Plate anchor technology is an efficient solution for mooring offshore floating facilities for oil and gas or renewable energy projects. When used with a taut mooring, the anchor is typically subjected to a maintained load component and intermittent episodes of cyclic loading throughout the design life. These loads, and the associated shearing, remoulding and consolidation processes, cause changes in the anchor capacity, particularly in soft, fine-grained soils. The changing anchor capacity affects the mooring performance by changing the safety margin and also the overall system reliability. In this paper the changing anchor capacity in reconstituted, normally consolidated natural carbonate silt was assessed through a series of beam centrifuge tests on horizontally loaded circular plate anchors. The results demonstrate that full consolidation under a typical maintained load leads to a 50% gain in the anchor capacity, and subsequent cyclic loading and reconsolidation can triple this increase. An effective stress framework based on critical state concepts is employed to explain and support the experimental observations. This study shows that, when viewed from a whole-life reliability perspective, maintained and cyclic loading provide a long-term enhancement of anchor capacity in soft, fine-grained soils. This beneficial effect is currently overlooked in design practice, but can be predicted using the framework shown here, which can form the basis for a digital twin that monitors the through-life integrity of a plate anchor.
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August 2020
Research Article|
January 02 2020
Improvements in plate anchor capacity due to cyclic and maintained loads combined with consolidation
Zefeng Zhou
;
Zefeng Zhou
*Centre for Offshore Foundation Systems and ARC Research Hub for Offshore Floating Facilities, University of Western Australia, Perth, WA, Australia.
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Conleth D. O'Loughlin;
Conleth D. O'Loughlin
†Centre for Offshore Foundation Systems and ARC Research Hub for Offshore Floating Facilities, University of Western Australia, Perth, WA, Australia.
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David J. White;
David J. White
‡University of Southampton, Southampton, UK and ARC Research Hub for Offshore Floating Facilities, University of Western Australia, Perth, WA, Australia.
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Sam A. Stanier
Sam A. Stanier
§University of Cambridge, Cambridge, UK and ARC Research Hub for Offshore Floating Facilities, University of Western Australia, Perth, WA, Australia.
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Publisher: Emerald Publishing
Received:
March 02 2019
Accepted:
November 15 2019
Online ISSN: 1751-7656
Print ISSN: 0016-8505
© 2019 Thomas Telford Ltd
2019
Geotechnique (2020) 70 (8): 732–749.
Article history
Received:
March 02 2019
Accepted:
November 15 2019
Citation
Zhou Z, O'Loughlin CD, White DJ, Stanier SA (2020), "Improvements in plate anchor capacity due to cyclic and maintained loads combined with consolidation". Geotechnique, Vol. 70 No. 8 pp. 732–749, doi: https://doi.org/10.1680/jgeot.19.TI.028
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