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Influence of heterogeneity on 3D slope reliability and failure consequence

机译:异质性对3D边坡可靠性和破坏后果的影响

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摘要

This paper investigates the influence of heterogeneity of undrained shear strength on the reliability of, and risk posed by, a long slope cut in clay, for different depths of foundation layer. The clay has been idealised as a linear elastic, perfectly plastic Von Mises material and its spatial variability has been modelled using random field theory, whereas slope performance has been computed using a parallel 3D finite element program. The results of Monte Carlo simulations confirm previous findings that three categories of failure mode are possible and that these are significantly influenced by the horizontal scale of fluctuation relative to the slope geometry. In particular, discrete 3D failures are likely for intermediate scales of fluctuation and, in this case, reliability is a function of slope length. The risk posed by potential slides has been quantified in terms of slide volumes and slide lengths, which have been estimated by considering the computed out-of-face displacements. The results show that, for a given horizontal scale of fluctuation relative to the slope geometry, there is a wide range of possible slide volumes and slide geometries. Indeed, the results highlight just how difficult it is to compute a 2D slope failure in a heterogeneous soil. However, they also indicate that, for low probabilities of failure, the volumes of potential slides can be small. This suggests that, for some problems, it may not be necessary to design to very small probabilities of failure, due to the reduced consequence of failure in this case. The techniques developed in this paper will be important in benchmarking simpler 2D and 3D solutions used in design, as there is a need to quantify slide geometries when benchmarking simpler methods based on predefined failure mechanisms.
机译:本文研究了不同地基深度下不排水抗剪强度的非均质性对长边坡切土的可靠度和风险的影响。粘土已被理想化为线性弹性,完美塑性的冯·米塞斯(Von Mises)材料,其空间变异性已使用随机场理论建模,而边坡性能已使用并行3D有限元程序进行了计算。蒙特卡洛模拟的结果证实了先前的发现,即三类破坏模式是可能的,并且这些类型会受到相对于坡度几何形状的水平波动规模的显着影响。尤其是,离散的3D故障可能会出现中等程度的波动,在这种情况下,可靠性是坡度长度的函数。已根据载玻片的体积和载玻片的长度对潜在的载玻片带来的风险进行了量化,并通过考虑计算出的面外位移进行了估算。结果表明,对于相对于坡度几何形状的给定水平波动范围,存在多种可能的滑动体体积和滑动体几何形状。确实,结果强调了在异质土壤中计算二维边坡破坏有多么困难。但是,它们也表明,对于低故障概率,潜在的滑梯的数量可能很小。这表明,对于某些问题,由于在这种情况下减少的故障后果,可能不必将故障概率设计为很小。本文中开发的技术对于基准化设计中使用的更简单的2D和3D解决方案将非常重要,因为在基于预定义的故障机制对基准化的较简单方法进行基准化时,需要量化滑块的几何形状。

著录项

  • 来源
    《Computers and Geotechnics》 |2014年第9期|198-208|共11页
  • 作者单位

    Section of Geo-Engineering, Department of Geoscience and Engineering, Faculty of Civil Engineering and Geosciences, Delft University of Technology, P.O. Box 5048,2600 GA Delft, The Netherlands;

    Section of Geo-Engineering, Department of Geoscience and Engineering, Faculty of Civil Engineering and Geosciences, Delft University of Technology, P.O. Box 5048,2600 GA Delft, The Netherlands;

    State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Wuhan 430071, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Failure consequence; Finite elements; Heterogeneity; Monte Carlo; Reliability; Risk; Slope stability; Stochastic analysis;

    机译:失败后果;有限元;异质性蒙特卡洛;可靠性;风险;边坡稳定性;随机分析;

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