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A three-dimensional slope stability method based on finite element stress analysis and dynamic programming.

机译:基于有限元应力分析和动态规划的三维边坡稳定方法。

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摘要

The application of limit equilibrium finite element slope stability methods is examined. Two-dimensional studies are presented to provide a better understanding of the interaction between a stress-deformation analysis and the slope stability calculations. Special attention is directed towards the influence of the stress-strain characteristics of the soil, the influence of Poisson's ratio and stress history. Studies are presented to investigate concerns that an isotropic linear elastic soil model might not provide a reliable estimate of the factor of safety in slopes where there is potential for extensive yielding, because the shear stress is permitted to increase beyond the shear strength of the soil. The influence of Poisson's ratio and stress history is shown to be related to the rotation of the principal stress that is part of the collapse process. The accuracy of the factor of safety is shown to depend on the degree of compatibility between the orientation of the principal stress and the admissibility criteria used to control the shape of the slip surface. The fluctuations in the factor of safety can be eliminated using an elasto-plastic stress analysis and kinematic admissibility criteria can be used to control the shape of the slip surface.;The development of a stress-based three-dimensional slope stability method is also presented. The factor of safety is computed based on the results of an independent stress-deformation analysis. The resulting factor of safety equation is determinate, linear and satisfies all conditions of equilibrium. The search for the slip surface is completed using traditional trial and error techniques where the shape of the critical slip surface is pre-defined along with a more advanced non-linear searching procedure. The characteristics of the derived factor of safety equation support the design of a searching algorithm based on a combination of dynamic programming and a series of geometric and kinematic admissibility criteria. The admissibility criteria are used to refine the searching procedure and distinguish between reasonable and unreasonable slip surfaces. The shape of the slip surface becomes part of the slope stability evaluation and is integrated with the method used to compute the factor of safety.
机译:研究了极限平衡有限元边坡稳定方法的应用。提出了二维研究,以更好地理解应力变形分析和边坡稳定性计算之间的相互作用。特别注意的是土壤应力-应变特性的影响,泊松比和应力历史的影响。提出了一些研究来调查关注点,即各向同性线性弹性土壤模型可能无法提供可靠的安全系数估计,因为存在允许大范围屈服的斜坡,因为允许剪切应力增加到超过土壤的剪切强度。泊松比和应力历史的影响被证明与主应力的旋转有关,而主应力是坍塌过程的一部分。已显示安全系数的准确性取决于主应力方向与用于控制滑移面形状的允许准则之间的兼容程度。使用弹塑性应力分析可以消除安全系数的波动,并且可以使用运动学上可接受的准则来控制滑移面的形状。;还提出了基于应力的三维边坡稳定性方法的发展。安全系数是根据独立的应力-变形分析的结果计算得出的。安全方程式的结果是确定的,线性的,并且满足所有平衡条件。使用传统的反复试验技术完成对滑动面的搜索,在该技术中,预先定义了关键滑动面的形状以及更高级的非线性搜索过程。安全方程式的推导特征支持基于动态规划以及一系列几何和运动学可接受性准则的搜索算法的设计。可接受性标准用于完善搜索过程,并区分合理和不合理的滑移面。滑动面的形状成为边坡稳定性评估的一部分,并且与用于计算安全系数的方法集成在一起。

著录项

  • 作者

    Stianson, Jason Robert.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Geotechnology.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 226 p.
  • 总页数 226
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

  • 入库时间 2022-08-17 11:39:00

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