Shaking Table Model Test on the Dynamic Response of Anti-dip Rock Slope

被引:0
作者
Xixia Feng
Qinghui Jiang
Xiaobo Zhang
Huichao Zhang
机构
[1] Wuhan University,School of Civil Engineering
[2] Hubei Provincial Water Resources and Hydropower Planning Survey and Design Institute,undefined
来源
Geotechnical and Geological Engineering | 2019年 / 37卷
关键词
Anti-dip rock slope; Shaking table test; PGA amplification coefficient; Dynamic response; Failure mechanism; DDA method;
D O I
暂无
中图分类号
学科分类号
摘要
Stability prediction of rock slope under seismic loads is important for landslide hazard assessment. For studying the dynamic response of anti-dip rock slope, one two-dimensional physical model of anti-dip slope containing two groups of rock joints was designed for shaking table test. The influences of different dynamic parameters including wave type, amplitude and frequency on the dynamic response of the slope model were considered. The results of this study reveal that the amplification coefficients of peak ground acceleration increase with increasing the relative elevation. With the increase of acceleration amplitude, the amplification coefficients rise on the whole, but they are influenced by rock structure and wave type. The amplification coefficients increase with the increase of frequency, and they become stronger near the slope top. The influence of frequency is closely related to the acceleration amplitude. The discontinuous deformation analysis method was used to compare the dynamic failure of slope model with shaking table test. Both the results of two methods indicate that the slope model under seismic loads mainly presented that shear cracks and tension cracks extended, connected and developed step-type fractures, the slope experienced toppling and sliding failure. The study has theoretical and practical significance, it can provide guidance for seismic slope engineering.
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页码:1211 / 1221
页数:10
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共 101 条
  • [1] Abe K(2017)Numerical study on dynamic behavior of slope models including weak layers from deformation to failure using material point method Soils Found 57 155-175
  • [2] Nakamura S(2006)Geological and seismological aspects of Kashmir earthquake of October 8, 2005 and geotechnical evaluation of induced failures of natural and cut slopes J Sch Marine Sci Technol Tokai Univ 4 25-44
  • [3] Nakamura H(2016)Large rock slope failures induced by recent earthquakes Rock Mech Rock Eng 49 2503-2524
  • [4] Shiomi K(2016)Wave propagations through jointed rock masses and their effects on the stability of slopes Eng Geol 201 45-56
  • [5] Aydan Ö(2016)Experimental study of motion characteristics of rock slopes with weak intercalation under seismic excitation J Mt Sci (Engl) 13 546-556
  • [6] Aydan Ö(1982)Dimensional analysis and the pi theorem Linear Algebra Appl 47 117-126
  • [7] Che A(2016)Dynamic response and dynamic failure mode of a weak intercalated rock slope using a shaking table Rock Mech Rock Eng 49 1-14
  • [8] Yang HK(2015)Boundary setting method for the seismic dynamic response analysis of engineering rock mass structures using the discontinuous deformation analysis method Int J Numer Anal Meth Geomech 39 1693-1712
  • [9] Wang B(2001)The validity of dynamic block displacement prediction using DDA Int J Rock Mech Min Sci 38 599-606
  • [10] Ge XR(2009)Development and distribution of geohazards triggered by the 5.12 Wenchuan earthquake in China Sci China Ser E: Technol Sci 52 810-819