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Improved Longitudinal Displacement Profiles for Convergence Confinement Analysis of Deep Tunnels

机译:改进的纵向位移剖面,用于深隧道的收敛约束分析

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Convergence-confinement analysis for tunneling is a standard approach for preliminary analysis of anticipated wall deformation and support design in squeezing ground. Whether this analysis is performed using analytical (closed form) solutions or with plane strain numerical models, a longitudinal displacement profile (LDP) is required to relate tunnel wall deformations at successive stages in the analysis to the actual physical location along the tunnel axis. This paper presents a new and robust formulation for the LDP calculation that takes into account the significant influence of ultimate (maximum) plastic radius. Even after all parameters are appropriately normalized, the LDP function varies with the size of the ultimate plastic zone. Larger yield zones take a relatively longer normalized distance to develop, requiring an appropriately calculated LDP. Failure to use the appropriate LDP can result in significant errors in the specification of appropriate installation distance (from the face) for tunnel support systems. Such errors are likely to result in failure of the temporary support. The equations presented here are readily incorporated into analytical solutions and a graphical template is provided for use with numerical modeling.
机译:隧道的收敛约束分析是对挤压土中预期的墙体变形和支护设计进行初步分析的一种标准方法。无论是使用解析(封闭形式)解决方案还是使用平面应变数值模型进行此分析,都需要纵向位移曲线(LDP)来将分析中连续阶段的隧道壁变形与沿隧道轴线的实际物理位置相关联。本文提出了一种新的且可靠的LDP计算公式,其中考虑了最终(最大)塑性半径的重大影响。即使在对所有参数进行适当归一化之后,LDP功能也会随最终塑料区域的大小而变化。较大的屈服区需要相对较长的归一化距离才能发育,因此需要适当计算的LDP。未能使用适当的LDP可能会导致在隧道支撑系统的适当安装距离(距工作面)的规格说明中出现重大错误。此类错误可能会导致临时支持失败。此处介绍的方程式很容易合并到解析解决方案中,并提供了图形模板供数值建模使用。

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