher: Emerald Publishing
Received:
April 21 2021
Accepted:
April 22 2021
Online ISSN: 1751-8563
Print ISSN: 1353-2618
ICE Publishing: All rights reserved
2021
Proceedings of the Institution of Civil Engineers - Geotechnical Engineering (2022) 175 (1): 75–85.
Article history
Received:
April 21 2021
Accepted:
April 22 2021
Citation
Lalicata LM, Stallebrass SE, McNamara A, Panchal JP (2022), "Design method for the ‘impression pile’". Proceedings of the Institution of Civil Engineers - Geotechnical Engineering, Vol. 175 No. 1 pp. 75–85, doi: https://doi.org/10.1680/jgeen.21.00033
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