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An analysis of the ground deformation caused by shield tunnel construction combining an elastic half-space model and stochastic medium theory

机译:结合弹性半空间模型和随机介质理论分析盾构隧道施工引起的地面变形

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The ground movement induced by the construction of shield tunnels affects the safety of nearby underground pipes and aboveground structures. Therefore, the reliable prediction of ground movement is important. In this paper, a model describing the interaction between soil and an EPB shield used in tunnels is presented, based on the classical elastic theory of Mindlin. In this model, the changing location of the working shield is considered. The equations describing the ground deformation around the tunnel caused by the additional force on the shield working surface and the frictional force between the outer surface of the shield and the surrounding soil are derived. The ground deformation caused by ground loss due to shield tunnel construction is derived using stochastic medium theory. Finally, this model is applied to two running tunnels, and the sensitivity of the ground deformation to the calculation parameters is discussed.
机译:盾构隧道施工引起的地面运动影响附近地下管道和地上结构的安全。因此,可靠的地面运动预测很重要。本文基于Mindlin的经典弹性理论,提出了描述隧道中土与EPB盾构之间相互作用的模型。在此模型中,考虑了工作护罩的变化位置。推导了描述盾构工作面上的附加力以及盾构外表面与周围土壤之间的摩擦力引起的隧道周围地面变形的方程。利用随机介质理论推导了盾构施工引起的地表损失引起的地表变形。最后,将该模型应用于两条正在运行的隧道,讨论了地面变形对计算参数的敏感性。

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