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Evaluation of active and passive seismic earth pressures considering internal friction and cohesion

  • Shi-Yu Xu
  • , Anoosh Shamsabadi
  • , Ertugrul Taciroglu*
  • *Corresponding author for this work

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

Abstract

The Log-Spiral-Rankine (LSR) model, which is a generalized formulation for assessing the active and passive seismic earth pressures considering the internal friction and cohesion of backfill soil, is reviewed and improved in this study. System inconsistencies in the LSR model are identified, which result from an inaccurate assumption on the vertical normal stress field (σz=γz) in a general c-ϕ soil medium, and from omitting the effect of soil cohesion when solving for the stress states along the failure surface. The remedies to the said inconsistencies are presented, and local and global iteration schemes are introduced to solve the resulting highly coupled multivariate nonlinear system of equations. The modified LSR model provides a more complete and accurate solution for earth retaining systems, including the geometry of the mobilized soil body, the stress state along the failure surface, as well as the magnitude and the point of application of the resultant earth thrust.
Original languageEnglish
Pages (from-to)30-47
JournalSoil Dynamics and Earthquake Engineering
Volume70
Online published20 Dec 2014
DOIs
Publication statusPublished - Mar 2015

Research Keywords

  • C-ϕ soil
  • Cohesion
  • Earth force
  • Earth pressure
  • Limit equilibrium
  • Log-Spiral-Rankine model
  • Method of slices
  • Mononobe-Okabe model
  • Retaining wall

Policy Impact

  • Cited in Policy Documents

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