Full-flow T-bar and ball penetrometer tests are often used to measure intact and remoulded soil strengths, with the latter determined after several large-amplitude displacement cycles. In offshore design, the remoulded soil strength is often the governing design parameter during installation of subsea infrastructure, while a ‘cyclic strength’ applies for the less severe operational cyclic loading. This paper utilises T-bar penetrometer tests to measure both remoulded and cyclic strengths, where the latter is determined by way of a new test protocol involving cycles between load rather than displacement limits. The tests use kaolin clay and a reconstituted carbonate silt and involve three cyclic phases with intervening consolidation periods. The results demonstrate the important and beneficial role of consolidation, with the loss in strength due to remoulding sometimes surpassed by the strength recovery from consolidation. The most significant gains in strength, to 2·5 times the initial value, were measured in the load-controlled cyclic tests. These data demonstrate a novel way to characterise undrained cyclic strength, taking advantage of consolidation to reduce conservatism.
Article navigation
March 2020
Research Article|
November 18 2019
Load-controlled cyclic T-bar tests: a new method to assess effects of cyclic loading and consolidation
C. D. O'Loughlin
;
C. D. O'Loughlin
*Centre for Offshore Foundation Systems and ARC Research Hub for Offshore Floating Facilities, University of Western Australia, Perth, WA, Australia.
Search for other works by this author on:
Z. Zhou
;
Z. Zhou
†Centre for Offshore Foundation Systems and ARC Research Hub for Offshore Floating Facilities, University of Western Australia, Perth, WA, Australia.
Search for other works by this author on:
S. A. Stanier;
S. A. Stanier
‡University of Cambridge, Cambridge, UK and ARC Research Hub for Offshore Floating Facilities, University of Western Australia, Perth, WA, Australia.
Search for other works by this author on:
D. J. White
D. J. White
§University of Southampton, Southampton, UK and ARC Research Hub for Offshore Floating Facilities, University of Western Australia, Perth, WA, Australia.
Search for other works by this author on:
Publisher: Emerald Publishing
Received:
March 05 2019
Revision Received:
June 03 2019
Accepted:
June 10 2019
Online ISSN: 2045-2543
ICE Publishing: all rights reserved
2020
Geotechnique Letters (2020) 10 (1): 7–15.
Article history
Received:
March 05 2019
Revision Received:
June 03 2019
Accepted:
June 10 2019
Citation
O'Loughlin CD, Zhou Z, Stanier SA, White DJ (2020), "Load-controlled cyclic T-bar tests: a new method to assess effects of cyclic loading and consolidation". Geotechnique Letters, Vol. 10 No. 1 pp. 7–15, doi: https://doi.org/10.1680/jgele.19.00030
Download citation file:
New and popular articles
Suggested Reading
Displacement rate effects during T-bar cycling in remoulded Gulf of Mexico clay
Geotechnique (December,2016)
Soil strength characterisation using free-falling penetrometers
Geotechnique (October,2013)
Soil strength estimation and pore pressure dissipation for free-fall piezocone in soft clay
Geotechnique (October,2014)
Penetrometer testing in a calcareous silt to explore changes in soil strength
Geotechnique (October,2019)
An extended interpretation of the free-fall piezocone test in clay
Geotechnique (March,2017)
Related Chapters
Delayed collapse of cut slopes in stiff clay
Selected papers on geotechnical engineering by P R Vaughan
Experimental Investigation of Compressibility of Cohesive Soil Mixed with Waste Tire Chips
5th ICEG Environmental Geotechnics: Opportunities, Challenges and Responsibilities for Environmental Geotechnics: Proceedings of the ISSMGE’s fifth international congress organized by the Geoenvironmental Research Centre, Cardiff University and held at Cardiff City Hall on 26–30th June 2006
Ground improvement: the interaction of engineering science and experience-based technology
Ground and Soil Improvement
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
