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Observational Method for Tunnel Construction in Difficult Conditions Considering Environmental Impact to Groundwater

机译:考虑环境对地下水影响的困难条件下隧道施工观测方法

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摘要

Excavation of tunnel in Japan recently faces a lot of difficult conditions such that very complex geology, interaction with adjacent structures and groundwater problems in relation to environmental impact. This paper describes a new observational method executed in Inariyama Tunnel (Kyoto) intended to carry out construction with higher reliability, including groundwater control. Since Inariyama tunnel (10m diameter) crosses under an existing aqueduct tunnel at a distance of 27m, control of the mechanical and groundwater impact on the active aqueduct tunnel was considered to be a crucial issue. Very careful excavation was done with accurate measurements of deformation to eliminate instability of both tunnels. The observational method for groundwater is performed not only by a preliminary survey and numerical analysis for prediction, but also by flow rate into the tunnel and water pressure distribution measurement with 3 dimensional groundwater finite element analysis at each stage of excavation. Measured and calculated results are compared to grasp the subsequent work. Construction was successful with this proposed method.
机译:日本最近的隧道开挖面临许多困难的条件,例如非常复杂的地质,与相邻结构的相互作用以及与环境影响有关的地下水问题。本文介绍了一种在稻荷山隧道(京都)中执行的新观测方法,旨在进行包括地下水控制在内的更高可靠性的施工。由于稻荷山隧道(直径10m)在现有的渡槽隧道下方越过27m,因此控制机械和地下水对活动渡槽隧道的影响被认为是至关重要的问题。进行了非常仔细的开挖,并精确测量了变形,以消除两条隧道的不稳定性。地下水的观测方法不仅通过初步调查和数值分析来进行预测,而且还通过在每个开挖阶段对隧道的流速和水压力分布进行测量,并利用3维地下水有限元分析进行。比较测量结果和计算结果,以掌握后续工作。用这种建议的方法建造成功。

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