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Numerical study on movement of dynamic strata in combined open-pit and underground mining based on similar material simulation experiment

机译:基于类似材料仿真实验的动态层动态地层运动的数值研究

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The characteristics of the movement of dynamic strata in combined open-pit and underground mining based on similar material simulation experiments were studied in this study. To get more accurate test parameters, a similar material, based on a sheet of brittle material, was developed. We then used the Anjialing coal mine as our case study sample. The characteristics for movement of dynamic strata and development of bed-separated fissure in working faces including 24,207, 24,208, and 29,210 were investigated by experimental simulation and numerical simulation, which was based on a similar simulation test system and Fast Lagrangian Analysis of Continua 3D (FLAC(3D)) statistical analysis software. Results from the experimental simulation demonstrated that the movement of dynamic strata during the mining process could be expressed as follows: underground mining -> submerged rock -> "arch-shaped" rock -> "pit-type" subsidence region -> perforation of slope fractures. When the working face 29,210 was advanced to the mining stop line, the overlying rock strata generally slid towards the slope with less separation cracking in the vertical direction. With the continuous advancement of working face 29,210 , the slope stress increased significantly and formed a slip surface or potential slip surface in the sloping rock. Moreover, the numerical analysis, similar material simulation experiment, and actual mining results were all similar, indicating that a similar material simulation experiment based on a sheet of brittle material well reflected the characteristics for the movement of dynamic strata in combined open-pit and underground mining.
机译:本研究研究了基于类似材料仿真实验的组合露天坑和地下采矿中动态地层运动的特点。为了获得更准确的测试参数,开发了一种基于一片脆性材料的类似材料。然后我们将Anjialing Coamine用作案例研究样本。通过实验模拟和数值模拟研究了包括24,207,208,208和29,210的工作面在包括24,207,208,208和29,210中的床分离裂缝的动态地层和床分离裂缝的发展的特性,这是基于类似仿真测试系统和Continua 3D的快速拉格朗日分析( FLAC(3D))统计分析软件。实验模拟的结果证明了采矿过程中动态地层的运动可以表示如下:地下采矿 - >淹没岩石 - >“拱形”岩石 - >“坑式”沉降区 - >坡度穿孔骨折。当工作面29,210向采矿停止线前进时,覆盖岩石层通常滑动朝向斜面滑动,垂直方向较少的分离裂缝。随着工作面29,210的不断推进,倾斜应力显着增加,并在倾斜岩石中形成了滑动表面或潜在的滑动表面。此外,数值分析,类似的材料仿真实验和实际采矿结果都是相似的,表明基于一片脆性材料的类似材料仿真实验,其良好地反映了动态地层运动中的特点,包括组合露天坑和地下矿业。

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