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首页> 外文期刊>Geotechnical and geological engineering >Evaluating Kinematic Controls on Planar Translational Slope Failure Mechanisms Using Three-Dimensional Distinct Element Modelling
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Evaluating Kinematic Controls on Planar Translational Slope Failure Mechanisms Using Three-Dimensional Distinct Element Modelling

机译:使用三维离散元建模评估平面平移斜坡破坏机制的运动学控制

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摘要

This paper investigates the importance of kinematic release mechanisms on planar translational slope failure using three-dimensional distinct element codes. The importance of the dip and dip direction of the rear, basal and lateral release surfaces and their influence on failure mechanism, dilation, and the development of step-path failures is illustrated. The three-dimensional block shape and volume of the unstable rock masses simulated with the different discontinuity set geometries are characterized. Two assumed three-dimensional slope models are investigated in order to assess the importance of varying kinematic confinement/release mechanisms. These two assumed boundary conditions are shown to be critical in the development of asymmetrical rock mass deformation patterns. Scale effects due to the block size and discontinuity persistence are shown to control the calculated displacement and failure mechanisms. The numerical modelling results are also demonstrated to be sensitive to the assumed normal and shear stiffness of the discontinuities. The influence of the factors investigated on the failure of a single rock block versus a rock mass are compared and discussed.
机译:本文使用三维离散元代码研究了运动释放机制对平面平移坡度破坏的重要性。说明了后释放,基释放和侧释放表面的倾角和倾角方向的重要性及其对故障机理,膨胀和阶跃路径故障发展的影响。表征了具有不同间断集几何形状的不稳定岩体的三维块状形状和体积。为了评估变化的运动限制/释放机制的重要性,研究了两个假定的三维斜率模型。这两个假定的边界条件对非对称岩体变形模式的发展至关重要。显示了由于块大小和不连续性持久性引起的比例效应来控制计算的位移和破坏机制。数值模拟结果也证明对假定的不连续的法向刚度和剪切刚度敏感。比较并讨论了所研究因素对单个岩石块与岩体破坏的影响。

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