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Probabilistic treatment of the sliding wedge.

机译:滑动楔形的概率处理。

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摘要

Rock slope stability problems are often encountered in engineering environments. In nature, most variables governing rock slope stability problems such as the orientation of discontinuities, the strength parameters and the loading conditions are random variables. Therefore the safety factor itself is a statistic. This thesis analyzes the variation of all the parameters that enter into the standard stability analysis through the use of the Monte Carlo simulation technique.; To meet this goal, a Windows based program EzSlide written in Visual Basic 4.0 has been developed. EzSlide follows the concepts and procedures of an earlier DOS program, PROSLIDE/GEOSLIDE. Several new routines are added however. Now all the strength parameters and the loading conditions can be modeled using a theoretical probability distribution. Five common probability distributions: the normal, the lognormal, the Weibull, the exponential and the triangular can be chosen by the user to model these variables. Three new routines for the optimization of the slope angle and the slope strike, and the slope height are added to evaluate their influence on the probability of failure.; An application of the program using field data from a highway rock cut along TransCanada highway 17A is undertaken. The factors that influence the safety factor and the probability of failure are investigated. The water pressure and strength parameter JRC have the most significant impact on the safety factor and the probability of failure. It is found that the probability of failure changes dramatically with slope strike. The shape of the safety factor distribution is also examined. The probability distribution of the safety factor is found to be multi-modal. Multimodality is caused by the fact that discontinuities are not continuously distributed, but occur in sets and that only certain combinations of the discontinuities form sliding wedges.
机译:在工程环境中经常会遇到边坡稳定性问题。实际上,控制岩石边坡稳定性问题的大多数变量(例如不连续性的方向,强度参数和加载条件)都是随机变量。因此,安全系数本身就是一个统计数据。本文利用蒙特卡洛模拟技术分析了进入标准稳定性分析的所有参数的变化。为了实现此目标,已经开发了一个用Visual Basic 4.0编写的基于Windows的程序EzSlide。 EzSlide遵循早期DOS程序PROSLIDE / GEOSLIDE的概念和过程。但是,添加了几个新例程。现在,可以使用理论概率分布对所有强度参数和加载条件进行建模。用户可以选择五种常见的概率分布:正态,对数正态,威布尔,指数和三角形,以对这些变量进行建模。增加了三个优化坡度角和坡度走向以及坡度高度的新程序,以评估它们对失效概率的影响。使用来自沿TransCanada高速公路17A切割的高速公路岩石的现场数据对该程序进行了应用。研究了影响安全系数和故障可能性的因素。水压和强度参数JRC对安全系数和故障概率影响最大。结果发现,随着斜坡走向,破坏的可能性会发生巨大变化。还检查了安全系数分布的形状。发现安全系数的概率分布是多峰的。多模态是由于以下事实引起的:不连续性不是连续分布的,而是成组出现,并且仅某些不连续性组合形成滑动楔形。

著录项

  • 作者

    Feng, Ping.;

  • 作者单位

    The University of Manitoba (Canada).;

  • 授予单位 The University of Manitoba (Canada).;
  • 学科 Engineering Civil.; Geotechnology.; Geology.
  • 学位 M.Sc.
  • 年度 1997
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学 ; 地质学 ; 地质学 ;
  • 关键词

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