Cuttings in heavily overconsolidated clays are known to be susceptible to progressive deformation caused by creep and fatigue that usually begins at the toe of the slope. The progressive deformation leads to strength reduction with time at constant stress (or called softening) and could be accelerated by fluctuation of groundwater level associated with more extreme rainfall events predicted through climate change. The purpose of this paper is to assess the mechanism of progressive deformation due to creep and fatigue using element testing on samples of till. The samples were subjected to fully drained loading and the deviator stresses were held constant at various percentages of peak failure stress, while the pore water pressure was kept static or dynamic (fluctuating ±5 kPa) over a period of time. The results have shown that the samples experienced significant deformation even at a higher factor of safety (i.e. the failure deviator stress/deviator stress at which the pore water pressure was fluctuated) under pore water pressure dynamics.
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March 2016
Research Article|
February 08 2016
Strength reduction of till under dynamic pore pressure condition
R. Harley;
R. Harley
†Postdoctoral Research Assistant, Queen's University Belfast, Belfast, UK.
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V. Sivakumar;
V. Sivakumar
*School of Planning, Architecture and Civil Engineering, Queen's University Belfast, Belfast, UK.
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D. Hughes;
D. Hughes
‡Senior Lecturer, Queen's University Belfast, Belfast, UK.
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S. Donohue
S. Donohue
§Lecturer, Queen's University Belfast, Belfast, UK.
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Publisher: Emerald Publishing
Received:
October 09 2015
Accepted:
January 12 2016
Online ISSN: 2045-2543
ICE Publishing: all rights reserved
2016
Geotechnique Letters (2016) 6 (1): 83–88.
Article history
Received:
October 09 2015
Accepted:
January 12 2016
Citation
Harley R, Sivakumar V, Hughes D, Donohue S (2016), "Strength reduction of till under dynamic pore pressure condition". Geotechnique Letters, Vol. 6 No. 1 pp. 83–88, doi: https://doi.org/10.1680/jgele.15.00156
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