Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/102577
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Title: Estimating normal effective stress degradation in sand under undrained simple shear condition
Authors: Wu, ZX 
Dano, C
Hicher, PY
Yin, ZY 
Issue Date: 2021
Source: European journal of environmental and civil engineering, 2021, v. 25, no. 1, p. 170-189
Abstract: The degradation of the effective normal stress in soil surrounding the pile caused by undrained cyclic loading affects the shaft capacity of the pile and can lead to structural instability. In order to investigate this phenomenon, a series of constant volume monotonic and cyclic simple shear tests on Fontainebleau sand has been conducted. Based on the experimental results, the shear stress at phase transformation state is first determined for different initial void ratios and initial normal effective stresses. Then, the number of cycles to liquefaction is estimated as a function of both the cyclic and the average shear stresses normalised by the shear stress at phase transformation. An empirical equation to evaluate the normal stress degradation is formulated and the procedure of parameter identification is presented. The performance of the suggested formulation has been analysed, based on simple shear test results on Fraser River sand and Quiou sand, and triaxial tests on Karlsruhe sand, and it has been validated by a series of additional tests on Fontainebleau sand. All the results indicate that the proposed formulation is able to estimate with good accuracy the effective normal stress degradation in sand subjected to undrained cyclic shearing.
Keywords: Cyclic loading
Cyclic resistance
Normal stress degradation
Phase transformation
Sand
Simple shear
Publisher: Taylor & Francis
Journal: European journal of environmental and civil engineering 
ISSN: 1964-8189
EISSN: 2116-7214
DOI: 10.1080/19648189.2018.1521750
Rights: © 2018 Informa UK Limited, trading as Taylor & Francis Group
This is an Accepted Manuscript of an article published by Taylor & Francis in European Journal of Environmental and Civil Engineering on 24 Oct 2018 (published online), available at: http://www.tandfonline.com/10.1080/19648189.2018.1521750.
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