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A generalized log-spiral-Rankine limit equilibrium model for seismic earth pressure analysis

  • Anoosh Shamsabadi
  • , Shi-Yu Xu
  • , Ertugrul Taciroglu

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

A method of slices for estimating seismic earth pressures due to earthquake-induced pseudo-static body forces is presented herein. The method is based on a limit-equilibrium approach, and utilizes a composite logarithmic spiral failure surface along which the Mohr-Coulomb failure criterion is enforced. The model explicitly accounts for the magnitude of earthquake acceleration, the structure's height, the backfill soil properties (e.g., internal friction angle, and cohesion), and the mobilized interface friction angle between the backfill and the earth-retaining structure. Majority of the previous analytical (or semi-analytical) methods neglect the effects of soil's cohesion and/or use simple planar failure surfaces. Parametric studies conducted with the proposed method, as well as a number of prominent others indicate that the aforementioned simplifying assumptions often yield significantly different estimates of seismic earth pressures from the more general model proposed here, and that they may lead to sub-optimal or unsafe designs. © 2013 Elsevier Ltd.
Original languageEnglish
Pages (from-to)197-209
JournalSoil Dynamics and Earthquake Engineering
Volume49
DOIs
Publication statusPublished - Jun 2013
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 11 - Sustainable Cities and Communities
    SDG 11 Sustainable Cities and Communities

Research Keywords

  • C-Φ soil
  • Cohesion
  • Earth force
  • Earth pressures
  • Limit equilibrium
  • Log-spiral failure surface
  • Method of slices
  • Mononobe-Okabe model
  • Retaining structures

Policy Impact

  • Cited in Policy Documents

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