Physical and theoretical modeling of rock slopes against block-flexure toppling failure

Q4 Earth and Planetary Sciences
M. Amini, Mohammad Golamzadeh, M. Khosravi
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引用次数: 20

Abstract

Block-flexure is the most common mode of toppling failure in natural and excavated rock slopes. In such failure, some rock blocks break due to tensile stresses and some overturn under their own weights and then all of them topple together. In this paper, first, a brief review of previous studies on toppling failures is presented. Then, the physical and mechanical properties of experimental modeling materials are summarized. Next, the physical modeling results of rock slopes with the potential of block-flexural toppling failures are explained and a new analytical solution is proposed for the stability analysis of such slopes. The results of this method are compared with the outcomes of the experiments. The comparative studies show that the proposed analytical approach is appropriate for the stability analysis of rock slopes against block-flexure toppling failure. Finally, a real case study is used for the practical verification of the suggested method.
岩石边坡抗块曲倾倒破坏的物理和理论模拟
块体弯曲是天然和开挖岩质边坡最常见的倾倒破坏形式。在这种破坏中,一些岩块由于拉应力而破裂,一些在自身重量的作用下倾覆,然后全部倒塌。本文首先对以往关于倾倒破坏的研究进行了简要回顾。然后,总结了实验模拟材料的物理力学性能。其次,对具有块体弯曲倾倒破坏可能性的岩质边坡的物理模拟结果进行了解释,并提出了一种新的岩质边坡稳定性分析解析解。将该方法的计算结果与实验结果进行了比较。对比研究表明,本文提出的分析方法适用于岩质边坡抗块曲倾倒破坏的稳定性分析。最后,通过一个实际案例对所提出的方法进行了验证。
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来源期刊
International Journal of Mining and Geo-Engineering
International Journal of Mining and Geo-Engineering Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
0.80
自引率
0.00%
发文量
0
审稿时长
12 weeks
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