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Lower bound solutions for undrained face stability of plane strain tunnel headings in anisotropic and non-homogeneous clays

机译:各向异性和非均质黏土中平面应变隧道掘进头不排水面稳定性的下界解

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In this paper, the face stability of plane strain tunnel heading in anisotropic and non-homogeneous clays is investigated by the lower bound (LB) finite element limit analysis (FELA) with second-order cone programming (SOCP). New LB solutions of the problem are numerically derived and described by the set of the dimensionless parameters consisting of the stability load factor, the cover-depth ratio, the normalized overburden pressure, normalized strength gradient, and anisotropic strength ratio while failure mechanisms associated with these parameters are also discussed and compared. The computed LB solutions are validated with the existing results of isotropic strengths confirming the accuracy and correctness of the solutions. Based on a nonlinear regression, the new design equations for the stability load factor and factor of safety for plane strain headings in anisotropic and non-homogeneous clays are first time proposed for assessing the undrained stability of relatively long-wall tunnels particularly considering the effects of strength anisotropy and non-homogeneity.
机译:本文通过下限(LB)有限元极限分析(FELA)和二阶锥规划(SOCP)研究了各向异性和非均质黏土中平面应变隧道掘进的面稳定性。通过无量纲参数的集合,通过数值导出并描述了该问题的新的LB解,这些参数包括稳定载荷因子,覆盖深度比,归一化上覆压力,归一化强度梯度和各向异性强度比,而与此相关的破坏机制还讨论并比较了参数。用各向同性强度的现有结果验证了所计算的LB解,从而确认了解的准确性和正确性。在非线性回归的基础上,首次提出了各向异性和非均质黏土中平面应变方向的稳定荷载因子和安全因子的新设计方程,用于评估相对长壁隧道的不排水稳定性,特别是考虑了隧道的影响。强度各向异性和非均质性。

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