Dynamic Response Differences Between Bedding and Counter-Tilt Rock Slopes with Intercalated Weak Layers

Author:

Zhi Song, ,Yang Liu, , ,

Abstract

Bedding and counter-tilt rock slope with intercalated weak layers are common geological bodies in west China, the dynamic response research will guide the anti-seismic reinforcement of bedding and counter-tilt rock slope with intercalated weak layer effectively. Two test models of bedding rock slope with intercalated weak layer and counter-tilt rock slope with intercalated weak layer, which are in the same size, have been designed and developed. A large scale shaking table test has been performed to analyze the dynamic response difference of bedding and counter-tilt rock slope with intercalated weak layer. The study results show that the acceleration amplification coefficient inside the bedding slope is smaller than that inside the counter-tilt rock slope; at the middle and upper parts of the slope body (relative height > 0.4), the acceleration amplification coefficient at bedding rock slope surface is larger than that of counter-tilt rock slope. At the lower part of the slope (relative height le 0.4), the acceleration amplification coefficient at bedding rock slope surface is close to that of counter-tilt rock slope. The slope surface displacement of both bedding and counter-tilt rock slopes increases with increasing input seismic wave amplitude. The slope surface displacement of the bedding rock is larger than that of counter-tilt rock slope. The seismic stability of counter-tilt rock slope is stronger than bedding rock slope. The dynamic failure form of bedding rock slope mainly includes vertical tension crack at back edge, bedding sliding along intercalated weak layer and rock collapse at slope crest; whereas the dynamic failure form of counter-tilt slope mainly includes intersection of horizontal and vertical cracks on slope surface, extrusion of intercalated weak layer and shattering of slope crest.

Publisher

Fuji Technology Press Ltd.

Subject

Engineering (miscellaneous),Safety, Risk, Reliability and Quality

Reference23 articles.

1. R. Q. Huang and W. L. Li, “Analysis of the geo-hazards triggered by the 12 May 2008 Wenchuan Earthquake,” China. Bull Eng Geol Environ, Vol.68, pp. 363-371, 2009.

2. Q. Xu and W. L. Li, “Study on the direction effects of land-slides triggered by Wenchuan earthquake,” Journal of SiChuan University: Engineering Science Edition, Vol.42, Supp.1, pp.7-14, 2010.

3. X. Z. Li, J. M. Kong, H. Y. Deng, Y. Cui, S. J. Tian, F. Y. A, “Analysis on Characteristics and Deformation Failure Mode of Large-scale Landslides Induced by “5.12” Wenchuan Earthquake,” Journal of SiChuan University: Engineering Science Edition, Vol.41, No.3, pp. 72-77, 2009.

4. Ö. Aydan, M. Hamada, J. Itoh, and K. Okubo, “Damage to Civil Engineering Structures with an Emphasis on Rock Slope Failures and Tunnel Damage Induced by the 2008 Wenchuan Earthquake,” Journal of Disaster Research, Vol.4, No.2, pp. 153-164, 2009.

5. C. Xu, F. C. Dai, and J. Z. Xiao, “Statistical analysis of characteristic parameters of landslides triggered by May 12, 2008 Wenchuan earthquake,” Journal of Natural Disasters, Vol.20, No.4, pp. 147-153, 2011.

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