采用概率法对崩塌斜坡的内聚力和摩擦角进行反向分析:两项案例研究

IF 2.6 Q2 ENGINEERING, GEOLOGICAL
Reza Nassirzadeh, Abdollah Dini, Vahid Balagar
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引用次数: 0

摘要

一般来说,岩土工程勘察是在实地观测的基础上对岩土工程参数进行反向分析。根据本研究介绍的反分析方法,我们仔细绘制了一些崩塌斜坡的几何图形,然后确定了地下水位、体积单位重量和其他可测量参数的统计特征。之后,建立了一系列二维模型,用于对崩塌进行反向分析。此外,还利用基于概率方法的统计分析来估算剪切强度变量的变化范围。该研究通过对安杰尔德和达拉鲁铜矿的两个案例研究,对斜坡崩塌进行了概率回溯分析。结果表明,概率回溯分析方法在斜坡崩塌分析中非常有效,因为在斜坡崩塌分析中观察到剪切强度和其他影响变量存在相当大的不确定性。此外,与确定性反向分析方法相比,概率反向分析提供了大量信息,因此与现实世界中的岩土工程实践更加合理匹配。因此,这种方法对于稳定性分析、斜坡重新设计、相同岩土条件下的新斜坡设计以及促进施工安全都是有益和实用的。概率反演分析法还可用于估算剪切参数和分析斜坡的稳定性,是一种成本效益高、可靠性强的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Back analysis of cohesion and friction angle of failed slopes using probabilistic approach: two case studies

Back analysis of cohesion and friction angle of failed slopes using probabilistic approach: two case studies

In general, geotechnical investigations deal with the back analysis of the geotechnical parameters on the basis of the field observation. According to the back analysis method introduced in the present study, geometry of a number of failed slopes have been carefully mapped and then statistical features of the groundwater level, the bulk unit weight and other measurable parameters have been determined. After that, a series of two-dimensional models for back analysis of the failures have been established. Moreover, statistical analyses based on probabilistic approaches have been utilized to estimate the variation ranges of the shear strength variables. The study provided the probabilistic back analysis of the slope failure with the two case studies in the copper mines of Anjerd and Daraloo. Results indicated that the approach to the probabilistic back analysis has been effective in the analysis of the slope failures wherein considerable uncertainty has been observed in the shear strength and other influential variables. Furthermore, the probabilistic back analysis presented a lot of information in comparison to the approach to the deterministic back analysis and thus had more reasonable matching with the practice of geotechnical engineering in the real world. Therefore, this method would be beneficial and practical for stability analysis, redesigning the slopes, designing the new slopes under the same geotechnical conditions and promote the construction safety. The probabilistic back analysis could be also used to estimate the shear parameters and analyze the stability of slopes as a cost-effective and high reliability method.

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来源期刊
International Journal of Geo-Engineering
International Journal of Geo-Engineering ENGINEERING, GEOLOGICAL-
CiteScore
3.70
自引率
0.00%
发文量
10
审稿时长
13 weeks
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