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Undrained stability of plane strain active trapdoors in anisotropic and non-homogeneous clays

机译:各向异性和非均匀粘土中平面菌株活性腹部的不驱动的稳定性

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Despite a large number of studies on the active failure of trapdoors conducted in the literature, there are very limited studies examining the combined influences of undrained strength anisotropy and non-homogeneity of clays on the problem. This paper presents the new lower bound solutions of the active failure of plane strain trapdoors in clays with linearly increasing anisotropic strengths. To achieve this purpose, the lower bound (LB) finite element limit analysis (FELA) of an anisotropic undrained strength criterion using second-order cone programming (SOCP) is developed to investigate the undrained stability of the problem under plane strain conditions. The anisotropic strengths of clays are modelled by employing an elliptical strength envelope requiring strengths in plane strain compression, extension and direct simple shear. The LB FELA is formulated by using a discrete form of the LB theorem of classical plasticity and a resulting optimization problem of anisotropic clay is cast and solved using the framework of conic quadratic optimization. A dimensionless technique is adopted to express the undrained stability of the problem in terms of adhesion factors of trapdoor roughness, cover-depth ratios, strength gradient ratios, and anisotropic strength ratios. The effects of these parameters on the trapdoor stability factor and associated failure mechanisms of trapdoors are also examined and discussed. Employing a nonlinear regression analysis to the computed LB solutions, the new design equations for the estimation of the undrained stability of trapdoors are proposed, where the effects of strength anisotropy and non homogeneity as well as width and depth of trapdoor and its roughness can be considered for practical stability applications.
机译:尽管有大量研究文献中进行的腹和腹部的积极失败的研究,但研究有限的研究研究了对不涉及的强度各向异性和非均匀性的粘土对问题的综合性影响。本文介绍了粘土中平面应变腹板的主动失效的新下限解决方案,具有线性增加各向异性强度。为达到此目的,开发了使用二阶锥形编程(SOCP)的各向异性不驱动强度标准的下界(LB)有限元限制分析(FELA)以研究平面应变条件下问题的不驱动稳定性。通过使用在平面应变压缩,延伸和直接简单剪切中的椭圆形强度包络来建模粘土的各向异性强度。通过使用典型可塑性的LB定理的离散形式配制LB FELA,并使用圆锥二次优化框架施放并解决各向异性粘土的所得到的优化问题。采用无量纲技术表达在Trapdoor粗糙度,覆盖深度比率,强度梯度比和各向异性强度比的粘附因子方面表达了问题的不统治稳定性。还研究了并讨论了这些参数对陷阱稳定因子和相关的腹腔腹部相关失效机制的影响。提出了对计算的LB解决方案的非线性回归分析,提出了用于估计腹腔的不推迟稳定性的新设计方程,其中强度各向异性和非均匀性以及捕集器的宽度和深度及其粗糙度的影响对于实际稳定性应用。

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