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An Improved Method for Estimating Earthquake-Induced Permanent Displacement of Bedding Rock Slopes.

Authors :
Liu, Yaqun
Shen, Hui
Li, Haibo
Liu, Bo
Zhang, Wei
Source :
Rock Mechanics & Rock Engineering. Oct2024, Vol. 57 Issue 10, p8429-8456. 28p.
Publication Year :
2024

Abstract

An improved method for fast and reasonable estimation of seismically induced permanent displacement of bedding rock slopes is proposed in this study. The proposed method introduces the pseudo-dynamic seismic force to account for the amplification effect induced by the slope topography. In addition, real-time updates of the tangential-normal coupling forces on the sliding surface during seismic excitations are implemented. The feasibility and adaptability of the proposed method are verified through a comparison with existing methods. Additionally, the differences between the earthquake-induced displacements calculated using the proposed method and the Newmark method are analyzed using 171 strong ground motion records as input excitations. A parametric sensitivity analysis shows that permanent displacement is significantly influenced by the friction angle of the joint ϕ , amplitude of the input acceleration P 0 , dip angle of the slope failure plane β , and slope height H . Finally, a set of landslide probability maps is obtained, and a landslide probability estimation procedure for slopes is recommended, which provides a convenient way to preliminarily evaluate the seismic stability of bedding rock slopes. Highlights: The amplification effect on the seismic response of rock slopes is considered. Tangential-normal forces on the sliding surface were coupled. Automatic recognition of sliding status is based on the Mohr–Coulomb criterion. Landslide probability maps are provided. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07232632
Volume :
57
Issue :
10
Database :
Academic Search Index
Journal :
Rock Mechanics & Rock Engineering
Publication Type :
Academic Journal
Accession number :
180005896
Full Text :
https://doi.org/10.1007/s00603-024-03971-x