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Analytical solution for tunnels not aligned with geostatic principal stress directions

机译:不符合静地主应力方向的隧道解析解

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It is well-known that rock masses may present marked stress anisotropy. However, most of the tunnel analyses (numerical and analytical) assume the tunnel axis aligned with one of the principal stress directions. When this is not the case, axial shear stresses appear, which then are neglected, as it is done in all analytical solutions available for tunnel analysis. Existing solutions may consider advanced nonlinear ground behavior (i.e. elastic brittle-plastic with e.g. Hoek and Brown failure criteria), linear-elastic ground with transversely anisotropic properties, seismic loading, groundwater and support, etc., but all consider that the axis of the tunnel aligns with one of the principal far-field stresses. This is also what is generally assumed when conducting more sophisticated, three dimensional numerical analyses. In this paper, an analytical solution to calculate the stresses and displacements induced by far-field axial shear stresses is presented. Solutions for supported and unsupported tunnels are provided. The proposed analytical solution can be combined with the classical Kirsch and Einstein-Schwartz solutions to determine the complete stress and displacement fields around the tunnel. Further, the effects of stress anisotropy are discussed.
机译:众所周知,岩体可能表现出明显的应力各向异性。但是,大多数隧道分析(数值和分析)都假定隧道轴线与主应力方向之一对齐。如果不是这种情况,则会出现轴向剪应力,然后将其忽略,因为在所有可用于隧道分析的分析解决方案中都这样做了。现有解决方案可能会考虑先进的非线性地面行为(即具有Hoek和Brown破坏准则的弹性脆性塑料),具有横向各向异性的线性弹性地面,地震荷载,地下水和支撑物等,但所有解决方案都考虑到了隧道与主要远场应力之一对齐。这也是进行更复杂的三维数值分析时通常假定的。本文提出了一种计算远场轴向剪应力引起的应力和位移的解析解。提供了受支持和不受支持的隧道的解决方案。所提出的分析解决方案可以与经典的Kirsch和Einstein-Schwartz解决方案结合使用,以确定隧道周围的完整应力场和位移场。此外,讨论了应力各向异性的影响。

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