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Seismic Displacement of Gravity Walls by a Two-body Model
Authors:Constantine A Stamatopoulos  Eleni G Velgaki  Arezou Modaressi  Fernando Lopez-Caballero
Institution:(1) Stamatopoulos and Associates Co. Ltd.,, 5 Isavron st.,, Athens, 114–71, Greece;(2) Laboratoire de mecanique des sols, structures, materiaux, Ecole Centrale Paris, Paris, France
Abstract:Gravity walls retaining dry soil are modeled as a system of two bodies: (a) the gravity wall that slides along the wall-foundation soil boundary and (b) the critical soil wedge in the soil behind the wall. The strength of the system is defined by both the frictional and the cohesional components of resistance. The angle of the prism of the critical soil wedge behind the wall is obtained using the limit equilibrium method. The model accounts for changes in the geometry of the backfill soil behind the wall by considering the displacements at the end of each time step under limit equilibrium. The model shows that the standard (single) block model is over-conservative for the extreme case of critical-to-applied-seismic acceleration ratios less than about 0.30, but works well for cases where this ratio ranges between 0.5 and 0.8. The model is applied to predict the seismic displacement of gravity walls (a) tested in the shaking-table and (b) studied numerically by elaborate elasto–plastic analyses.
Keywords:Gravity walls  Critical acceleration  Seismic displacement  Large displacement  Critical rupture angle  Sliding-block models
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