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Influence of rock property correlation on reliability analysis of rock slope stability: From property characterization to reliability analysis

机译:岩石性质关联对岩石坡稳定性可靠性分析的影响:从物业特征到可靠性分析

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Cohesion ( c ) and friction angle ( ? ) of rock are important parameters required for reliability analysis of rock slope stability. There is correlation between c and ? which affects results of reliability analysis of rock slope stability. However, the characterization of joint probability distribution of c and ? through which their correlation can be estimated requires a large amount of rock property data, which are often not available for most rock engineering projects. As a result, the correlation between c and ? is often ignored or simply assumed during reliability studies, which may lead to bias estimation of failure probability. In probabilistic rock slope stability analysis, the influence of ignoring or simply assuming the correlation of the rock strength parameters (i.e., c and ? ) on the reliability of rock slopes has not been fully investigated. In this study, a Bayesian approach is developed to characterize the correlation between c and ?, and an expanded reliability-based design (RBD) approach is developed to assess the influence of correlation between c and ? on reliability of a rock slope. The Bayesian approach characterizes the site-specific joint probability distribution of c and ? , and quantifies the correlation between c and ? using available limited data pairs of c and ? from a rock project. The expanded RBD approach uses the joint probability distribution of c and ? obtained through the Bayesian approach as inputs, to determine the reliability of a rock slope. The approach gives insight into the propagation of the correlation between c and ? through their joint probability into the reliability analysis, and their influence on the calculated reliability of the rock slope. The approaches may be applied in practice with little additional effort from a conventional analysis. The proposed approaches are illustrated using real c and ? data pairs obtained from laboratory tests of fractured rock at Forsmark, Sweden. Graphical abstract Display Omitted Highlights ? Rock property correlation is characterized using Bayesian approach. ? The Bayesian approach uses available limited data to characterize correlation between rock properties at specific site. ? Expanded reliability-based design approach is developed to assess the influence of correlation on reliability of rock slopes. ? Rock property correlation influences reliability of rock slope significantly.
机译:岩石的内聚力(c)和摩擦角(Δ)是岩石坡稳定性可靠性分析所需的重要参数。 C和C之间存在相关性?这影响了岩石坡稳定性可靠性分析的结果。但是,表征C的关节概率分布和?通过其相关性可以估计需要大量的岩石属性数据,这通常不适用于大多数岩石工程项目。结果,C和C的相关性?通常被忽略或简单地假设在可靠性研究中,这可能导致失败概率的偏差估计。在概率岩石边坡稳定性分析中,忽略或简单地假设岩石强度参数(即,C和Δ)对岩石斜坡可靠性的影响尚未得到充分研究。在这项研究中,开发了一种贝叶斯方法,以表征C和α之间的相关性,并且开发了一种扩展的基于可靠性的设计(RBD)方法以评估C和何处之间的相关性的影响。论岩石坡的可靠性。贝叶斯方法表征了C的特定网站特异性联合概率分布,并量化C和C之间的相关性?使用可用有限数据对C和?来自摇滚工程。扩展的RBD方法使用C的联合概率分布和?通过贝叶斯方法获得作为输入,确定摇滚斜率的可靠性。该方法介绍了C与C的相关传播的洞察通过它们的联合概率进入可靠性分析,以及对岩石斜坡的计算可靠性的影响。这些方法可以在实践中使用常规分析几乎没有额外的努力。使用真正的C和拟议方法进行说明吗?从Forsmark,瑞典的裂缝岩石的实验室测试中获得的数据对。图形抽象显示省略了亮点?使用贝叶斯方法的特征是岩石性质相关性。 ?贝叶斯方法使用可用的有限数据来表征特定站点的岩石属性之间的相关性。 ?开发了基于可靠性的基于可靠性的设计方法,以评估相关性对岩石斜坡可靠性的影响。 ?岩石属性相关性影响岩石斜率的可靠性。

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