Damage mechanism modelling of shield tunnel with longitudinal differential deformation based on elastoplastic damage model

被引:37
作者
Liu, Jianwen [1 ]
Shi, Chenghua [1 ]
Wang, Zuxian [1 ]
Lei, Mingfeng [1 ,2 ]
Zhao, Dan [3 ]
Cao, Chengyong [4 ]
机构
[1] Cent South Univ, Sch Civil Engn, Changsha 410075, Peoples R China
[2] Cent South Univ, Key Lab Engn Struct Heavy Haul Railway, Changsha 410075, Peoples R China
[3] Changsha Metro Grp Co Ltd, Changsha, Peoples R China
[4] Shenzhen Univ, Sch Civil & Transportat Engn, Shenzhen, Peoples R China
基金
中国国家自然科学基金;
关键词
Differential deformation; Shield tunnel; 3D discontinuous contact model; Damage-plasticity model of concrete; SHEARING DISLOCATION; BEHAVIOR; CONCRETE; EXCAVATION; JOINT; LOAD; SOIL; PERFORMANCE; STIFFNESS; RIGIDITY;
D O I
10.1016/j.tust.2021.103952
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Shield tunnels with great longitudinal differential deformations will adversely affect the service performance and optional safety of the metro system. Previous studies on the longitudinal mechanical behavior of shield tunnel are mostly carried out within the framework of elastic or elastic-plastic theory. However, assuming the concrete as elastoplastic body cannot properly reflect its nonlinear mechanical characteristics such as strain softening, stiffness degradation, etc., while damage or crack inevitably occurs when shield tunnel suffers large deformations. Therefore, the nonlinear damage characteristics of concrete material are considered in this paper, a novel positive/negative decomposition of stress tensor in energy norm is introduced herein to consider the asymmetric tensile/compressive material behavior of concrete, and a bi-scalar damage constitutive model of concrete is developed in turn. Then, to investigate the damage and degradation mechanisms of shield tunnel with differential deformation, the 3D discontinuous contact model is employed to develop the elaborate tunnel-soil numerical model. Results show that when shield tunnel suffers differential deformation, tensile damage dominates while compressive damage is minor, additional shear force and bending moment are induced, the ovality of tunnel cross section and serviceability also vary along the longitudinal direction. The damage and degradation of concrete material will reduce the tunnel integral stiffness and attenuate its ability to resist longitudinal and circumferential deformation. Besides, the segmental rebar is hard to yield, while the longitudinal coupling bolts on the lower half of tunnel segments with large deformation are inclined to yield. It should be noted that, the segmental rings near the inflection point of longitudinal deformation profile are most severely damaged, and exhibit the largest convergence deformation and lowest serviceability, where special attentions should be paid.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] Damage detection and quantitative analysis of shield tunnel structure
    Huang, Zhen
    Fu, Helin
    Chen, Wei
    Zhang, Jiabing
    Huang, Hongwei
    AUTOMATION IN CONSTRUCTION, 2018, 94 : 303 - 316
  • [32] Structural Damage Evaluation Method for Metro Shield Tunnel
    Huang, Zhen
    Fu, Helin
    Zhang, Jiabing
    Chen, Wei
    Shi, Yue
    JOURNAL OF PERFORMANCE OF CONSTRUCTED FACILITIES, 2019, 33 (01)
  • [33] Effect of rolling angle on segment cracking and damage of shield tunnel-field investigation and modelling
    Feng, Haolan
    Ye, Fei
    Jiang, Yin
    Wang, Jian
    Wen, Xiaobao
    Fang, Qing
    ENGINEERING FAILURE ANALYSIS, 2022, 140
  • [34] Inversion model for mechanical status of longitudinal joints in shield tunnel
    Zhang, Xiaohui
    Qi, Lizhi
    Zhou, Shunhua
    Tian, Zhiyao
    STRUCTURAL CONCRETE, 2023, 24 (05) : 5697 - 5714
  • [35] Innovative Insights into Fatigue Damage Evolution of Shield Tunnel Segments by Introducing Stable Damage Limit and Memory Effect
    Zou, Yang
    Ye, Yichao
    Tang, Qianlong
    MATERIALS, 2025, 18 (04)
  • [36] On the deformation law of longitudinal joints of shield tunnel segment rings
    Gao, Bo
    Wu, Ting
    Peng, Hongxia
    Li, Xue
    Gao, Bo, 1600, Editorial By Modern Tunnelling Technology, China (51): : 145 - 149
  • [37] Analytical prediction for longitudinal deformation of shield tunnel subjected to ground surface surcharge considering the stiffness reduction
    Cao, Shian
    Liang, Rongzhu
    Kang, Cheng
    Wu, Wenbing
    Ke, Zhaibang
    Guo, Yang
    INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS, 2024, 48 (04) : 925 - 950
  • [38] A variational method for calculating the longitudinal deformation of a shield tunnel in soft soil caused by grouting under tunnel
    Di, Honggui
    Huang, Shihao
    Fu, Longlong
    Wang, Binglong
    ENGINEERING COMPUTATIONS, 2021, 38 (06) : 2733 - 2754
  • [39] Influence of longitudinal joint rotation on deformation of shield tunnel lining
    Li H.
    Huang X.
    Zhang Z.
    Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology, 2023, 55 (02): : 70 - 79
  • [40] Longitudinal Nonlinear Seismic Response of Shield Tunnel Based on Generalized Response Deformation Method
    Yu, Miao
    Bin, Ruan
    PROCEEDINGS OF GEOSHANGHAI 2018 INTERNATIONAL CONFERENCE: ADVANCES IN SOIL DYNAMICS AND FOUNDATION ENGINEERING, 2018, : 94 - 102