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Experimental study of uplift resistance of shallow skirted foundations in clay under transient and sustained concentric loading

Experimental study of uplift resistance of shallow skirted foundations in clay under transient and sustained concentric loading
Experimental study of uplift resistance of shallow skirted foundations in clay under transient and sustained concentric loading

Wind, wave and current forces cause significant overturning loads to be transmitted to foundation systems of fixed-bottom offshore structures, while buoyancy forces, in conjunction with environmental loading, impart direct tensile loads to foundations of floating facilities. Shallow skirted foundations are a potentially attractive foundation solution when overturning or tension loading is significant, as suctions mobilised within the soil plug provide tensile resistance. While passive suctions are maintained, undrained reverse end bearing will govern failure providing enhanced uplift resistance compared with vented pull-out of the foundation unit (with or without the soil plug), governed by skirt/soil friction. Currently uncertainty exists over the limiting ratio of skirt depth to foundation diameter to mobilise undrained reverse end bearing and the duration over which passive suctions can be sustained. This paper reports results from beam centrifuge tests investigating the response of shallow skirted foundations in lightly over-consolidated clay to concentric transient and sustained uplift.

Bearing capacity, Footings/foundations, Model tests, Offshore engineering
0016-8505
525-537
Gourvenec, S.
6ff91ad8-1a91-42fe-a3f4-1b5d6f5ce0b8
Acosta-Martinez, H. E.
13a0d798-b93d-445c-a1d9-6b3b4c9e6605
Randolph, M. F.
75caa33a-e630-4ae8-84cd-758797bf9633
Gourvenec, S.
6ff91ad8-1a91-42fe-a3f4-1b5d6f5ce0b8
Acosta-Martinez, H. E.
13a0d798-b93d-445c-a1d9-6b3b4c9e6605
Randolph, M. F.
75caa33a-e630-4ae8-84cd-758797bf9633

Gourvenec, S., Acosta-Martinez, H. E. and Randolph, M. F. (2009) Experimental study of uplift resistance of shallow skirted foundations in clay under transient and sustained concentric loading. Geotechnique, 59 (6), 525-537. (doi:10.1680/geot.2007.00108).

Record type: Article

Abstract

Wind, wave and current forces cause significant overturning loads to be transmitted to foundation systems of fixed-bottom offshore structures, while buoyancy forces, in conjunction with environmental loading, impart direct tensile loads to foundations of floating facilities. Shallow skirted foundations are a potentially attractive foundation solution when overturning or tension loading is significant, as suctions mobilised within the soil plug provide tensile resistance. While passive suctions are maintained, undrained reverse end bearing will govern failure providing enhanced uplift resistance compared with vented pull-out of the foundation unit (with or without the soil plug), governed by skirt/soil friction. Currently uncertainty exists over the limiting ratio of skirt depth to foundation diameter to mobilise undrained reverse end bearing and the duration over which passive suctions can be sustained. This paper reports results from beam centrifuge tests investigating the response of shallow skirted foundations in lightly over-consolidated clay to concentric transient and sustained uplift.

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More information

Published date: 1 August 2009
Keywords: Bearing capacity, Footings/foundations, Model tests, Offshore engineering

Identifiers

Local EPrints ID: 414554
URI: http://eprints.soton.ac.uk/id/eprint/414554
ISSN: 0016-8505
PURE UUID: 129fd108-ddcb-4296-a5ee-efa0383edcc9
ORCID for S. Gourvenec: ORCID iD orcid.org/0000-0002-2628-7914

Catalogue record

Date deposited: 04 Oct 2017 16:30
Last modified: 16 Mar 2024 04:31

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Contributors

Author: S. Gourvenec ORCID iD
Author: H. E. Acosta-Martinez
Author: M. F. Randolph

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