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Study on the movement characteristics of the overlying stratum and surrounding rock control in ultraclose coal seams: A case study

机译:超薄煤层覆盖层和周围岩体运动特性研究 - 以案例研究

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In Fucun Coal Mine, the average spacing between the 3upper coal seam (UCS) and 3lower coal seam (LCS) is only 6?m. In the process of mining upper coal, the lower roadway (LR), which is 60?m away from upper pillar, becomes unstable. In order to control the surrounding rock of lower roadway, a physical model experiment and a 3D numerical calculation were performed in this study. The results of physical similarity simulation experiment show that mining of longwall face in UCS will lead to fracturing of key layers at a high elevation (KLHE) far away from the coal seam. The expanded goaf area caused large‐scale fracturing and rotation of the KLHE, which resulted in significant strata pressure behavior in LR. The numerical calculation results show that the LR should be within 19?m of the coal pillar. Finally, a plan which includes a proper location and a supporting system was proposed. The feasibility of the proposed plan is verified by an industrial application.
机译:在FUCUN煤矿中,3UPPER煤层(UCS)和3Lower煤层(LCS)之间的平均间距仅为6?M。在采矿地煤的过程中,较低的巷道(LR)远离上柱的60°,变得不稳定。为了控制下行道的周围岩石,在本研究中进行了物理模型实验和3D数值计算。物理相似性仿真实验结果表明,UCS中的长壁面的开采将导致远离煤层远离煤层的高仰角(KLHE)的关键层的压裂。膨胀的GoaF区域导致KLHE的大规模压裂和旋转,从而导致LR中的显着层压行为。数值计算结果表明,LR应在煤柱的19℃范围内。最后,提出了包括适当位置和支持系统的计划。拟议计划的可行性由工业应用核实。

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