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Mechanical Behaviour and Support Design of Large Underground Opening in Discontinuous Rock Masses

机译:间断岩体中大型地下洞口的力学行为及支护设计

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摘要

A rock mass in in-Situ is not continuum and its mechanical behaviour is strongly affected by the behaviour of the existing discontinuities, such as bedding, joints, faults and fractures. Several experimental and numerical investigations have demonstrated the influence of discontinuities on mechanical, thermal and hydraulic behaviour of jointed rock masses. It has also been indicated based on the experimental and in-situ investigations that deformational mechanism and stability of rock structures in the discontinuous rock masses extremely depend on not only the existing discontinuities but also new cracks, which are generated and progress due to loading and/or excavation.This study is to develop an expanded distinct element method (EDEM) for simulation of generation and progress of new cracks due to shear and tension failure in the matrix blocks. As the applications, changing the depth of opening and geometrical distributions of the existing discontinuities carries out excavation simulations of deep underground opening. For the verification of the proposed approach, scale model experiments by using the base friction experiment apparatus are also carried out. Finally, effects of cable bolts on controlling deformations of the rock masses surrounding opening and movements of key blocks are discussed.
机译:原地的岩体不是连续的,其力学行为会受到现有不连续面(例如层理,节理,断层和裂缝)的影响。几项实验和数值研究表明,不连续性对节理岩体的机械,热力和水力行为的影响。根据实验和现场研究还表明,不连续岩体中岩石结构的变形机理和稳定性不仅取决于现有的不连续性,而且还取决于由于载荷和/或产生和发展而产生的新裂纹。这项研究旨在开发一种扩展的离散元方法(EDEM),用于模拟由于基体块中的剪切和拉伸破坏而产生的新裂纹的产生和进展。作为应用,改变现有不连续部分的开口深度和几何分布可进行深地下开口的开挖模拟。为了验证所提出的方法,还使用基础摩擦实验设备进行了比例模型实验。最后,讨论了锚杆对控制围岩打开和关键块运动的岩体变形的影响。

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