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Triggering effect of mining at different horizons in the rock mass with excavations. Mathematical modeling

机译:采矿在岩体挖掘中不同视野的触发效果。数学建模

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On the basis of a quite simple structural model of rock mass, containing coal seams on two horizons, coal mining is numerically modeled. A finite difference numerical technique is applied. At first, mining starts at the upper horizon and then moves to the lower horizon. It is shown that a mining process at the lower horizon has a significant triggering influence on the growth of damage zones in the roof and floor at the upper horizon. The features of spatiotemporal migration of deformation activity are studied numerically. Foci of large-scale fracture are located at the boundary of the seismic silence zone and the zone where the deformation activity migrates. This boundary has an additional characteristic: the maximum gradient of rock pressure is observed in this zone.
机译:在岩体结构模型的基础上,含有两种视野上的煤层,煤矿在数值上进行了模拟。应用有限差分数值技术。起初,采矿在上地平线上开始,然后移动到下地平线。结果表明,下地平线的采矿过程对屋顶和地板上的损伤区的生长产生了显着的触发影响。在数值上研究了变形活性的时空迁移的特征。大规模骨折的焦点位于地震沉默区的边界和变形活性迁移的区域。该边界具有额外的特性:在该区域中观察到岩石压力的最大梯度。

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