Investigation of the spatial distribution of tunnel seepage under varying drainage capacities in water-abundant regions
作者:Qing Xu, Pengfei Li, Chongbang Xu, Siqing Wang, Sulei Zhang · 发表于:Underground Space · 年份:2025 · DOI:10.1016/j.undsp.2025.02.010 · 被引用次数:13 · 研究领域:Geotechnical Engineering and Analysis、Grouting, Rheology, and Soil Mechanics、Landslides and related hazards
• The effect of geological and tunnel permeability parameters on tunnel drainage capacity were studied through model tests. • The evolution of the tunnel discharge and tunnel external water pressure under varying conditions were obtained. • The evaluation of the tunnel water pressure spatial distribution was studied. Effective control of the tunnel seepage field is crucial in water-abundant regions to ensure the safety and stability of underground structures. Therefore, it is imperative to investigate the effects of the geological factors and tunnel permeability parameters on the drainage capacities of such structures. The Tongzi Tunnel was subjected to model tests using a self-developed testing apparatus to investigate the spatial distribution of tunnel seepage under varying conditions of sand permeability, number of primary support layers, and number of primary support openings. Subsequently, numerical models were developed to validate the observed tunnel seepage field based on experimental conditions. On this basis, an effective water pressure ratio η is proposed to evaluate the hydraulic safety of the tunnel spatial distribution. The results indicated a positive correlation between the tunnel water discharge and sand permeability, primary support layers, and primary support openings. Among these factors, the primary support openings exhibited the highest sensitivity to tunnel water discharge, whereas the impact of the primary support layers was relatively low. Additionall...