Mechanical Behavior and Rock Breaking Mechanism of Shield Hob Based on Particle Flow Code (PFC) Method

被引:0
|
作者
Zhe Yang
Haibing Cai
Mai Dai
Tao Wang
Mengkai Li
机构
[1] Anhui University of Science and Technology,School of Civil Engineering and Architecture
[2] China Railway Fourth Bureau Group Co.,undefined
[3] Ltd. Urban Rail Branch,undefined
关键词
Shield machine; Hob; Mechanics characteristic; Particle flow; CSM;
D O I
暂无
中图分类号
学科分类号
摘要
During the construction of tunnel using shield method, the rock breaking performance of hob is one of the key factors that determines the successful construction of subway tunnel. In this study, a mechanics model of shield hob based on the Colorado School of Mines (CSM) model and a discrete element model of shield hob based on particle flow code (PFC) are established on the basis of the shield construction of ultrahigh hard rock section from Agricultural and Forestry University Station to Hongtang Station of Fuzhou Metro Line No. 5. These models are used to reveal the rock breaking law under different hob types (single-edged hob, double-edged hob and edge hob) and numbers (single hob, double hobs, three hobs and full hobs). Laboratory test results show that the discrete element model based on PFC has high accuracy. Numerical simulation results show that the vertical force and rolling force of the single-edged hob and double-edged hob increase with the increase in the distance between the installation position of the hob and the centre of the cutter, whereas that of the edge hob are less affected. With the increase in the number of hobs, the hard rock gradually forms a through joint from a single crack, and the vertical force and torque of a single hob decrease. Comparative results of the theoretical and numerical simulation show that the maximum errors of vertical force and torque are 10.9% and 47.3%, respectively, and they are 11.3% and 37.5% of the rated value of No. 552 shield machine of China Railway. These values meet the engineering requirements and can provide reference for shield selection and shield tunnel construction in the future.
引用
收藏
页码:353 / 370
页数:17
相关论文
共 50 条
  • [1] Mechanical Behavior and Rock Breaking Mechanism of Shield Hob Based on Particle Flow Code (PFC) Method
    Yang, Zhe
    Cai, Haibing
    Dai, Mai
    Wang, Tao
    Li, Mengkai
    GEOTECHNICAL AND GEOLOGICAL ENGINEERING, 2023, 41 (01) : 353 - 370
  • [2] Method of particle flow and PFC2D Code
    Zhou, Jian
    Chi, Yong
    Chi, Yu-wei
    Xu, Jian-ping
    Yantu Lixue/Rock and Soil Mechanics, 2000, 21 (03): : 271 - 274
  • [3] PARTICLE FLOW CODE MODELING OF THE MECHANICAL BEHAVIOR OF LAYERED ROCK UNDER UNIAXIAL COMPRESSION
    Yao, Nan
    Ye, Yi-Cheng
    Hu, Bin
    Wang, Wei-Qi
    Wang, Qi-Hu
    ARCHIVES OF MINING SCIENCES, 2019, 64 (01) : 181 - 196
  • [4] Particle flow code modeling of shear behavior of rock joints
    Yu, Huazhong
    Ruan, Huaining
    Chu, Weijiang
    Yanshilixue Yu Gongcheng Xuebao/Chinese Journal of Rock Mechanics and Engineering, 2013, 32 (07): : 1482 - 1490
  • [5] Scale effect of mechanical properties of jointed rock mass: A numerical study based on particle flow code
    Wang, Xiao
    Yuan, Wei
    Yan, Yatao
    Zhang, Xue
    GEOMECHANICS AND ENGINEERING, 2020, 21 (03) : 259 - 268
  • [6] Failure Mechanism of Anchored Rock under Constant Resistance Values of Cable Based on Particle Flow Code
    Sun, Xiaoming
    Cui, Li
    Zhang, Yong
    Jiang, Zuoxun
    Wang, Lei
    GEOFLUIDS, 2022, 2022
  • [7] Analysis of rock high-slope stability based on a particle flow code strength reduction method
    Kong, Ying
    Chen, Pengyu
    Yu, Hongming
    Electronic Journal of Geotechnical Engineering, 2015, 20 (28): : 13421 - 13430
  • [8] Crack-closure behavior and stress-sensitive wave velocity of hard rock based on flat-joint model in particle-flow-code (PFC) modeling
    Siyu, Peng
    Xibing, Li
    Chongjin, Li
    Lisha, Liang
    Linqi, Huang
    COMPUTERS AND GEOTECHNICS, 2024, 170
  • [9] Study on the equivalent mechanical parameter model of fractured rock mass based on the numerical test of particle flow code
    Ge, Ying
    Xie, Liangfu
    Shi, Chen
    2018 INTERNATIONAL SEMINAR ON COMPUTER SCIENCE AND ENGINEERING TECHNOLOGY (SCSET 2018), 2019, 1176
  • [10] Failure mechanism of discontinuous joint rock mass under different confining pressures based on particle flow code
    Fang, Qiancheng
    Zhou, Keping
    Liu, Xuefu
    Zhongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Central South University (Science and Technology), 2014, 45 (10): : 3536 - 3543