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Stability analysis of unlined elliptical tunnel using finite element upper-bound method with rigid translatory moving elements

机译:刚性平移运动有限元上限法分析无衬砌椭圆隧道的稳定性

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The stability of an unlined elliptical tunnel in cohesive-frictional soils is determined. The analysis has been performed with two methods: finite element upper-bound method with plastic deformation elements (UP-PDE) and finite element upper-bound method with rigid translatory moving elements (UP-RTME). UP-PDE has been used to study tunnel stability by many scholars. The UP-RTME in combination with a finite element approach and triangular rigid translator moving elements is presented in detail. In the proposed method, the node coordinates and velocities of rigid elements are treated as unknowns without considering the rotating freedom. A specific plane strain formulation is proposed using nonlinear programming, and the optimal slip lines are determined by automatically adjusting the velocity discontinuities. Solutions for the influence of a range of soil parameters, dimensionless depths C/D and dimensionless spans BID on the stability numbers gamma D/c and collapse mechanisms are solved using this method. The gamma D/c values increase with phi and decrease with CID and BID. gamma D/c is less sensitive to C/D as phi increases. The collapse mechanisms of unlined elliptical tunnels comprising two groups of slip lines are also presented, and they explicitly reflect the relative movement of blocks. The results show that these two methods are in agreement with each other. (C) 2015 Elsevier Ltd. All rights reserved.
机译:确定了无衬砌椭圆隧道在粘性摩擦土壤中的稳定性。分析使用两种方法进行:具有塑性变形元素的有限元上限方法(UP-PDE)和具有刚性平移运动元素的有限元上限方法(UP-RTME)。 UP-PDE已被许多学者用来研究隧道的稳定性。详细介绍了UP-RTME与有限元方法和三角形刚性平移运动元件的组合。在提出的方法中,不考虑旋转自由度,将刚性单元的节点坐标和速度视为未知数。提出了使用非线性规划的特定平面应变公式,并通过自动调整速度不连续性来确定最佳滑移线。使用该方法解决了一系列土壤参数,无量纲深度C / D和无量纲跨度BID对稳定性数gamma D / c和塌陷机制的影响的解决方案。伽玛D / c值随phi增大,而随CID和BID减小。随着phi的增加,伽玛D / c对C / D的敏感性降低。还介绍了包含两组滑移线的无衬砌椭圆形隧道的倒塌机理,它们清楚地反映了块体的相对运动。结果表明,这两种方法相互吻合。 (C)2015 Elsevier Ltd.保留所有权利。

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