Study on Stability of Anchored Slope under Static Load with Weak Interlayer

被引:6
|
作者
Gao, Mengliang [1 ]
Gao, Haifeng [2 ]
Zhao, Qiang [2 ]
Chang, Zhihuan [2 ]
Miao, Chenxi [1 ,3 ]
机构
[1] Taiyuan Univ Technol, Coll Civil Engn, Taiyuan 030024, Peoples R China
[2] Shanxi Transportat Holding Grp Co Ltd, Lvliang South Expressway Branch, Lvliang 032200, Peoples R China
[3] Shanxi Transportat Res Inst Grp Co Ltd, Taiyuan 030006, Peoples R China
基金
中国国家自然科学基金; 中国博士后科学基金;
关键词
model test; numerical simulation; anchorage slope; weak intercalated layer; stability analysis; BEDDING ROCK SLOPE; NUMERICAL-SIMULATION; FRAME BEAM; MECHANISM; STRESS; DESIGN;
D O I
10.3390/su141710542
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
To study the stability characteristics of a rock slope with a weak interlayer, a test of the anchor frame slope was designed in this paper. The analysis model was established with FLAC(3D), and the development law of safety factor, deformation, axial anchor force, soil pressure and maximum shear strain increment of the slope, and the supporting effect of frame anchor cable were obtained by grading loading. The research showed that the supporting effect of frame anchor cable support on the slope was remarkable, and the influence of slope vertical load on the slope safety factor was evident. The lateral deformation mode of the slope surface was large up and down, and minor in the middle. The weak intercalated layer blocked the internal diffusion of the settlement. The failure trend of slope was sliding along the weak interlayer and collapse occurred below the loading zone, and the final failure mode is wedge failure. The peak value of maximum shear strain increment was developed along the weak interlayer, and a shear strain mutation zone was formed inside the slope. It could be considered that the weak interlayer was the potential sliding surface of the slope.
引用
收藏
页数:16
相关论文
共 50 条
  • [31] Stability study of surrounding rock with parallel weak interlayer
    Su, C.
    Jiang, Y. S.
    Li, X. D.
    ADVANCES IN DISCONTINUOUS NUMERICAL METHODS AND APPLICATIONS IN GEOMECHANICS AND GEOENGINEERING, 2012, : 401 - 406
  • [32] Study on dynamic response and stability of loess stepped slope under train load
    Key Laboratory of Loess Earthquake Engineering, Lanzhou Institute of Seismology, CEA, Lanzhou
    730000, China
    不详
    730000, China
    J. Railw. Sci. Eng., 2020, 5 (1080-1089): : 1080 - 1089
  • [33] Failure modes and stability of rock mass slope containing multi-weak interlayer
    Liu, Jie-Qun
    Chen, Lu-Wang
    Liu, Jin-Long
    Journal of Applied Sciences, 2013, 13 (21) : 4371 - 4378
  • [34] Research on Dynamic Response of Anchored Jointed Rock Slope under Traffic Load
    Li, Run
    Wang, Yasi
    TEHNICKI VJESNIK-TECHNICAL GAZETTE, 2021, 28 (01): : 169 - 177
  • [35] Stability of rock slope with weak structural plane under earthquake
    Yan, Bing (1245766696@qq.com), 1600, E-Journal of Geotechnical Engineering (21):
  • [36] Stability of Rock Slope with Weak Structural Plane under Earthquake
    Yan, Bing
    ELECTRONIC JOURNAL OF GEOTECHNICAL ENGINEERING, 2016, 21 (10):
  • [37] Stability Analysis of Clastic Rock Slope with Mudstone Interlayer Under Rainfall Infiltration
    Xu Y.
    Li J.
    Fan H.
    Chen L.
    Zhao Y.
    Li L.
    Xu, Yingzi (xuyingzi@gxu.edu.cn), 1871, Springer International Publishing (35): : 1871 - 1883
  • [38] Dynamic stability analysis of anchored anti-dip slope under the Ludian earthquake: a case study of the Manhekuan slope, Yunnan, China
    Wu, Shanbai
    Wang, Liangqing
    Wu, Qiong
    Tian, Jianlin
    Zhu, Linfeng
    Sun, Zihao
    Zheng, Luobin
    Wang, Chenlu
    BULLETIN OF ENGINEERING GEOLOGY AND THE ENVIRONMENT, 2024, 83 (11)
  • [39] Resonance features of rock slope with anti-dip weak interlayer under seismic actions
    Wang T.
    Huang J.
    Lang Q.
    Liu L.
    Arabian Journal of Geosciences, 2021, 14 (4)
  • [40] The Effects of Water Content and Dry–Wet Cycles of Weak‐Interlayer Soil on Stability of Clastic Rock Slope
    Yingzi Xu
    Xuhang Liao
    Jian Li
    Lihua Chen
    Lin Li
    Geotechnical and Geological Engineering, 2021, 39 : 3753 - 3760