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  5. Shear-Wave Velocity–Based Probabilistic and Deterministic Assessment of Seismic Soil Liquefaction Potential

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Article
English
2013

Shear-Wave Velocity–Based Probabilistic and Deterministic Assessment of Seismic Soil Liquefaction Potential

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English
2013
Journal of Geotechnical and Geoenvironmental Engineering
Vol 139 (3)
DOI: 10.1061/(asce)gt.1943-5606.0000743

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Eric M Thompson
Eric M Thompson

Usgs, Golden

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Robert E. Kayen
Robb Eric S. Moss
Eric M Thompson
+5 more

Abstract

Shear-wave velocity (Vs) offers a means to determine the seismic resistance of soil to liquefaction by a fundamental soil property. This paper presents the results of an 11-year international project to gather new Vs site data and develop probabilistic correlations for seismic soil liquefaction occurrence. Toward that objective, shear-wave velocity test sites were identified, and measurements made for 301 new liquefaction field case histories in China, Japan, Taiwan, Greece, and the United States over a decade. The majority of these new case histories reoccupy those previously investigated by penetration testing. These new data are combined with previously published case histories to build a global catalog of 422 case histories of Vs liquefaction performance. Bayesian regression and structural reliability methods facilitate a probabilistic treatment of the Vs catalog for performance-based engineering applications. Where possible, uncertainties of the variables comprising both the seismic demand and the soil capacity were estimated and included in the analysis, resulting in greatly reduced overall model uncertainty relative to previous studies. The presented data set and probabilistic analysis also help resolve the ancillary issues of adjustment for soil fines content and magnitude scaling factors.

How to cite this publication

Robert E. Kayen, Robb Eric S. Moss, Eric M Thompson, Raymond B. Seed, Kemal Önder Çetin, Armen Der Kiureghian, Yuichi Tanaka, Kohji Tokimatsu (2013). Shear-Wave Velocity–Based Probabilistic and Deterministic Assessment of Seismic Soil Liquefaction Potential. Journal of Geotechnical and Geoenvironmental Engineering, 139(3), pp. 407-419, DOI: 10.1061/(asce)gt.1943-5606.0000743.

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Publication Details

Type

Article

Year

2013

Authors

8

Datasets

0

Total Files

0

Language

English

Journal

Journal of Geotechnical and Geoenvironmental Engineering

DOI

10.1061/(asce)gt.1943-5606.0000743

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