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Deformation characteristics of anti-dip rock slope controlled by discontinuities: a case study

机译:不连续控制防倾岩边坡的变形特征 - 以案例研究

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The stability analysis of a rock slope is one of the most important problems in geotechnical engineering. The stability and failure mode are directly affected by the discontinuities in rock mass. Based on the case of an anti-dip slope with multi-group discontinuities at the Diaokanlong Tunnel of Rucheng-Chenzhou Expressway in central China, the deformation characteristics and evolution process of slope failure were analyzed by means of field investigation, deformation monitoring, and numerical simulation. Meanwhile, the failure mechanism was discussed, and suggestions for slope reinforcement were proposed. The results revealed that the failure of a rock slope is mainly controlled by its discontinuities, and the deformation at different scales is determined by different levels of discontinuities. The failure mode of a slope is a combination of sliding and toppling. These results would provide reference resources for the reinforcement design for such anti-dip slopes.
机译:岩石坡的稳定性分析是岩土工程中最重要的问题之一。稳定性和故障模式直接受到岩石中的不连续性的影响。基于在中国中部汝城 - 郴州高速公路的异通道隧道的多组不连续的情况下,通过现场调查,变形监测和数值分析了斜坡衰竭的变形特性和演化过程模拟。同时,讨论了故障机制,提出了对坡度增强的建议。结果表明,岩石坡的故障主要由其不连续控制,不同尺度的变形由不同水平的不连续性确定。斜率的故障模式是滑动和浇注的组合。这些结果将为这种防倾斜斜坡的加固设计提供参考资源。

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