Reliability analysis is used to evaluate the probability of failure of a flood defence embankment subject to a blanket layer foundation condition, where high seepage forces increase the likelihood of internal erosion and slope failure. The stochastic effect of hydraulic conductivity and blanket layer thickness, in addition to soil shear strength properties, is considered for the underseepage and slope stability failure modes using the first-order reliability method. The blanket layer thickness controls the factor of safety (F) and reliability, followed by the unit weight of the blanket layer. Despite variation over orders of magnitude, hydraulic conductivity is less important than and comparable to the effect of soil shear strength parameters. Aleatory uncertainty is evaluated using fragility curves and a confidence interval on the expected value of F (stochastic F). Uncertainty in probability distribution parameters allows quantification of a subset of epistemic uncertainty and is used to construct confidence intervals for fragility.
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22 August 2019
Research Article|
August 22 2019
Reliability analysis of the influence of seepage on levee stability
Robert Lanzafame, PhD;
Department of Hydraulic Engineering, Technical University of Delft, Delft, the Netherlands
(corresponding author: r.c.lanzafame@tudelft.nl)
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Nicholas Sitar, PhD
Nicholas Sitar, PhD
Professor
Department of Civil and Environmental Engineering, University of California–Berkeley, Berkeley, CA, USA
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(corresponding author: r.c.lanzafame@tudelft.nl)
Publisher: Emerald Publishing
Received:
April 10 2018
Accepted:
October 09 2018
Online ISSN: 2051-803X
ICE Publishing: All rights reserved
2019
Environmental Geotechnics (2019) 6 (5): 284–293.
Article history
Received:
April 10 2018
Accepted:
October 09 2018
Citation
Lanzafame R, Sitar N (2019), "Reliability analysis of the influence of seepage on levee stability". Environmental Geotechnics, Vol. 6 No. 5 pp. 284–293, doi: https://doi.org/10.1680/jenge.18.00060
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