Flexural toppling characteristics of anti-dip soft rock slope with base friction test

被引:0
|
作者
Xingtao Beng
Guangcheng Zhang
Yichen Yang
Chun Zhu
Murat Karakus
Dasheng Wang
机构
[1] China University of Geosciences,Faculty of Engineering
[2] Hohai University,School of Earth Sciences and Engineering
[3] The University of Adelaide,School of Civil, Environmental and Mining Engineering
关键词
Anti-dip soft rock slope; Flexural toppling; Base friction test; Deformation and failure characteristics;
D O I
暂无
中图分类号
学科分类号
摘要
As one of the primary failure modes in the anti-dip soft rock slope, the research of flexural toppling is mainly focused on the deformation and failure mechanism. To recreate the whole flexural toppling process of the anti-dip soft rock slopes with different slope angles and rock stratum dip angles, the indoor base friction physical model tests were carried out based on the similarity ratio theory in this study. Based on the macroscopic phenomenon analysis, the displacement vector cloud plots, and the displacement–time curves during the tests are obtained, here are some conclusions. The main results are as follows: According to the flexural toppling deformation characteristics of the anti-dip soft rock slope, the tensile crack formed along the rock stratum on the middle and trailing edge of the slope crest, and it was caused by the differential deformation of the rock stratum; the toppling process can be divided into three stages: the initial deformation stage, the uniform deformation stage, and the accelerated deformation stage, while the anti-dip soft rock slope can be spatially divided into four zones: the stability zone, the active toppling tensile zone, the passive toppling tensile zone, and the shearing zone.
引用
收藏
相关论文
共 50 条
  • [31] Characteristics of forming conditions and development scale of toppling in anti-dip and dip stratified slopes
    Qiu Jun
    Ren Guang-ming
    Wang Yun-nan
    ROCK AND SOIL MECHANICS, 2016, 37 : 513 - +
  • [32] Seismic amplification of the anti-dip rock slope and deformation characteristics: A large-scale shaking table test
    Yang, Guoxiang
    Qi, Shengwen
    Wu, Faquan
    Zhan, Zhifa
    SOIL DYNAMICS AND EARTHQUAKE ENGINEERING, 2018, 115 : 907 - 916
  • [33] Characteristics of Deep-seated Toppling Deformation in Anti-dip Slope Using Multi-Surveying Methods
    Xie Liangfu
    Mao Wei
    ELECTRONIC JOURNAL OF GEOTECHNICAL ENGINEERING, 2016, 21 (14): : 4623 - 4633
  • [34] Failure Mechanism of Anti-Dip Layered Soft Rock Slope under Rainfall and Excavation Conditions
    Jia, Jun
    Pei, Xiangjun
    Liu, Gang
    Cai, Guojun
    Guo, Xiaopeng
    Hong, Bo
    SUSTAINABILITY, 2023, 15 (12)
  • [35] Analysis of the effect of rock layer structure on the toppling failure evolution of soft-hard interbedded anti-dip slopes
    Liu, Yang
    Huang, Da
    Peng, Jianbing
    Guo, Yingquan
    ENGINEERING FAILURE ANALYSIS, 2023, 145
  • [36] Centrifugal test study of fracture evolution characteristics of anti-dip rock slope with steep and gently dipping structural plane
    Yang Hao
    Wei Yu-feng
    Pei Xiang-jun
    Zhang Yu-yang
    ROCK AND SOIL MECHANICS, 2022, 43 (05) : 1215 - 1225
  • [37] Relationship between the surface and internal deformation features of toppling in anti-dip rock slopes
    Zheng, Guang
    Zhang, Mingyu
    Chen, Minghao
    Liu, Qi
    Yang, Jinning
    Chen, Jun
    Lu, Huiyan
    PLOS ONE, 2024, 19 (11):
  • [38] Instability Mechanism of Anti-dip Rock Slope Under Seismic Load
    Chen, Ran-sheng
    Liu, Gao
    Ka, Mao-cuo
    Wu, Wei-jiang
    2011 AASRI CONFERENCE ON ARTIFICIAL INTELLIGENCE AND INDUSTRY APPLICATION (AASRI-AIIA 2011), VOL 3, 2011, : 444 - 448
  • [39] Study of Stability Influencing Factors of Excavated Anti-Dip Rock Slope
    Dong, Menglong
    Zhang, Faming
    Lv, Jingqing
    Fei, Yin
    Li, Zinan
    KSCE JOURNAL OF CIVIL ENGINEERING, 2020, 24 (08) : 2293 - 2303
  • [40] Instability Mechanism of Anti-dip Rock Slope Under Seismic Load
    Chen, Ran-sheng
    Liu, Gao
    Ka, Mao-cuo
    Wu, Wei-jiang
    2011 INTERNATIONAL CONFERENCE ON FUZZY SYSTEMS AND NEURAL COMPUTING (FSNC 2011), VOL VI, 2011, : 678 - 682