ISSN 2096-4498

   CN 44-1745/U

二维码

Tunnel Construction ›› 2021, Vol. 41 ›› Issue (2): 240-247.DOI: 10.3973/j.issn.2096-4498.2021.02.010

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Analysis of SurroundingRock Disturbance Caused by TBM Excavation of Deepburied Railway Tunnel

WANG Feiyang1, ZHOU Kaige1, FANG Yong1, XU Gongyun1, WANG Huiwu2, ZHUO Bin1   

  1. (1. Key Laboratory of Transportation Tunnel Engineering, Ministry of Education, Southwest Jiaotong University,  Chengdu 610031, Sichuan, China; 2. China Railway Eryuan Engineering Group Co., Ltd., Chengdu 610031, Sichuan, China)

  • Online:2021-02-20 Published:2021-03-05

Abstract:  A deepburied railway tunnel using a tunnel boring machine (TBM) is subjected to a high level of insitu stress, and the stress field is complex and variable. Hence, to study the surroundingrock disturbances caused by TBM excavation of deepburied railway tunnels and investigate its stressredistribution characteristics and the stressredistribution mechanism, a TBM tunnelexcavation model is established using numerical simulation software FLAC 3D. The stressredistribution characteristics during the TBM tunnelexcavation process are analyzed according to the forceflow theory, and positions that are prone to rockburst are predicted based on the elasticstrainenergy theory. The research results show the following. (1) The surroundingrock stress and elasticstrain energy of the TBM tunnel are approximately symmetrically distributed up and down, and the TBM deadweight slightly affects the stress distribution of the surrounding rock. (2) In the horizontal tectonicstress field, the redistribution of the transverse stress obviously affects the stress concentration of the maximum principal stress, and the phenomena of maximum principalstress concentration at the crown and arch bottom, arch shoulder and arch feet, and arch waist are mainly caused by the stress concentration of the transverse, shear, and vertical stresses. The stressconcentration degree of the maximum principal stress reflects the jump level of the elasticstrain energy. Rockbursts have the greatest possibility of occurring at the arch bottom and crown of the TBM tunnel.

Key words: railway tunnel, TBM, surrounding rock disterbance, stress redistribution, elasticstrain energy, force flow, rockburst, numerical simulation

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