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Numerical solutions for tunnels excavated in strain-softening rock masses considering a combined support system

机译:考虑组合支持系统应变软化岩体挖掘隧道数值解

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In this article, an alternative numerical procedure to calculate displacements and stresses of supported circular tunnels is proposed, considering the whole process of tunnel advancement, and sequential installation of the primary and secondary support systems. In the derivation, the plastic area of the rock mass is divided into a large number of annuli around the tunnel, and then the Finite Difference Method is employed. First, the strain-softening behaviour model is taken to simulate the post-failure behaviour of the rock mass. Furthermore, the Mohr-Coulomb or the Hoek-Brown failure criteria can be chosen, a non-associated plastic flow rule is assumed and the dilatancy of the rock mass is considered. After that, the fictitious support forces concept is used to simulate the process of tunnel advancement, and thus, the three-dimensional effect of the tunnel face is considered. Finally, the solutions of displacements and stresses for the rock mass and the supports can be obtained, by using the compatibility conditions of stresses and displacements at both rock-support and support-support interfaces. The results obtained from these solutions agree well with those of the self-similar solutions for circular openings, and the compatibility conditions of supported tunnels were verified. The proposed method has been compared with the convergence-confinement method. Parametric analyses are then carried out to investigate the sensitivity of support forces and displacements to the rock mass behaviour model selection. Then, the application of the proposed solutions in the design of tunnels is presented. The proposed method provides a convenient alternative method for the preliminary design of tunnels.
机译:在本文中,提出了计算支持循环隧道的位移和应力的替代数值过程,考虑到整个隧道进步,以及初级和辅助支持系统的顺序安装。在推导中,岩体的塑料面积分为隧道周围大量的云,然后采用有限差分方法。首先,采用应变软化行为模型来模拟岩体的失败后行为。此外,可以选择MoHR-Coulomb或Hoek-Brown失效标准,假设非相关的塑料流量规则,并且考虑了岩体的膨胀。之后,虚拟支撑力概念用于模拟隧道进步的过程,因此,考虑隧道面的三维效果。最后,通过使用岩石支撑和支持支撑界面的应力和位移的兼容性条件,可以获得岩体质量和支撑件的位移和应力的解决方案。从这些解决方案获得的结果很好地与圆形开口的自相似溶液的结果很好,并且验证了支持的隧道的相容性条件。将该方法与收敛限制方法进行了比较。然后进行参数分析以研究支撑力和位移对岩体群众行为模型选择的敏感性。然后,提出了在隧道设计中的应用程序的应用。该方法为隧道初步设计提供了一种方便的替代方法。

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