首页> 外文期刊>Arabian journal of geosciences >A numerical study on mechanical behavior of jointed rock masses after tunnel excavation
【24h】

A numerical study on mechanical behavior of jointed rock masses after tunnel excavation

机译:隧道挖掘后关节岩体力学行为的数值研究

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The tunnel in jointed rock masses is prone to be overbroken and then gives rise to collapse, yet the failure modes of jointed rock masses are still poorly understood. This paper investigates anisotropic deformations and failure modes of tunnels in jointed rock masses. For this purpose, five series of numerical models are modeled for a severe tunnel overbreak occurring on the Panlongshan tunnel. The ubiquitous joint model is used to consider the shearing and tensioning effects of the bedding and joint structures. The factors affecting anisotropic deformation and failure of rock masses, such as bedding spacing (s), joint dip angles (theta), and joint spacing (d), are discussed. The results demonstrate that for the stratified rock masses (without joint), the maximum settlement around the tunnel is located at the roof, and the separation of "virtual blocks" along the bedding planes is a basic failure mode; for stratified rock masses containing joints, the maximum deformation surrounding the tunnel appears in the joint position, and failure happens through a combined rotation, sliding, and falling mechanism. Our study can also reveal that with the increase of the number of joints, the plastic zone at the joint positions has a developing tendency towards the deep part. The more complex the joint structures in jointed rock masses are, the more unstable rock masses are formed.
机译:关节岩体的隧道易于覆盖,然后引起崩溃,但关节岩体的失效模式仍然很差。本文研究了关节岩体中隧道的各向异性变形和失效模式。为此目的,五大系列数值模型为泛山隧道上发生的严重隧道悬漏。无处不在的接头模型用于考虑床上用品和关节结构的剪切和张紧效果。讨论了影响岩体各向异性变形和岩石破坏的因素,例如床上用品间隔,关节垂度(θ)和关节间隔(d)。结果表明,对于分层岩体(无关节),隧道周围的最大沉降位于屋顶上,并且沿床上用品的“虚拟块”的分离是基本的故障模式;对于含有关节的分层岩体,隧道周围的最大变形出现在接合位置,并且通过组合旋转,滑动和下降机构发生故障。我们的研究还可以揭示随着关节数量的增加,关节位置的塑料区具有朝向深部的发展趋势。连接岩体中的关节结构越多,形成更不稳定的岩体。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号