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Three-dimensional slope stability analysis of South Peak, Crowsnest Pass, Alberta, Canada

机译:加拿大艾伯塔省克罗斯内斯特山口南峰的三维边坡稳定性分析

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摘要

South Peak is a 7-Mm~3 potentially unstable rock mass located adjacent to the 1903 Frank Slide on Turtle Mountain, Alberta. This paper presents three-dimensional numerical rock slope stability models and compares them with a previous conceptual slope instability model based on discontinuity surfaces identified using an airborne LiDAR digital elevation model (DEM). Rock mass conditions at South Peak are described using the Geological Strength Index and point load tests, whilst the mean discontinuity set orientations and characteristics are based on approximately 500 field measurements. A kinematic analysis was first conducted to evaluate probable simple discontinuity-controlled failure modes. The potential for wedge failure was further assessed by considering the orientation of wedge intersections over the airborne LiDAR DEM and through a limit equilibrium combination analysis. Block theory was used to evaluate the finiteness and removability of blocks in the rock mass. Finally, the complex interaction between discontinuity sets and the topography within South Peak was investigated through three-dimensional distinct element models using the code 3DEC. The influence of individual discontinuity sets, scale effects, friction angle and the persistence along the discontinuity surfaces on the slope stability conditions were all investigated using this code.
机译:南峰(South Peak)是一块7-Mm〜3的潜在不稳定岩体,位于艾伯塔省龟山上的1903年弗兰克滑坡附近。本文介绍了三维数值岩石边坡稳定性模型,并将其与以前的概念性边坡不稳定性模型进行了比较,后者基于使用机载LiDAR数字高程模型(DEM)识别的不连续面。使用地质强度指数和点载荷测试描述了南峰的岩体条件,而平均间断集的方向和特征是基于大约500次现场测量得出的。首先进行了运动学分析,以评估可能的简单间断控制的失效模式。通过考虑机载LiDAR DEM上的楔形交叉点的方向并通过极限平衡组合分析,进一步评估了楔形故障的可能性。块理论用于评估岩体中块的有限性和可移动性。最后,使用代码3DEC通过三维不同元素模型研究了不连续集与南峰内部地形之间的复杂相互作用。使用该规范研究了各个不连续集,尺度效应,摩擦角和沿不连续面的持久性对边坡稳定性条件的影响。

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