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深埋隧洞施工期渗控措施对衬砌外水压力的影响

李鸣威 李玉峰 崔皓东 李少龙 孙云

长江科学院院报2026,Vol.43Issue(1):202-209,8.
长江科学院院报2026,Vol.43Issue(1):202-209,8.DOI:10.11988/ckyyb.20241186

深埋隧洞施工期渗控措施对衬砌外水压力的影响

Influence of Seepage Control Measures During Deep-Burial Tunnel Construction on External Water Pressure on Tunnel Lining

李鸣威 1李玉峰 2崔皓东 1李少龙 1孙云3

作者信息

  • 1. 长江科学院水利部岩土力学与工程重点实验室,武汉 430010
  • 2. 云南省滇中引水工程建设管理局,昆明 650051
  • 3. 云南省滇中引水工程有限公司,昆明 650000
  • 折叠

摘要

Abstract

[Objective]The Xianglushan Tunnel is a challenging and key control project of the Central Yunnan Wa-ter Diversion Project.Branch Tunnel No.7 of the Xianglushan Tunnel,located in Songgui Town,Heqing County,Dali Prefecture,Yunnan Province,generally lies at a depth of 600-1 300 m,with a maximum burial depth of 1 415 m.High external water pressure is regarded as a major threat to its safety.Existing studies on tunnel external water pressure have mostly assumed homogeneous strata,paying relatively little attention to geological structures.The influence of geological structures—particularly the presence of aquitard layers above the tunnel—remains to be investigated in depth.[Methods]A typical deep-burial section of the Central Yunnan Water Diversion Project was investigated through field observations and numerical simulation to study the external water pressure acting on the tunnel lining.The effects of geological structures and seepage control measures on the external water pressure were analyzed to provide a reference for the design and construction of deep-burial tunnels.[Results]During in-situ drilling,groundwater in the tunnel was identified as fissure groundwater.Obvious water inflow occurred if a bore-hole intersected water-conducting fissures;otherwise,the boreholes remained essentially dry.Monitoring data from five piezometers installed in the tunnel over nearly one year indicated that the external water pressure around the unlined tunnel during construction was relatively low,only several meters of water head.Numerical simulation of the seepage field revealed that higher rock permeability and shorter distance between the tunnel and water-conducting structures increased both external water pressure and seepage discharge.Impermeable linings,while blocking wa-ter,caused an increase in external water pressure.Drainage holes,while reducing external water pressure,resulted in an increase in tunnel seepage discharge.Under specific geological structures and seepage control measures,tun-nel excavation and drainage may only cause local groundwater drawdown around the tunnel,without affecting the re-gional phreatic surface.[Conclusion]In the model of this study,an aquitard layer with relatively low permeability exists above the tunnel,which limits the influence range of tunnel drainage.As a result,drainage only forms a lo-calized desaturation zone between the tunnel and the aquitard,exerting minimal effect on groundwater above the aquitard.This localized desaturation explains the phenomenon observed in tunnel projects in water-rich areas,where the regional phreatic surface is high while the external water pressure acting on the tunnel remains relatively low.Near the tunnel face,equipotential lines are densely spaced,and the hydraulic gradient is relatively large,whereas a smaller gradient prevails behind the face.This indicates that greater seepage pressure is imposed near the tunnel face,explaining why seepage-induced failures frequently occur in this area.

关键词

深埋隧洞/隧洞渗控措施/隔水衬砌/外水压力/数值模拟/滇中引水工程

Key words

deep-burial tunnel/tunnel seepage control measures/aquitard lining/external water pressure/numeri-cal simulation/Central Yunnan Water Diversion Project

分类

建筑与水利

引用本文复制引用

李鸣威,李玉峰,崔皓东,李少龙,孙云..深埋隧洞施工期渗控措施对衬砌外水压力的影响[J].长江科学院院报,2026,43(1):202-209,8.

基金项目

云南省重大科技专项计划项目(202102AF080001) (202102AF080001)

中国中铁股份有限公司科技研究开发计划项目(2022-重大-15) (2022-重大-15)

长江科学院院报

1001-5485

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