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Excavation-induced hydraulic conductivity reduction around a tunnel - Part 2: Verification of proposed method using numerical modeling

机译:开挖引起的隧道周围水力传导率降低-第2部分:使用数值模型对提出的方法进行验证

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摘要

During tunnel excavation in a jointed rock mass, significant joint closure takes place in the immediate vicinity of tunnel due to joint effective normal stress increase, and the equivalent hydraulic conductivity is largely reduced within a zone approximately one tunnel-radius thick around the tunnel. A significant pressure drop takes place across this zone, and the actual raise of pore-water pressure in the surrounding rock mass is steeper than that estimated from the analytical solution that considers the jointed rock mass around the tunnel as a homogeneous, isotropic medium. This paper presents a numerical modeling of the mechanical and hydraulic behavior of a jointed rock mass around a tunnel and provides estimates of the groundwater inflow rate to be compared to those estimated from generally used analytical solutions. The numerical analysis results presented here verify the validity of the analytical method described in the Part 1 paper for estimating groundwater inflow rate into a tunnel considering excavation-induced hydraulic conductivity reduction.
机译:在节理岩体中的隧道开挖过程中,由于节理有效法向应力的增加,在紧邻隧道的地方发生了明显的节理封闭,并且等效的水力传导率在隧道周围大约一个隧道半径厚的区域内大大降低了。在该区域将发生明显的压降,并且周围岩体中的孔隙水压力的实际升高要比根据分析解决方案所估计的要陡峭得多,该分析解决方案将隧道周围的节理岩体视为均质的各向同性介质。本文介绍了隧道周围节理岩体的力学和水力行为的数值模型,并提供了地下水入流速率的估算值,并将其与从常用分析解决方案中得出的估算值进行比较。此处提供的数值分析结果验证了第1部分中描述的考虑开挖引起的水力传导率降低而估算地下水流入隧道的分析方法的有效性。

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