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A DEM analysis of step-path failure in jointed rock slopes

机译:节理岩体边坡失步的DEM分析

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A numerical analysis of step-path failure mechanisms in rock slopes is Provided based upon simulations performed using a discrete element method specifically enhanced for the modeling of jointed rock masses. Fracturing of the intact rock as well as yielding within discontinuities can be simulated to determine the failure surface without any a priori assumption on its location. For both coplanar and non-coplanar sets of discontinuities, failure is the result of the propagation of tensile microcracks that develop in the rock bridges from the tips of pre-existing discontinuity planes in a way similar to wing cracks extensions that can eventually coalesce to form extended step-path failure surfaces. Sensitivity analyses are performed to better understand the critical mechanisms that lead to slope failure and to discriminate between the respective roles played by intact rock and planes of weakness at the onset of failure. For a randomly distributed set of joints that share the same preferential orientation, failure is shown to be dependent on the frictional strength mobilized on the joint surfaces. The results confirm the critical need for a comprehensive and extensive characterization of both mechanical and geometrical properties of discontinuities when assessing the stability of a rock mass. (C) 2014 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:基于使用离散元方法进行的模拟,对岩石边坡的阶梯路径破坏机理进行了数值分析,该方法专门为节理岩体的建模而增强。可以模拟完整岩石的压裂以及不连续内的屈服来确定破坏面,而无需事先假设其位置。对于共面和非共面的不连续集合,破坏都是由于岩石微桥中的拉伸微裂纹从先前存在的不连续平面的尖端扩散而导致的,其结果类似于机翼裂纹扩展,最终可以合并形成扩展的阶跃路径失效面。进行敏感性分析可以更好地理解导致边坡破坏的关键机制,并在破坏发生时区分完整岩石和软弱平面所起的作用。对于共享相同优先方向的一组随机分布的接头,失效显示取决于在接头表面上动员的摩擦强度。这些结果证实了在评估岩体稳定性时,需要全面,广泛地表征不连续性的力学和几何特性。 (C)2014年科学研究院。由Elsevier Masson SAS发布。版权所有。

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