Abstract

The rich water tunnel often uses “water blocking and drainage limiting” waterproofing and drainage systems. On the one hand, the drainage system is set behind the lining to reduce the water pressure. On the other hand, the stratum grouting is used to control the discharge flow of groundwater. In the drainage system, it is important to determine the distance between the annular blind pipes, but there is no clear calculation formula, which leads to the designer often relying on experience. First, the groundwater drainage system is constructed. Based on Darcy’s law and the law of conservation of mass, the formula for calculating the seepage discharge and the seepage pressure with the parameters of annular blind pipe spacing is derived. At the same time, the design parameters of the grouting circle are optimised, and then the formula of annular blind pipe spacing is derived according to the design value of the antiwater pressure of the secondary lining structure and the allowable seepage discharge of the tunnel. Finally, based on the case study of the Hongtu extra-long tunnel under construction, it is verified by field monitoring data. The results show that (1) grouting reinforcement is an important means to reduce water seepage, and tunnel water seepage can be adjusted by changing the thickness and permeability coefficient of the grouting reinforcement circle, in which the thickness of the reinforcement circle should not be too large, and the permeability coefficient should not be less than 1/80 of the surrounding rock permeability coefficient; (2) according to the derived formula, the water pressure of the secondary lining structure decreases in a parabolic manner from the middle of the two rows of annular blind pipes to the place where the annular blind pipes are set; (3) the allowable water seepage of the tunnel and the design value of the water pressure resistance of the lining structure should be considered when determining the distance between annular blind pipes; and (4) based on the derived formula, the distance between the annular blind pipes in the test section of the Hongtu extra-long tunnel is determined to be 8 m.

Highlights

  • For a tunnel with abundant groundwater, groundwater continuously flows into the tunnel during the whole construction process and operation period, which brings great challenges to the structure and ecological environment [1,2,3,4]

  • Based on Darcy’s law and the conservation of mass law, this paper deduces the calculation formula of tunnel water seepage and the water seepage pressure that the secondary lining structure and the waterproof board must bear, optimises the design parameters of the grouting circle, and deduces the formula of the circular blind pipe spacing according to the design value of the secondary lining structure water pressure resistance and the allowable water discharge

  • Based on the assumption that the thickness of geotextile a is 5 mm and the distance between the circular blind pipes b is 10 m, the influence of the thickness of the grouting circle and the permeability coefficient on the water seepage and the height of the water head borne by the secondary lining structure is analysed

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Summary

Introduction

For a tunnel with abundant groundwater, groundwater continuously flows into the tunnel during the whole construction process and operation period, which brings great challenges to the structure and ecological environment [1,2,3,4]. When the reinforcement parameters reached the limit value, the seepage pressure and seepage flow of groundwater basically decreased, keeping the same law He et al [14] deduced the nonlinear analytical solution of water load based on the support system of limited drainage of the blind pipe and the water separation effect of the waterproof board. Based on Darcy’s law and the conservation of mass law, this paper deduces the calculation formula of tunnel water seepage and the water seepage pressure that the secondary lining structure and the waterproof board must bear, optimises the design parameters of the grouting circle, and deduces the formula of the circular blind pipe spacing according to the design value of the secondary lining structure water pressure resistance and the allowable water discharge. Based on the construction of the Hongtu extra-long tunnel case study, we go through the field monitoring data to verify

Theoretical Formula Derivation
Solve the Annular Blind Tube Spacing
Analysis of Calculation Examples
Conclusions
Full Text
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