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首页> 外文期刊>International journal of geomechanics >Face Stability Analysis for a Shield-Driven Tunnel in Anisotropic and Nonhomogeneous Soils by the Kinematical Approach
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Face Stability Analysis for a Shield-Driven Tunnel in Anisotropic and Nonhomogeneous Soils by the Kinematical Approach

机译:盾构法在各向异性和非均质土中的隧道面稳定性的运动学分析

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摘要

The stability on a tunnel face is of great practical significance for safe construction in tunnel engineering. In this work, an advanced three-dimensional (3D) failure mechanism is extended to the face stability analysis of a tunnel driven in anisotropic and nonhomogeneous soils using the kinematic approach of limit analysis. The results obtained from the presented approach are in good agreement with the existing ones, showing that this method can be further applied to the proposed situation in this paper. Two common examples of cohesion variation, a linear variation with depth and a layered soil, are then analyzed. The numerical results show that both anisotropy and nonhomogeneity have a significant impact on the critical face pressure, especially when the cohesion is relatively large or when there is a weaker layer. Therefore, these two factors should be taken into account in tunnel design. (C) 2015 American Society of Civil Engineers.
机译:隧道工作面的稳定性对于隧道工程的安全施工具有重要的现实意义。在这项工作中,使用极限分析的运动学方法,将先进的三维(3D)破坏机制扩展到各向异性和非均质土壤中驱动的隧道的面板稳定性分析。所提方法的结果与现有方法吻合良好,表明该方法可以进一步应用于本文提出的情况。然后分析了内聚力变化的两个常见示例,即随深度的线性变化和层状土壤。数值结果表明,各向异性和非均质性均对临界面压力产生重大影响,尤其是当内聚力较大或存在较弱的层时。因此,在隧道设计中应考虑这两个因素。 (C)2015年美国土木工程师学会。

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