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Theoretical and numerical study on the block-flexure toppling failure of rock slopes

机译:岩石斜坡块弯曲膨胀失效的理论与数值研究

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摘要

Block-flexure toppling failure is frequently encountered in rock slopes. In this paper, we first proposed two theoretical models to calculate the factor of safety against block-flexure toppling, namely, step by step analysis model (LEM-SSAM) and overall analysis model (LEM-OAM). Then, we developed two special MATLAB codes for a quick stability estimation based on the proposed methods, respectively. Next, the universal distinct element code (UDEC) was used to study the failure mechanisms of block-flexure toppling. In order to realistically simulate the excavation of slope and obtain the detailed damage information of joints, we developed two FISH functions in UDEC. Finally, we conducted a comparative analysis of the limit equilibrium method and the numerical simulations through twelve theoretical models. The results show that many aspects of block-flexure toppling failure have been captured using UDEC combined with the developed FISH functions. The LEM-OAM and UDEC agree well while a larger factor of safety is obtained using the LEM-SSAM. It is found that the dip angles and friction angles of the joints dipping steeply into face have a great influence on block-flexure toppling failure while the influence of the cross joint spacing is less significant.
机译:岩石斜坡经常遇到块弯曲倒塌失败。在本文中,我们首先提出了两种理论模型来计算对块弯曲倒装的安全因子,即逐步分析模型(LEM-SSAM)和整体分析模型(LEM-OAM)。然后,我们开发了两个特殊的MATLAB代码,分别基于所提出的方法进行快速稳定性估计。接下来,使用通用的不同元素代码(UDEC)来研究块弯曲倒装的故障机制。为了实际模拟坡度的挖掘并获得关节的详细损坏信息,我们在UDEC开发了两种鱼类功能。最后,我们通过十二个理论模型进行了对极限均衡方法和数值模拟的比较分析。结果表明,使用UDEC与发育的鱼函数结合捕获了块弯曲膨胀失败的许多方面。 LEM-OAM和UDEC同意,同时使用LEM-SSAM获得更大的安全系数。结果发现,接头的浸渍角和摩擦角浸入面部倾斜的块弯曲膨胀失败有很大的影响,而交叉关节间距的影响较小。

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