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Probabilistic analysis and design of stabilizing piles in slope considering stratigraphic uncertainty

机译:考虑地层不确定性的斜坡稳定桩的概率分析与设计

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摘要

The uncertainty involved in the interpreted geological model may be categorized as the stratigraphic uncertainty and the properties uncertainty. Note that although the influence of the properties uncertainty on the behavior or performance of the geotechnical system and the geotechnical design has been extensively reported in the literature, the studies that address the stratigraphic uncertainty are limited. This paper presents a study regarding the influence of the stratigraphic uncertainty on the behavior of the geotechnical system and the geotechnical design. In which, the uncertainty in the stratigraphic configuration is characterized using the stochastic Markov random fieldbased approach with a large number of potential stratigraphic realizations. With these stratigraphic realizations as inputs, the influence of the stratigraphic uncertainty on the behavior of the geotechnical system is evaluated in a probabilistic manner; then, the design of the geotechnical system is formulated as a bi-objective optimizationbased problem that considers the design safety and the cost simultaneously. To demonstrate the effectiveness of the proposed probabilistic analysis and design approach, the problem of designing stabilizing piles in a slope consisting of multiple strata is studied. The parametric study is further conducted to analyze how the probabilistic analysis results are influenced by the pile parameters and how the probabilistic design results are influenced by the additional boreholes.
机译:解释的地质模型中涉及的不确定性可以作为地层不确定性和性质不确定性进行分类。注意,虽然在文献中广泛地报告了对岩土系统和岩土设计的行为或性能的影响对地岩土系统的行为或性能的影响,但解决了地层不确定性的研究是有限的。本文提出了关于地层不确定性对岩土系统和岩土设计行为的影响的研究。其中,地层配置中的不确定性的特征在于使用具有大量潜在地层实现的随机马尔可夫随机现场基础的方法。利用这些地层实现作为输入,以概率的方式评估地层不确定性对岩土系统行为的影响;然后,将岩土系统的设计作为双目标优化的问题,其同时考虑设计安全性和成本。为了证明所提出的概率分析和设计方法的有效性,研究了在由多个层组成的斜率中设计稳定桩的问题。进一步进行参数化研究以分析概率分析结果如何受桩参数的影响以及概率设计结果的影响是如何受到额外钻孔的影响。

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