Influence of the Large-Span Pile-Beam-Arch Construction Method on the Surface Deformation of a Metro Station in the Silty Clay–Pebble Composite Stratum

Author:

Li Tao1ORCID,Li Yue1ORCID,Yang Tengyu1,Hou Rui1,Gao Yuan1,Liu Bo12,Qiao Guogang3

Affiliation:

1. School of Mechanics and Civil Engineering, China University of Mining and Technology, Beijing 100083, China

2. Stage Key Laboratory for Geomechanics and Deep Underground Engineering, China University of Mining and Technology, Beijing 100083, China

3. Beijing Municipal Construction Group Co., Ltd., Beijing 100032, China

Abstract

The Pile-beam-arch (PBA) method is a new and effective construction method for the urban metro station. It is the key to ensuring the safe construction of the station to clarify the influence of PBA method construction on surface deformation under unfavorable geological and large span conditions. Based on a station of Beijing subway, this paper studies the surface deformation law of the large-span PBA method in different construction stages under silty clay–pebble composite stratum by means of FLAC 3D numerical analysis and field monitoring of level. Then the influence of the excavation scheme of the pilot tunnel and the construction scheme of the secondary lining of the arch on the surface deformation is simulated and analyzed. The results show that, through numerical simulation, the ratio of pilot tunnel excavation: pile-beam construction: vault initial support construction: vault secondary lining construction is about 5:1.1:3.3:0.6. The settlement deformation mainly occurs in the excavation stage of the pilot tunnel. Through the comparative analysis of the field monitoring results and the numerical simulation results, it can be seen that the two results are highly consistent, which verifies the accuracy of the numerical simulation results. The pilot tunnel excavation scheme of excavating the middle first and then excavating both sides, first through the upper layer and then through the lower layer, and the scheme of one-time construction of the secondary lining of the arch are better. The research results promote the further maturity and perfection of large-span PBA method construction under unfavorable geology and provide reference for similar projects.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of the 13th Five-Year Plan of China

Fundamental Research Fund for the Central Universities

Study and Application of 3D Dynamic Control and Construction Technology of Shield Passing Under Concentrated Risk Area

Yue qi Young Scholars of China University of Mining and Technology-Beijing

Publisher

MDPI AG

Subject

General Materials Science

Reference28 articles.

1. Networked analysis of the Shanghai subway network, in China;Zhang;Phys. A Stat. Mech. Its Appl.,2011

2. Development of rail transit network over multiple time periods;Peng;Transp. Res. Part A Policy Pract.,2019

3. Choi, J.-Y., Kim, S.-H., Lee, H.-H., and Chung, J.-S. (2021). Improvement of automatic measurement evaluation system for subway structures by adjacent excavation. Materials, 14.

4. Determination of effective parameters on surface settlement during shield TBM;Kim;Geomech. Eng.,2020

5. Instability mechanism of cavity-bearing formation under tunnel excavation disturbance;Liu;Adv. Civ. Eng.,2020

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