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Study on Construction Influence of Shield Tunnel of Urban Rail Transit on Large-Section Mining Tunnel

机译:城市轨道交通盾构隧道施工影响研究大型采矿隧道

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Due to the increasingly expanding of urban rail transit, shield tunnelling adjacent to existing tunnels has become more and more common in cities. Construction of new tunnels will pose great risks to the safety of existing tunnels. This paper focused on the influence of shield tunnelling on the large-section mining tunnel in the argillaceous siltstone stratum and proposed the influence zone based on the surface subsidence criterion. By carrying out numerical simulations and model test, the surface subsidence, the internal force of the mining tunnel, and the surrounding rock pressure were monitored and the accuracy of the influence zone was verified. The research shows that the shield machine tunnels forward from one time the excavation diameter before the monitoring section until the monitoring section completes the segment assembly. This process is the main stage that causes the increase in the corresponding surface settlement and the additional displacement of the existing mining tunnel. The excavating tunnel influences on the mining tunnel structure were mainly shown at the vertical additional deformation, which is manifested as the overall floating of the mining tunnel. The influence of internal force was performed as the asymmetric change of internal force of the mining tunnel. The mining tunnel is closer to the shield tunnel, showing more significant changes of the internal force of the structures. The structure near the shield tunnel is strengthened by pressure, and the structure far away from the shield tunnel is more prone to tensile failure.
机译:由于城市轨道运输越来越扩大,靠近现有隧道的盾牌隧道在城市中变得越来越普遍。新隧道的建设将对现有隧道的安全构成巨大风险。本文集中于屏蔽隧道对泥石石层中大截面挖掘隧道的影响,并提出了基于地表沉降标准的影响区。通过进行数值模拟和模型试验,监测表面沉降,采矿隧道的内部力以及围绕岩石压力的验证,验证了影响区的准确性。该研究表明,屏蔽机从监测部分前一段挖掘直径前进,直到监测部分完成段组件。该过程是主要阶段,导致相应的表面沉降和现有采矿隧道的附加​​位移的增加。挖掘隧道对采矿隧道结构的影响主要显示在垂直附加变形,这表现为采矿隧道的整体浮动。内部力的影响是作为采矿隧道内部力的不对称变化。采矿隧道更接近屏蔽隧道,显示结构内部力的更大变化。屏蔽隧道附近的结构通过压力加强,并且远离屏蔽隧道的结构更容易发生拉伸失效。

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