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DEM simulations of simple fragmentation experiments

机译:简单碎片实验的DEM模拟

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Fragmentation can occur in rapid solid mass movements due to different controlling factors. In particular, here we consider the initial state of stress, rapid unloading, shearing of highly stressed grain chains and extremely rapid loadings. The last two cases could also be described as dynamic fragmentation, while the first two are more typical of instability phenomena. In this contribution, we present a series of simulations by Discrete Element Method (DEM) for a simple block and slope geometry, where a particle agglomerate of prismatic shape is released along a sliding plane and subsequently collides onto a flat horizontal plane at a sharp kink point. These conditions have been chosen because two sets of experiments with the same settings (Bowman et al. 2010) are available in the literature and resemble simplified natural geometries. In this study, we analyze how dynamic fragmentation occurs in the numerical model and the modes of failure for different rock blocks. The rock fragmentation occurs mainly in the lower part of the rock block after direct impacts with the ground floor, producing several small fragments. The upper part of rock block suffers little influence from the impacts, creating relatively large fragments. Rock masses with many initial weak zones (e.g. fractured or highly weathered rock) exhibit very poor performance of integrity, as represented by their short final runout distances, large breakage ratios, small fragment mass ratios and low final energy.
机译:由于不同的控制因素,碎片可能会在快速的固体运动中发生。特别是在这里,我们考虑了应力的初始状态,快速卸载,高应力谷物链的剪切以及极快的载荷。后两种情况也可以描述为动态碎片,而前两种情况更不稳定。在此贡献中,我们通过离散元素方法(DEM)对简单的块和坡度几何结构进行了一系列模拟,其中棱柱形状的粒子团块沿滑动平面释放,随后以锐角碰撞到平坦的水平面观点。选择这些条件是因为文献中提供了两组具有相同设置的实验(Bowman等,2010),并且它们类似于简化的自然几何形状。在这项研究中,我们分析了数值模型中动态破碎的发生方式以及不同岩石块的破坏模式。岩石碎裂主要发生在与地面直接碰撞后的岩石块的下部,产生一些小碎片。岩石块的上部受到冲击的影响很小,产生了较大的碎片。具有许多初始薄弱带(例如破裂或高度风化的岩石)的岩体表现出非常差的整体性,表现为它们的最终跳动距离短,破碎比大,碎块质量比小和最终能量低。

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