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Stability of plane strain tunnel headings in soils with tensile strength cut-off

机译:剪切强度截止的平面应变隧道掘进头在土壤中的稳定性

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This paper focuses on stability analysis of plane strain tunnel headings in soils governed by the modified Mohr-Coulomb failure criterion. In terms of a very small or even zero tensile strength of soils, the tensile strength cutoff is introduced to modify the classical Mohr-Coulomb failure criterion which allows a nonlinear strength envelope of soils in tensile regime. An improved rotational failure mechanism of tunnel face is constructed to search the portion that is subjected to tensile stress along the whole failure block. It is discovered that the face pressure is the most critical when the tensile stress only appears at the top of the failure block. The numerical results obtained by the proposed approach are compared with those without tensile strength cut-off to highlight its influence on tunnel face stability. The finite difference method of FLAC3D is employed to further validate the proposed approach. The variations of cohesion, internal friction angle and unit weight of soils as well as the dimensionless coefficient e are investigated using the proposed approach to gain some insight into the improved failure mechanism. The elementary energy analysis is performed by dividing the failure block into numerous infinitesimal elements with respect to the rotation angle to give some extended discussions. It is shown that the top portion of the failure block that plays a role of anti-sliding is cut away due to the tensile strength cut-off, which eventually yields the critical face pressure. Conclusively, the proposed approach is an improved method for the stability analysis of plane strain tunnel headings in soils with tensile strength cut-off.
机译:本文重点研究了根据修正的Mohr-Coulomb破坏准则控制的土壤中平面应变隧道掘进方向的稳定性。考虑到土壤的拉伸强度很小甚至为零,引入了拉伸强度截止值来修改经典的Mohr-Coulomb破坏准则,该准则允许在拉伸状态下土壤具有非线性强度包络。构造了一种改进的巷道面旋转破坏机理,以沿着整个破坏区块搜寻受到拉应力的部分。发现当拉应力仅出现在破坏块的顶部时,面压力是最关键的。将该方法获得的数值结果与没有抗拉强度极限的结果进行了比较,以突出其对隧道面板稳定性的影响。 FLAC3D的有限差分方法被用来进一步验证所提出的方法。使用所提出的方法研究了内聚力,内摩擦角和单位重量的变化以及无量纲系数e,以期对改进的破坏机理有一定的了解。基本能量分析是通过将故障块相对于旋转角度划分为无穷小的元素来进行的,进行了一些扩展的讨论。结果表明,由于抗拉强度的切断,破坏了起到防滑作用的破坏块的顶部,最终产生了临界表面压力。最终,所提出的方法是一种用于分析具有抗拉强度极限的土壤中平面应变隧道掘进方向的稳定性的改进方法。

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