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Article

Research on the Leakage Effect of Shield Tunnels in Water-Rich Silty Clay Strata Based on On-Site Investigation and Numerical Simulation

1
School of Civil Engineering, Xi’an University of Architecture and Technology, Xi’an 710055, China
2
Shaanxi Key Laboratory of Geotechnical and Underground Space Engineering, Xi’an 710055, China
3
Xi’an University of Architecture and Technology Engineering Co., Ltd., Xi’an 710055, China
*
Author to whom correspondence should be addressed.
Buildings 2025, 15(21), 3867; https://doi.org/10.3390/buildings15213867
Submission received: 9 September 2025 / Revised: 16 October 2025 / Accepted: 21 October 2025 / Published: 26 October 2025

Abstract

Based on a metro project in Hangzhou, combined with the investigation of on-site seepage and leakage problems and finite element numerical simulation, the influence of local seepage and leakage in shield tunnels in water-rich silty clay strata on stratum settlement and lining structure deformation was studied. During the simulation process, two working conditions, namely leakage at the joint of the segment and local damage leakage, were, respectively, set up to analyze the distribution of pore water pressure, the development characteristics of stratum settlement and the response of the lining structure. The results show that the pore water pressure near the leakage area is significantly reduced. The pore pressure at the joint of the segment and the local leakage position is reduced by 81.22% and 76.88%, respectively, compared with the hydrostatic pressure at the same burial depth, and the reduction at the bottom of the model is 11.45% and 6.46%, respectively. Under different working conditions, the settlement rates all increased first and then tended to stabilize. The maximum surface settlements were 91 mm and 32 mm, respectively, and the former exceeded the control value. The surface settlement of local leakage is distributed in a concave pattern, and the peak settlement is located directly above the leakage point. The lining structure deforms significantly in both the upper and lower directions, both shifting downward towards the stratum. The maximum displacement and deformation caused by the leakage at the joint of the segment reached 78.26 mm and 24.38 mm, respectively, with obvious over-limits. It is recommended to prioritize the sealing treatment of the leakage area at the joint. The research results can provide theoretical references for the control of water leakage and structural safety evaluation of shield tunnels in water-rich and weak strata.
Keywords: shield tunnel; local leakage; ground settlement; deformation of the lining structure; numerical simulation shield tunnel; local leakage; ground settlement; deformation of the lining structure; numerical simulation

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MDPI and ACS Style

Tian, X.; Mei, Y.; Han, F.; Tang, J. Research on the Leakage Effect of Shield Tunnels in Water-Rich Silty Clay Strata Based on On-Site Investigation and Numerical Simulation. Buildings 2025, 15, 3867. https://doi.org/10.3390/buildings15213867

AMA Style

Tian X, Mei Y, Han F, Tang J. Research on the Leakage Effect of Shield Tunnels in Water-Rich Silty Clay Strata Based on On-Site Investigation and Numerical Simulation. Buildings. 2025; 15(21):3867. https://doi.org/10.3390/buildings15213867

Chicago/Turabian Style

Tian, Xinyu, Yuan Mei, Fangzhi Han, and Jinhua Tang. 2025. "Research on the Leakage Effect of Shield Tunnels in Water-Rich Silty Clay Strata Based on On-Site Investigation and Numerical Simulation" Buildings 15, no. 21: 3867. https://doi.org/10.3390/buildings15213867

APA Style

Tian, X., Mei, Y., Han, F., & Tang, J. (2025). Research on the Leakage Effect of Shield Tunnels in Water-Rich Silty Clay Strata Based on On-Site Investigation and Numerical Simulation. Buildings, 15(21), 3867. https://doi.org/10.3390/buildings15213867

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