Stability analysis for excavation in frictional soils based on upper bound method

被引:28
作者
Jin, Zixian
Zhang, Chengping [1 ]
Li, Wei [1 ]
Tu, Shiqin
Wang, Libin
Wang, Saixu
机构
[1] Beijing Jiaotong Univ, Educ Minist, Key Lab Urban Underground Engn, Beijing 100044, Peoples R China
基金
中国国家自然科学基金;
关键词
Excavation; Stability analysis against base heave; Upper bound solution; Limit analysis; Safety factor; Failure mechanism; VERTICAL CIRCULAR EXCAVATION; FACE STABILITY; BRACED EXCAVATIONS; CLAY; TUNNELS; NUMBERS;
D O I
10.1016/j.compgeo.2023.105916
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
This paper adopted both the numerical and analytical methods to investigate the excavation stability against base heave failure. The finite element limit analysis method (OPTUM) was firstly employed to calculate the safety factor of the excavation stability against base heave failure, and the failure mechanism of the excavation was obtained. Based on the analysis and observation of the numerical results, a rigid block rotational failure mechanism was proposed, and the analytical formula of the safety factor of the excavation was developed through the upper bound method of limit analysis. In order to verify the rationality of the proposed failure mechanism, the analytical formula of the safety factor and the failure pattern of excavation were compared with the numerical results and the existing classical failure mechanism. Furthermore, the influences of soil and excavation conditions on the excavation stability were analyzed and discussed. Finally, a rigid block rotational failure mechanism under stratified stratum conditions was also proposed to consider effects of the complex soil conditions on the excavation stability. The results show that the proposed rigid block rotational failure mechanism provides a more critical safety factor calculation result for actual engineering examples and obtains a more continuous and smooth failure surface, which can serve as an alternative for the analytical method of excavation stability.
引用
收藏
页数:26
相关论文
共 56 条
  • [1] Bjerrum L., 1956, GEOTECHNIQUE, V6, P32, DOI [10.1680/geot.1956.6.1.32, DOI 10.1680/GEOT.1956.6.1.32]
  • [2] Strutted Excavation in Soft Soil Incorporating a Jet-Grout Base Slab: Analysis Considering the Consolidation Effect
    Borges, Jose
    Pinto, Ricardo
    [J]. GEOTECHNICAL AND GEOLOGICAL ENGINEERING, 2013, 31 (02) : 593 - 615
  • [4] Stability Numbers for a Vertical Circular Excavation with Surcharge
    Chakraborty, Debarghya
    Kumar, Jyant
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES INDIA SECTION A-PHYSICAL SCIENCES, 2017, 87 (01) : 115 - 123
  • [5] Basal stability analysis of braced cuts in clay
    Chang, MF
    [J]. JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING, 2000, 126 (03) : 276 - 279
  • [6] Chen WF., 1975, LIMIT ANAL SOIL MECH
  • [7] Analytical method for predicting tunnel heave due to overlying excavation considering spatial effect
    Cheng, Kang
    Xu, Riqing
    Ying, Hongwei
    Lin, Cungang
    Gan, Xiaolu
    Gong, Xiaonan
    Zhu, Jianfeng
    Liu, Sijie
    [J]. TUNNELLING AND UNDERGROUND SPACE TECHNOLOGY, 2023, 138
  • [8] Mesh adaptive computation of upper and lower bounds in limit analysis
    Ciria, H.
    Peraire, J.
    Bonet, J.
    [J]. INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2008, 75 (08) : 899 - 944
  • [9] Face stability analysis of shallow circular tunnels driven by a pressurized shield in purely cohesive soils under undrained conditions
    Ding, Wantao
    Liu, Keqi
    Shi, Peihe
    Li, Mingjiang
    Hou, Minglei
    [J]. COMPUTERS AND GEOTECHNICS, 2019, 107 : 110 - 127
  • [10] Factors affecting the stability of deep excavations in clay with consideration of a full elastoplastic support system
    Do, Tuan-Nghia
    Ou, Chang-Yu
    [J]. ACTA GEOTECHNICA, 2020, 15 (07) : 1707 - 1722