Mechanical Behavior and Stability Analysis of Underground Excavation Construction: Case Study of Large-Span and Variable Cross-Section Subway Crossover Tunnel

This paper presents a case study on the deformation characteristics and stress evolution of a large-span variable cross-section crossover tunnel excavated by the mining method. Three construction alternatives are compared: Scheme 1 adopts staggered excavation of twin tunnels with transverse passages, Scheme 2 adopts sequential excavation of twin tunnels with transverse passages, and Scheme 3 adopts gradual expansion excavation without transverse passages. Quantitative comparison shows that: (1) schemes with transverse passages reduce sudden rock deformation by 21.7% compared with Scheme 3; (2) Scheme 1 reduces construction steps by 16 compared with Scheme 2, with only 0.14 mm difference in maximum ground settlement (within engineering tolerance); (3) grouting reinforcement of the middle rock wall reduces surrounding rock deformation by 21.7% and plastic zone width by 18.3%. The recommended temporary support removal length is 5–10 m, which ensures that the incremental vault settlement during removal is controlled within 2 mm, meeting the regional engineering safety standards. Field monitoring results of Scheme 1 show that all deformation indices meet the control requirements. This construction technology can be extended to similar subway crossover projects.

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Publication Details

Journal
Applied Sciences
Published
2026-09-17
DOI
https://doi.org/10.3390/app16189230
Primary Topic
Geotechnical Engineering and Analysis
Type
article
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Mechanical Behavior and Stability Analysis of Underground Excavation Construction: Case Study of Large-Span and Variable Cross-Section Subway Crossover Tunnel

Guiyong Liu, Weizheng Liu, Weihua Lu, Mingye Wang et al.
Applied Sciences
Geotechnical Engineering and Analysis
article

Mechanical Behavior and Stability Analysis of Underground Excavation Construction: Case Study of Large-Span and Variable Cross-Section Subway Crossover Tunnel

Guiyong Liu, Weizheng Liu, Weihua Lu, Mingye Wang, Lei Li, Tao Lei
article en

Abstract

This paper presents a case study on the deformation characteristics and stress evolution of a large-span variable cross-section crossover tunnel excavated by the mining method. Three construction alternatives are compared: Scheme 1 adopts staggered excavation of twin tunnels with transverse passages, Scheme 2 adopts sequential excavation of twin tunnels with transverse passages, and Scheme 3 adopts gradual expansion excavation without transverse passages. Quantitative comparison shows that: (1) schemes with transverse passages reduce sudden rock deformation by 21.7% compared with Scheme 3; (2) Scheme 1 reduces construction steps by 16 compared with Scheme 2, with only 0.14 mm difference in maximum ground settlement (within engineering tolerance); (3) grouting reinforcement of the middle rock wall reduces surrounding rock deformation by 21.7% and plastic zone width by 18.3%. The recommended temporary support removal length is 5–10 m, which ensures that the incremental vault settlement during removal is controlled within 2 mm, meeting the regional engineering safety standards. Field monitoring results of Scheme 1 show that all deformation indices meet the control requirements. This construction technology can be extended to similar subway crossover projects.

Applied SciencesVol. 16(18)
Central South University (CN), Nanjing Forestry University (CN), CCCC Highway Consultants (China) (CN), Zhejiang University (CN)
Sustainable cities and communities
Openalex Percentile: Top 12%
Geotechnical Engineering and Analysis
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Mechanical Behavior and Stability Analysis of Underground Excavation Construction: Case Study of Large-Span and Variable Cross-Section Subway Crossover Tunnel — Guiyong Liu, Weizheng Liu, et al. · Applied Sciences (2026) | TGRS Research Map | TGRS