ISSN 2096-4498

   CN 44-1745/U

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Tunnel Construction ›› 2022, Vol. 42 ›› Issue (S2): 381-388.DOI: 10.3973/j.issn.2096-4498.2022.S2.047

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Construction Method and Excavation Response of ShallowBuried SuperLargeSpan FourTrack HighSpeed Railway Tunnel: a Case 

Study of Xiabeishan No. 1 Tunnel on HangzhouTaizhou HighSpeed Railway

YANG Wentao1, LIU Xiabing2, 3, *, HE Shaohui2, ZHANG Xiaohua4, WANG Jianjun4   

  1. (1.China Railway Major Bridge Engineering Group Co.,Ltd.,Wuhan 430050,Hubei,China;2.School of Civil Engineering,Beijing Jiaotong University,Beijing 100044,China;3.Guangdong Hualu Transport Technology Co.,Ltd.,Guangzhou 510420,Guangdong,China;4.China Railway Design Corporation,Tianjin 300308,China)

  • Online:2022-12-30 Published:2023-03-24

Abstract:

To investigate the mechanical response behavior of excavation of shallowburied superlargespan tunnel, a case study is conducted on a fourtrack highspeed railway tunnel with a excavation span of 26.3 m and soil covering of 6~35 m using numerical simulation method under various construction methods. The results show that the stability of surrounding rock and the safety of supporting structure using composite doubleside drift method(CDDM) and doubleside drift method(DSDM) are better than those using other construction methods. The field monitoring results reveal the following: (1) During DSDM excavation, the surrounding rock deformation of superlargespan tunnel mainly occurs at the initial stage of top heading excavation of guide tunnel, and the removal of temporary support has little influence on surrounding rock deformation; the force of the primary support of the lower bench is small, while the primary support of the top heading is the main bearing structure. (2) The safety factor surplus of the primary support is large, and the supporting parameters obtained based on empirical analogy are conservative, so the thickness of shotcrete can be reduced and optimized. (3) The excavation of the lower bench in the middle guide tunnel will lead to the decline of the temporary support function, and the measures using DSDM to cancel the lower temporary support and optimize the excavation section are put forward, and the feasibility of the bench method is discussed.

Key words: shallowburied superlargespan tunnel, construction method; excavation mechanical response, primary support security, field monitoring