TECHNICAL NOTES
Mar 1, 1995

Seismic Bearing Capacity of Foundation on Cohesionless Soil

Publication: Journal of Geotechnical Engineering
Volume 121, Issue 3

Abstract

The seismic bearing capacity of a strip-surface foundation resting on a Mohr-Coulomb material is evaluated. The upper-bound theorem of the yield design theory is used to obtain an estimate of the ultimate load. The loading parameters consist of a normal and tangential force applied to the foundation and of inertia forces developed within the soil volume. The classical Prandtl-like mechanism is used to show that the reduction in the bearing capacity is mainly caused by the load inclination; the consideration of inertia forces within the soil is only responsible for a decrease in the bearing capacity that is at least an order of magnitude smaller than the one caused by the load inclination. It is therefore concluded that, from a practical engineering standpoint, the soil-inertia forces can be neglected.

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References

1.
Chen, W. F., and Liu, X. L. (1990). “Limit analysis in soil mechanics.”Developments in geotechnical engineering, Vol. 52, Elsevier Applied Sciences, ed., New York, N.Y.
2.
Pecker, A., and Salençon, J. (1991). “Seismic bearing capacity of shallow strip foundations on clay soils.”Proc., Int. Workshop on Seismology and Earthquake Engrg., CENAPRED, Mexico, (April), 287–304.
3.
Richards, R., Elms, D. G., and Budhu, M.(1993). “Seismic bearing capacity and settlements of foundations.”J. Geotech. Engrg., ASCE, 119(4), 662–674.
4.
Salençon, J. (1983). “Calcul à la rupture et analyse limite.” Presses de l'Ecole Nationale des Ponts et Chaussées, Paris, France.
5.
Salençon, J.(1990). “An introduction to the yield design theory and its application to soil mechanics.”Eur. J. Mech., A/Solids, 9(5), 477–500.

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Published In

Go to Journal of Geotechnical Engineering
Journal of Geotechnical Engineering
Volume 121Issue 3March 1995
Pages: 300 - 303

History

Published online: Mar 1, 1995
Published in print: Mar 1995

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Authors

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L. Dormieux
Res. Laboratoire de Mécanique des Solides—Ecole Polytechnique, 91128 Palaiseau Cedex, France.
A. Pecker
Chmn. Géodynamique et Structure—157, Rue des Blains, 92220 Bagneux, France.

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