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Three-dimensional face stability and deformation analysis of tunneling with TBMs

机译:TBM隧道掘进的三维工作面稳定性及变形分析

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摘要

This paper presents three-dimensional (3D) face stability and deformation analysis of the Earth Pressure Balance (EPB) shield tunneling utilized in the construction of Shiraz subway twin-tunnels in Iran by analytical and finite element (FEM) simulation approaches. A FEM program, PLAXIS 3-D Tunnel is used to simulate step-by-step excavation and tunnel construction processes by tunnel boring machine (TBM). The result of FEM in terms of required face stability pressure is compared with analytical calculation using 3-D wedge stability model which is set up based on the limit equilibrium analysis. Heterogeneity of soil layers and 3-D soil arching effect are considered in this model. The results of wedge stability model and FEM simulations are in good agreement with Shiraz subway actual measurements. The numerical finite element procedure is found to be an effective approach for predicting the face stability pressure as well as the deformations and settlements due to EPB shield tunneling.
机译:本文通过解析和有限元(FEM)模拟方法,对伊朗设拉子地铁双隧道施工中使用的土压力平衡(EPB)盾构隧道进行了三维(3D)面稳定性和变形分析。 FEM程序PLAXIS 3-D隧道用于模拟隧道掘进机(TBM)的分步开挖和隧道施工过程。将有限元方法在所需的面稳定压力方面的结果与基于极限平衡分析建立的3-D楔稳定模型的分析计算进行了比较。该模型考虑了土层的异质性和3-D土拱效应。楔形稳定性模型和有限元模拟的结果与设拉子地铁的实际测量结果非常吻合。数值有限元程序被认为是预测工作面稳定压力以及由于EPB盾构隧穿而引起的变形和沉降的有效方法。

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  • 会议地点 Delft(NL)
  • 作者单位

    Universiti Teknologi Malaysia, Johor, Darul Takzim, Malaysia;

    Universiti Teknologi Malaysia, Johor, Darul Takzim, Malaysia;

    Universitas Indo Global Mandiri, Palembang, Indonesia;

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  • 正文语种 eng
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