Embedded cantilever retaining walls in sand

This paper describes a case history involving staged excavation adjacent to an instrumented cantilever bored pile contiguous wall in sand. The instrumentation enabled reliable estimates to be made of the variation of pile bending moments from which observations are made related to the development of...

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Published inGéotechnique Vol. 60; no. 11; pp. 813 - 823
Main Authors LI, A. Z, LEHANE, B. M
Format Journal Article
LanguageEnglish
Published London Telford 01.11.2010
ICE Publishing
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Abstract This paper describes a case history involving staged excavation adjacent to an instrumented cantilever bored pile contiguous wall in sand. The instrumentation enabled reliable estimates to be made of the variation of pile bending moments from which observations are made related to the development of lateral earth pressures. Particle image velocimetry was employed to obtain a unique dataset of lateral and vertical displacement measurements behind the wall, which may be used to evaluate existing predictive approaches for assessment of excavation-induced movements. Simple finite-element back-analyses of the experiment, employing a linear elastic Mohr–Coulomb soil model, showed that measured wall displacements and moments could be predicted using expected effective stress strength parameters, but that best-fit equivalent linear operational stiffnesses were well below those commonly assumed in practice. Creep is shown to have a critical effect on the displacements of the wall and behind the wall and needs to be incorporated in any realistic predictive approach.
AbstractList This paper describes a case history involving staged excavation adjacent to an instrumented cantilever bored pile contiguous wall in sand. The instrumentation enabled reliable estimates to be made of the variation of pile bending moments from which observations are made related to the development of lateral earth pressures. Particle image velocimetry was employed to obtain a unique dataset of lateral and vertical displacement measurements behind the wall, which may be used to evaluate existing predictive approaches for assessment of excavation-induced movements. Simple finite-element back-analyses of the experiment, employing a linear elastic Mohr–Coulomb soil model, showed that measured wall displacements and moments could be predicted using expected effective stress strength parameters, but that best-fit equivalent linear operational stiffnesses were well below those commonly assumed in practice. Creep is shown to have a critical effect on the displacements of the wall and behind the wall and needs to be incorporated in any realistic predictive approach.
Author LI, A. Z
LEHANE, B. M
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  organization: School of Civil and Resource Engineering, The University of Western Australia, Australia
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10.1680/geot.2004.54.3.215
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Issue 11
Keywords strain
experimental studies
stress
models
shear
strength
creep
excavations
back analysis
retaining walls
finite element analysis
stiffness
sands
earth pressure
sand
instruments
displacements
case history
piles
particles
soils
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References geot-v60i11p813r1
geot-v60i11p813r2
Gaba A. R. (geot-v60i11p813r3) 2003
geot-v60i11p813r12
geot-v60i11p813r4
Schneider J. A. (geot-v60i11p813r11) 2007
geot-v60i11p813r9
Lehane B. M. (geot-v60i11p813r8) 2008; 1
Jardine R. J. (geot-v60i11p813r5) 1992
Oasys (geot-v60i11p813r10) 2008
geot-v60i11p813r6
geot-v60i11p813r7
References_xml – volume-title: Embedded retaining walls: GUIDANCE for economic design
  year: 2003
  ident: geot-v60i11p813r3
  contributor:
    fullname: Gaba A. R.
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  doi: 10.1680/geot.1986.36.3.377
– volume: 1
  start-page: 133
  year: 2008
  ident: geot-v60i11p813r8
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  doi: 10.1680/geot.1986.36.1.65
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  doi: 10.1680/geot.2008.58.5.377
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  year: 2008
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  year: 1992
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  contributor:
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SubjectTerms Earth sciences
Earth, ocean, space
Engineering and environment geology. Geothermics
Engineering geology
Exact sciences and technology
Retaining walls
Title Embedded cantilever retaining walls in sand
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