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Reliability analysis of static liquefaction of loose sand using the random finite element method

Ali Johari (Department of Civil and Environmental Engineering, Shiraz University of Technology, Shiraz, Iran)
Jaber Rezvani Pour (Department of Civil and Environmental Engineering, Shiraz University of Technology, Shiraz, Iran)
Akbar Javadi (Computational Geomechanics Group, Department of Engineering, University of Exeter, Exeter, UK)

Engineering Computations

ISSN: 0264-4401

Article publication date: 5 October 2015

294

Abstract

Purpose

Liquefaction of soils is defined as significant reduction in shear strength and stiffness due to increase in pore water pressure. This phenomenon can occur in static (monotonic) or dynamic loading patterns. However, in each pattern, the inherent variability of the soil parameters indicates that this problem is of a probabilistic nature rather than being deterministic. The purpose of this paper is to present a method, based on random finite element method, for reliability assessment of static liquefaction of saturated loose sand under monotonic loading.

Design/methodology/approach

The random finite element analysis is used for reliability assessment of static liquefaction of saturated loose sand under monotonic loading. The soil behavior is modeled by an elasto-plastic effective stress constitutive model. Independent soil parameters including saturated unit weight, peak friction angle and initial plastic shear modulus are selected as stochastic parameters which are modeled using a truncated normal probability density function (pdf).

Findings

The probability of liquefaction is assessed by pdf of modified pore pressure ratio at each depth. For this purpose pore pressure ratio is modified for monotonic loading of soil. It is shown that the saturated unit weight is the most effective parameter, within the selected stochastic parameters, influencing the static soil liquefaction.

Originality/value

This research focuses on the reliability analysis of static liquefaction potential of sandy soils. Three independent soil parameters including saturated unit weight, peak friction angle and initial plastic shear modulus are considered as stochastic input parameters. A computer model, coded in MATLAB, is developed for the random finite element analysis. For modeling of the soil behavior, a specific elasto-plastic effective stress constitutive model (UBCSAND) was used.

Keywords

Citation

Johari, A., Rezvani Pour, J. and Javadi, A. (2015), "Reliability analysis of static liquefaction of loose sand using the random finite element method", Engineering Computations, Vol. 32 No. 7, pp. 2100-2119. https://doi.org/10.1108/EC-07-2014-0152

Publisher

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Emerald Group Publishing Limited

Copyright © 2015, Emerald Group Publishing Limited

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