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 in | Géotechnique Vol. 60; no. 11; pp. 813 - 823 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
London
Telford
01.11.2010
ICE Publishing |
Subjects | |
Online Access | Get full text |
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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. |
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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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Cites_doi | 10.1680/geot.2003.53.7.619 10.1680/geot.2004.54.3.215 10.1680/geot.1986.36.3.377 10.1201/9780203882870.pt1c 10.1680/geot.1975.25.2.175 10.1680/geot.1986.36.1.65 10.1680/geot.2008.58.5.377 |
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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. – volume-title: Analysis of piezocone data for displacement pile prediction year: 2007 ident: geot-v60i11p813r11 contributor: fullname: Schneider J. A. – ident: geot-v60i11p813r12 doi: 10.1680/geot.2003.53.7.619 – ident: geot-v60i11p813r7 doi: 10.1680/geot.2004.54.3.215 – ident: geot-v60i11p813r4 doi: 10.1680/geot.1986.36.3.377 – volume: 1 start-page: 133 year: 2008 ident: geot-v60i11p813r8 publication-title: Proc. 4th International Symposium on deformation characteristics of Geomaterials, Atlanta contributor: fullname: Lehane B. M. – ident: geot-v60i11p813r6 doi: 10.1201/9780203882870.pt1c – ident: geot-v60i11p813r2 doi: 10.1680/geot.1975.25.2.175 – ident: geot-v60i11p813r1 doi: 10.1680/geot.1986.36.1.65 – ident: geot-v60i11p813r9 doi: 10.1680/geot.2008.58.5.377 – volume-title: Geotechnical suite of programs year: 2008 ident: geot-v60i11p813r10 contributor: fullname: Oasys – start-page: 661 volume-title: Proc. 4th Conf. Offshore Site Investigation and Foundation Behaviour, London year: 1992 ident: geot-v60i11p813r5 contributor: fullname: Jardine R. J. |
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Snippet | This paper describes a case history involving staged excavation adjacent to an instrumented cantilever bored pile contiguous wall in sand. The instrumentation... |
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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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