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An approach to evaluate ground surface rupture caused by reverse fault movement 被引量:6

An approach to evaluate ground surface rupture caused by reverse fault movement
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摘要 An approach for estimating ground surface rupture caused by strong earthquakes is presented in this paper, where the finite element (FE) method of continuous and discontinuous coalescent displacement fields is adopted. The onset condition of strain localization is introduced to detect the formation of the slippage line. In the analysis, the Drucker-Prager constitutive model is used for soils and the rate- and state-dependent friction law is used on the slippage line to simulate the evolution of the sliding. A simple application to evaluate the ground surface rupture induced by a reverse fault movement is provided, and the numerical simulation shows good agreement with failure characteristics observed in the field after strong earthquakes. An approach for estimating ground surface rupture caused by strong earthquakes is presented in this paper, where the finite element (FE) method of continuous and discontinuous coalescent displacement fields is adopted. The onset condition of strain localization is introduced to detect the formation of the slippage line. In the analysis, the Drucker-Prager constitutive model is used for soils and the rate- and state-dependent friction law is used on the slippage line to simulate the evolution of the sliding. A simple application to evaluate the ground surface rupture induced by a reverse fault movement is provided, and the numerical simulation shows good agreement with failure characteristics observed in the field after strong earthquakes.
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2006年第1期29-39,共11页 地震工程与工程振动(英文刊)
基金 National Science Foundation Council State KeyLaboratory of Frozen Soil Engineering (SKLFSE200504) State Commonweal Research Project (2002DIB30076)
关键词 surface rupture reverse fault localized band slippage line onset and evolution strain localization friction law surface rupture reverse fault localized band slippage line onset and evolution strain localization friction law
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