Study on the tunnel shape and soil-lining interaction influencing the lining behavior under seismic loading

被引:0
作者
Van Vi Pham [1 ]
Ngoc Anh Do [1 ,2 ]
Piotr Osinski [3 ]
Ngoc Thai Do [1 ,2 ]
Daniel Dias [4 ]
机构
[1] Sustainable Development in Underground Engineering Research Team, Hanoi University of Mining and Geology
[2] Department of Underground and Mining Construction, Faculty of Civil Engineering, Hanoi University of Mining and Geology
[3] Department of Geotechnical Engineering, Institute of Civil Engineering, Warsaw University of Life Sciences-SGGW
[4] Laboratory SR, Grenoble Alpes University
关键词
D O I
暂无
中图分类号
U451.4 [];
学科分类号
0814 ; 081406 ;
摘要
The response of tunnels subjected to seismic loading is a complex mechanism and depends not only on the seismic nature but also on tunnel structure and surrounding soil properties. The individual behavior of circular, rectangular, and sub-rectangular tunnels subjected to seismic loadings has already been studied in the literature. In the present research, two case scenarios of circular, rectangular tunnels and four sub-rectangular shaped tunnels, with similar cross-section areas, were adopted to perform a comprehensive numerical investigation. The purpose of the study was to determine the mechanical behavior of tunnels of different shapes, depending upon seismic conditions. Analyses were performed by considering the influence of soil-lining interaction, soil parameters, and lining thickness, as well as lining rigidity. Computations were performed for no-slip and full-slip conditions. The results indicate that the tunnel shape design is of great importance when regarding the mechanical behavior of the surrounding soil. This concerns no-slip as well as full-slip soil-lining interaction, especially when the lining is subjected to seismic loading. Moreover, it is shown that changes in incremental bending moments for circular, rectangular and sub-rectangular tunnels that depend upon the soil-lining interaction conditions differ significantly.
引用
收藏
页码:845 / 862
页数:18
相关论文
共 47 条
[1]  
Numerical analysis of moving train induced vibrations on tunnel; surrounding ground and structure.[J].Swati Srivastav;Sowmiya Chawla;Swapnil Mishra;.Earthquake Engineering and Engineering Vibration.2024, 01
[2]  
Seismic performance evaluation of water supply pipes installed in a full-scale RC frame structure based on a shaking table test.[J].Wu Houli;Guo Endong;Wang Jingyi;Dai Xin;Dai Chenxi;.Earthquake Engineering and Engineering Vibration.2024, 01
[3]  
An analytical model for evaluating the dynamic response of a tunnel embedded in layered foundation soil with different saturations.[J].Di Honggui;Guo Huiji;Zhou Shunhua;Wang Binglong;He Chao;Zhang Xiaohui;.Earthquake Engineering and Engineering Vibration.2022, 03
[4]  
Seismic ground amplification induced by box-shaped tunnels.[J].Damoon Feizi;Jafar Asgari Marnani;Hamid Alielahi;Mehdi Panji;.Earthquake Engineering and Engineering Vibration.2022, 03
[5]  
Centrifuge modelling of ground-borne vibrations induced by railway traffic in underground tunnels.[J].Yang Wenbo;Qian Zhihao;Tu Jiulin;Zhou Ziyang;Yan Qixiang;Fang Yong;He Chuan;.Earthquake Engineering and Engineering Vibration.2022, 02
[6]  
Effect of geofoam as cover material in cut and cover tunnels on the seismic response of ground surface.[J].Sadri Shadabi;Masoud Rabeti Moghadam;Mansour Parvizi;.Earthquake Engineering and Engineering Vibration.2022, 01
[7]  
Longitudinal integral response deformation method for the seismic analysis of a tunnel structure.[J].Liu Jingbo;Wang Dongyang;Bao Xin;.Earthquake Engineering and Engineering Vibration.2021, 04
[8]  
Large scale shaking table model test and analysis on seismic response of utility tunnel in non-homogeneous soil.[J].Cho Mya Darli;Tang Aiping;Huang Delong;Zhang Jiqiang;.Earthquake Engineering and Engineering Vibration.2021, 02
[9]  
Hyperstatic reaction method for calculations of tunnels with horseshoe-shaped cross-section under the impact of earthquakes.[J].Thanh Nguyen Chi;Gospodarikov Alexandr;.Earthquake Engineering and Engineering Vibration.2020, 01
[10]   1∶1站立式大断面异形盾构管片力学试验系统的研发与应用 [J].
张子新 ;
朱叶艇 ;
朱雁飞 ;
黄昕 ;
庄欠伟 .
岩石力学与工程学报, 2017, 36 (12) :2895-2905