Rock and Soil Mechanics ›› 2019, Vol. 40 ›› Issue (6): 2154-2162.doi: 10.16285/j.rsm.2018.1903

• Fundamental Theroy and Experimental Research • Previous Articles     Next Articles

Upper-bound limit analysis of tunnel face stability under advanced support

CHEN Zheng1, HE Ping1, YAN Du-min1, 2, GAO Hong-jie1, NIE Ao-xiang1   

  1. 1. Tunnelling and Underground Engineering Research Center of Ministry of Education, Beijing Jiaotong University, Beijing 100044, China; 2. The 3th Engineering Co., Ltd., of China Railway 12th Bureau Group,Taiyuan, Shanxi 030024, China
  • Received:2018-10-12 Online:2019-06-11 Published:2019-06-20
  • Supported by:
    This work was supported by the National Key R&D Program of China (2017YFC0805401) and the Horizontal Research Project of Beijing Jiaotong University (C18L01030).

Abstract: Advanced support is often used to ensure the safety of tunnel construction in soft surrounding rock. In order to evaluate the tunnel stability under the advanced support, a joint failure model of truncated cone and logarithmic helix under the advanced support effect was established. The objective function of the tunnel safety factor was deduced based on the limit analysis upper bound method and the comprehensive strength reduction method, and considering the influence of the unsupported section of initial support. The function was solved using Matlab programming to judge the tunnel stability. Compared with model test results and existing theoretical research results, the rationality of the proposed method was verified, meanwhile, the factors affecting the safety factor of the tunnel stability were also analyzed. The research results show that with increasing the soil cohesion and internal friction angle, the applications of tunnel face bolt and arch pre-consolidation measures have a significant effect on the stability of the surrounding rock, while the increase of unsupported length and excavation height is not conducive to the stability of surrounding rock. When the internal friction angle is small, it is more beneficial to improve the stability of tunnel to reduce the excavation height by bench method.The increase of reinforcement strength of bolt in the working face plays a more significant role in improving tunnel stability. Finally, the construction design proposal drawing of the advanced support was given, which can provide a reference for the preliminary determination of the advanced support parameters and construction methods.

Key words: tunnel face stability, upper-bound limit analysis, stability safety factor, advanced support

CLC Number: 

  • U 455
[1] YANG Feng, HE Shi-hua, WU Yao-jie, JI Li-yan, LUO Jing-jing, YANG Jun-sheng. Tunnel face stability analysis by the upper-bound finite element method with rigid translatory moving element in heterogeneous clay [J]. Rock and Soil Mechanics, 2020, 41(4): 1412-1419.
[2] LI Shu-cai, CHEN Hong-bin, ZHANG Chong, GONG Ying-jie, LI Hui-liang, DING Wan-tao, WANG Qi,. Research on effect of advanced support in silty clay tunnel [J]. , 2017, 38(S2): 287-294.
[3] HU Wei-dong , CAO Wen-gui , YUAN Qing-song,. An upper-bound limit analysis of ultimate bearing capacity of ground foundation adjacent to slope based on asymmetric and bilateral failure mode [J]. , 2016, 37(10): 2787-2794.
[4] WANG Ying-chao , SHANG Yue-quan , JING Hong-wen, YU Li-yuan . Optimization of construction scheme of tunnel collapse and treatment effect [J]. , 2011, 32(S2): 514-520.
[5] XU Hong-fa,JIANG Miao,WANG Fa-jun,XU Shi-jie,WANG De-rong. Simulation and analysis of excavation of variable cross-section cavern with advanced support [J]. , 2010, 31(S1): 378-382.
[6] FAN Qing-lai , ZHANG Ke-yu , ZHANG Ling-nuo,. Analyses of bearing capacity of pipe pile foundation in inhomogeneous and anisotropic soft ground [J]. , 2008, 29(S1): 621-624.
[7] DONG Bi-chang, QIU Hong-sheng. Stability study of slopes of national Hu-Rong highway [J]. , 2006, 27(S2): 417-419.
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