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Analysis of excessive deformations in tunnels for safety evaluation

机译:分析隧道中的过度变形以进行安全性评估

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Tunnel construction is increasing worldwide in mining and civil engineering. There have been several accidents that resulted in delays, cost overruns, some with more severe consequences. To help minimize these accidents, it is necessary to assess and manage the risks associated with tunnel construction and exploration. A particular type of accident, or undesirable event, which can occur during tunnel construction and operation, is associated with the occurrence of excessive deformations occurring inside the tunnel. This can happen due to deficient design, construction defects, and high in situ stresses or due to specific swelling and squeezing grounds. Deep coal mines where large deformations can occur during and after excavations due to the soft properties of the rock and the high in situ stresses, are particularly vulnerable to this type of event. The associated non-linear problems are related with geomechanical behavior of the rock mass, changes in the geometry of cavities and in some cases with developing surface contacts due to large strains. In this paper, the phenomena involved in large material deformations are analyzed in detail and the basic equations for the Chen's large deformation theory are presented. The application of an FEM based method to simulate large material deformations, the Material Point Method (MPM) to the simulation of large deformation that occurs in tunnels when failure occurs, is also described. An application of MPM to the Jiahe Coal Mine, in China is presented, and the numerical results obtained with MPM compared with solutions using Chen's large deformation theory. Safety considerations about the excessive deformation scenario in tunnels are drawn and a risk assessment methodology with special use of Bayesian networks is proposed. A simplified schematic example was presented for two case scenarios.
机译:全球采矿和土木工程中的隧道建设正在增加。有几起事故导致延误,成本超支,其中一些后果更为严重。为了最大程度地减少这些事故,有必要评估和管理与隧道建设和勘探有关的风险。在隧道的建设和运营过程中可能发生的特殊类型的事故或不良事件,与发生在隧道内部的过度变形有关。这可能是由于设计不足,结构缺陷,高现场应力或由于特定的膨胀和挤压地面引起的。在深部煤矿中,由于岩石的软特性和高的原地应力,在开挖期间和开挖之后可能会发生较大的变形,因此特别容易受到此类事件的影响。相关的非线性问题与岩体的地质力学行为,空腔几何形状的变化有关,在某些情况下还与由于大应变而形成的地面接触有关。本文详细分析了材料大变形所涉及的现象,并提出了陈氏大变形理论的基本方程。还介绍了基于FEM的方法在模拟大型材料变形中的应用,即材料点方法(MPM)在隧道发生故障时模拟大型变形中的应用。介绍了MPM在中国嘉禾煤矿的应用,并将MPM获得的数值结果与陈大变形理论的求解结果进行了比较。提出了关于隧道过度变形的安全考虑,并提出了一种专门使用贝叶斯网络的风险评估方法。给出了两种情况下的简化示意图示例。

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