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A New Assessment Method for Structural-Control Failure Mechanisms in Rock Slopes — Case Examples

机译:岩质边坡结构控制破坏机理的一种新评估方法—实例

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Mass movement processes of bedrock slopes are highly dependent on the orientations of structural discontinuities within the rock mass. The associated hazards are typically defined by the orientation of structures and associated mechanisms of slope failure such as planar sliding, wedge sliding and toppling. A typical rock mass with multiple weak surfaces, or discontinuities, may form a consistent pattern over a range of spatial scale. The type of hazard resulting from the pattern of discontinuities will vary according to the angle and direction of the slope face. Assessing the risk of rock slope instability involves understanding of the complex three-dimensional structural features of the rock mass. Recent developments in stereographic methods show advantages are gained by representing wedges by linking great circles rather than showing the intersection line on the stereograph. We applied these methods to three rock slopes where active mass movement has occurred. The case studies include a large rock slide-debris avalanche in the Philippines, coastal cliffs in Australia and mining excavation slopes in Ghana, West Africa.
机译:基岩斜坡的质量运动过程高度依赖于岩体内部结构不连续性的方向。相关的危险通常由结构的方向和相关的边坡破坏机制(如平面滑动,楔形滑动和倾覆)定义。具有多个弱表面或不连续性的典型岩体可能会在一定范围的空间尺度上形成一致的模式。由不连续模式引起的危险类型将根据倾斜面的角度和方向而变化。评估岩质边坡失稳的风险包括了解岩体的复杂三维结构特征。立体学方法的最新发展表明,通过链接大圆来表示楔形而不是在立体图上显示相交线,可以获得优势。我们将这些方法应用于发生了质量运动的三个岩石边坡。案例研究包括菲律宾的一块大型岩石滑坡雪崩,澳大利亚的沿海悬崖以及西非加纳的采矿开挖斜坡。

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