The Buoyancy of the Tunnel Segmental Lining in the Surrounding Filling Material and its Effects on the Concrete Stress State

被引:0
作者
Xin Han
Pierpaolo Oreste
Fei Ye
机构
[1] Chang’an University,School of Highway
[2] Politecnico di Torino,Department of Environmental, Land and Infrastructure Engineering (DIATI)
来源
Geotechnical and Geological Engineering | 2023年 / 41卷
关键词
Shield tunnels; Segmental lining; Buoyancy phenomenon; Finite element method (FEM); Lining deformation; Joint behaviour;
D O I
暂无
中图分类号
学科分类号
摘要
Segmental lining is subject to significant upward buoyancy forces when a grouting material (slurry), initially fluid, is adopted to fill the gap between its external profile and the wall of a tunnel excavated with a TBM machine. The analysis of the effects of these forces is important in order to correctly dimension the segmental lining and avoid damage to the lining and subsequent costly maintenance and restoration actions. Given the complexity of the behavior of a segmental lining consisting of segmental rings and circular joints that alternate in the longitudinal direction of the tunnel, a specific numerical model has been implemented, adopting the Finite Element Method (FEM). This model is able to obtain the development of the vertical displacements of the segmental lining starting from the TBM tail, together with the bending moments and the shear forces induced inside it. The developed model is able to assess the risks of breaking and damaging the concrete and steel bolts that are used to connect the segmental rings at the circular joints; therefore, it represents a useful design tool for being able to correctly dimension the segmental lining also in relation to the risks produced by the appearance of considerable buoyancy forces around it, due to the presence of the initially fluid filling material. The proposed numerical model was applied to a real case (Ningbo metro tunnel) and allowed to obtain satisfactory results from the comparison of the calculated displacements with in situ measurements. Some sensitivity analyzes developed on the studied case have made it possible to detect which are the influencing parameters that have the greatest impact on the behavior of segmental lining in the presence of the studied buoyancy forces.
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页码:741 / 758
页数:17
相关论文
共 190 条
[1]  
Arnau O(2012)Three dimensional structural response of segmental tunnel linings Eng Struct 44 210-221
[2]  
Molins C(2004)Field measurements of grout pressures during tunnelling of the sophia rail tunnel Soils Found 44 39-48
[3]  
Bezuijen A(2019)3D response analysis of a shield tunnel segmental lining during construction and a parametric study using the ground-spring model Tunn Undergr Space Technol 90 369-382
[4]  
Talmon AM(2018)Numerical simulation of the uplift behavior of shield tunnel during construction stage Soils Found 58 370-381
[5]  
Kaalberg FJ(2021)General solutions for the longitudinal deformation of shield tunnels with multiple discontinuities in strata Tunn Undergr Space Technol 107 103652-340
[6]  
Plugge R(2020)A simplified method for estimating the longitudinal and circumferential behaviors of the shield-driven tunnel adjacent to a braced excavation Comput Geotech 123 103595-1974
[7]  
Chaipanna P(1966)The shear coefficient in Timoshenko's beam theory J Appl Mech 6 335-875
[8]  
Jongpradist P(2018)Cracking problems in the segments of Tabriz Metro tunnel: a 3D computational study Geotech Geol Eng 36 1959-510
[9]  
Chen RP(2013)3D modelling for mechanized tunnelling in soft ground-influence of the constitutive model Am J Appl Sci 10 863-117
[10]  
Meng FY(2014)The behaviour of the segmental tunnel lining studied by the hyperstatic reaction method Eur J Environ Civ Eng 18 489-22