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Upper bound solutions for face stability of circular tunnels in non-homogeneous and anisotropic clays

机译:非均质各向异性黏土中圆形隧道面稳定的上限解

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This paper presents a three-dimensional stability analysis of a circular tunnel face in non-homogeneous and anisotropic undrained clay using the kinematic approach (upper bound) of limit analysis. The proposed failure mechanism consists of a cylindrical rigid block and a toroidal shear zone with variable radius, and the closed form analytical expressions of velocity field are derived within the framework of an orthogonal curvilinear coordinate system. The critical collapse-supporting pressure and stability ratio are obtained through optimization with respect to the geometrical parameters of the mechanism. Two types of non-homogeneous undrained strength, linearly changing with depth, and two-layer clays with constant undrained strength are investigated. Meanwhile, the 3-D finite element analysis is employed to validate the proposed failure mechanism. The upper bound solutions of the stability ratio of the proposed mechanism compare reasonably well with the upper bound solutions from the finite element analysis and show significant improvements over the existing upper bound solutions in single layer clays with homogeneous and isotropic undrained strength. The results show that the critical collapse pressure decreases with the increase in the non-homogeneous ratio and the anisotropic ratio and increases with the ratio between the undrained strength of the top layer and of the bottom layer.
机译:本文采用极限分析的运动学方法(上限),对非均质各向异性不排水黏土中圆形隧道面进行了三维稳定性分析。提出的失效机制由圆柱刚性块和可变半径的环形剪切带组成,并在正交曲线坐标系的框架内导出了速度场的闭合形式解析表达式。通过对机构的几何参数进行优化,可以获得临界的倒塌支撑压力和稳定性比。研究了两种随深度变化的非均质不排水强度和具有恒定不排水强度的两层粘土。同时,利用3D有限元分析来验证所提出的失效机制。所提出的机构的稳定比的上限解与有限元分析的上限解相当好,并且在均质和各向同性不排水强度的单层黏土中显示出比现有上限解有显着改进。结果表明,临界塌陷压力随着非均质比和各向异性比的增加而降低,并且随着顶层和底层的不排水强度之比而增加。

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