Numerical simulation of the mechanical behavior of rock mass with different scale flaws and its application

被引:0
|
作者
Hongyan Liu
Tiancheng Xie
机构
[1] China University of Geosciences (Beijing),School of Engineering and Technology
[2] Key Laboratory on Deep Geodrilling Technology,undefined
[3] Ministry of Land and Resources,undefined
来源
关键词
Rock mass; Couple of the macroscopic and mesoscopic flaws; Mechanical behavior; Uniaxial compression; Numerical simulation; Slope stability;
D O I
暂无
中图分类号
学科分类号
摘要
The rock mass contains the macroscopic and mesoscopic flaws at the same time, and therefore, how to accurately assess their co-effect on the rock mass mechanical behavior is still an important and difficult issue. The elastic-brittle model and Null model in FLAC3D code are adopted to describe the mechanical behavior of the intact rock and pre-crack, respectively, and the superfine element division method is also adopted to mesh the numerical model to simulate the rock mass failure. Meanwhile, a new method to generate the mesoscopic flaws is proposed which can be determined with the rock mass void ratio. Then, the effect of the mesoscopic flaws on the rock mass mechanical behavior is studied, and at the same time, the effect of the pre-crack dip angle and length on the rock mass mechanical behavior is also studied. Finally, the proposed method is adopted to study these two kinds of flaws on the factor of safety and critical failure surface of the rock mass slope. The results indicate that the macroscopic flaws play a control role in the failure mode and compressive strength of the rock mass under uniaxial compression. They also control the failure mode and the factor of safety of the rock mass slope. Meanwhile, although the mesoscopic flaws do not change the control role of the macroscopic ones on the mechanical behavior of the rock mass, they do have some effect on this control role. Finally, the physical test is done to verify the numerical results.
引用
收藏
相关论文
共 50 条
  • [41] Numerical simulation of rock blasting in jointed rock mass by DDA method
    Ning You-jun
    Yang Jun
    Chen Peng-wan
    ROCK AND SOIL MECHANICS, 2010, 31 (07) : 2259 - 2263
  • [42] Numerical Simulation of Mechanical Parameters for Bolted Rock Mass Under Unloading Condition by ADINA Software
    Wang, Xingxia
    Li, Jianlin
    Huang, Jianwen
    ICMS2009: PROCEEDINGS OF THE SECOND INTERNATIONAL CONFERENCE ON MODELLING AND SIMULATION, VOL 5, 2009, : 17 - 21
  • [43] Numerical Simulation of Cracking Process in Rock Mass Under the Coupled Thermo-Mechanical Condition
    Liu, Xuewei
    Liu, Quansheng
    He, Jun
    Yu, Fangzheng
    INTERNATIONAL JOURNAL OF COMPUTATIONAL METHODS, 2020, 17 (09)
  • [44] Numerical simulation of GRC mechanical behavior
    Ferreira, Joao G.
    Branco, Fernando A.
    JOURNAL OF MATERIALS IN CIVIL ENGINEERING, 2007, 19 (06) : 445 - 453
  • [45] Thermo-elasto-viscoplastic mechanical behavior of manmade rock and its numerical modeling
    Zhang, Feng
    Xiong, Yong-lin
    Itani, Yusuke
    One, Eishi
    UNDERGROUND SPACE, 2019, 4 (02) : 121 - 132
  • [46] Rock damage by blasting and its numerical simulation
    Yang, Xiaolin
    Wang, Shuren
    Meitan Xuebao/Journal of China Coal Society, 2000, 25 (01): : 19 - 23
  • [47] Numerical Simulation and Comparison of the Mechanical Behavior of Toughened Epoxy Resin by Different Nanoparticles
    Zhao, Binbin
    Zhao, Yiqiao
    Shen, Yiou
    He, Haoran
    Qu, Zehua
    ACS OMEGA, 2023, : 31123 - 31134
  • [48] Numerical Simulation of Scale Effect of Jointed Rock Masses
    Liang, Z. Z.
    Li, L. C.
    Tang, C. A.
    Wang, S. Y.
    ANALYSIS OF DISCONTINUOUS DEFORMATION: NEW DEVELOPMENTS AND APPLICATIONS, 2010, : 521 - 530
  • [49] Numerical Simulation Study of Variable-Mass Permeation of the Broken Rock Mass under Different Cementation Degrees
    Li, Chong
    Yao, Banghua
    Ma, Qingqing
    ADVANCES IN CIVIL ENGINEERING, 2018, 2018
  • [50] Development of a rock testing system with changeable stiffness and its application in the study on the rock failure mechanical behavior
    Zhao T.
    Yin Y.
    Tan Y.
    Xing M.
    Tang X.
    Li C.C.
    Yanshilixue Yu Gongcheng Xuebao/Chinese Journal of Rock Mechanics and Engineering, 2022, 41 (09): : 1846 - 1857