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A BEM formulation of free hexagons based on dynamic equilibrium

机译:基于动态均衡的自由六边形的BEM制定

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In this paper, a time dependent (dynamical equilibrium) free hexagon DEM is formulated and solved. The main application is found in geomechanics, namely in bumps occurrence in deep mines. The time factor is included in a natural way in the model of discrete elements created by the boundary element method. One of the most important phenomena is the velocity of excavation. In the deep mines the method of depositing packs and its mechanical properties are also decisive. Their mutual coupling can principally influence the safety against bumps. For a correct understanding of the behavior of the rock aggregate (coal seam vs. overburden), the nucleation of cracks finally leading to bumps has to be treated as time dependent, while so far it was observed only from statical equilibrium. According to new experiments and results from accessible literature, a dynamical effect has to be included in thr formulation. Contact problems leading to bumps occurrence in deep mines have been solved in many of the papers of the present author for the static case. Either Lagrangian multipliers or penalty formulation were used. The new formulation has to be submitted in terms of a penalty, which if high enough (bond effect of adjacent elements) suppresses the influence of time. By including the interface properties with the lumped inertia mass of the elements, complex nucleation can be studied and the information on possible rock bursts is improved. From some examples it was shown in the static case that the behavior at the face of longwall mining is close to that near the crack tip, and the differences in material properties of coal and overburden are also not negligible. These factors are also expected to be important in the case of dynamic problems. Some examples show the application of the procedure proposed.
机译:在本文中,依赖于时间的(动态平衡)自由六边形DEM被配制和解决。主要应用在地质力学发现,即在深矿井中颠簸发生。时间因素包含在由边界元法制作离散元件的模型的自然方式。其中一个最重要的现象是挖掘速度。在深矿井沉积包和它的机械性能的方法也是决定性的。它们之间的相互耦合可以主要针对影响颠簸的安全性。对于土石的行为(煤层上覆岩层对比)有正确的认识,裂缝的核最终导致颠簸必须被视为随时间变化的,而到目前为止,它是从静平衡才能观察到。根据新的实验,并从访问的文献的结果,一个动态效果要被包括在THR制剂。导致矿山深部颠簸发生联系的问题已经解决了许多用于静态情况下,本作者的论文。要么使用拉格朗日乘数或罚款的制剂。新的制剂具有在点球,其中,如果足够高的(相邻的元件的键效果)抑制的时间的影响方面提交。通过包括与所述元件的集总惯性质量的界面特性,复杂的成核可以研究和可能的岩石突发的信息得到改善。从一些实施例中它被示出在静态情况下,在长壁开采的面的行为接近于裂纹尖端附近,而在煤的材料特性的差异和覆盖层也是不可忽略的。这些因素也有望在动力学问题的情况下非常重要。一些例子显示程序的申请中提出。

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