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Fracture analysis of double-layer hard and thick roof and the controlling effect on strata behavior: A case study

机译:双层硬屋骨折分析及地层行为的控制效果 - 以案例研究

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摘要

AbstractThe movement of double-layer hard and thick main roofs during underground coal extraction via longwall top coal caving (LTCC) differs from that of other types of overlying strata. Therefore, numerous problems such as roadway instability, rockburst, and hydraulic cylinder damage will be encountered as a result of the instantaneous fracture of a double-layer hard and thick main roof. The key to controlling the behavior of strata is to understand the movement and fracture pattern of the double-layer hard and thick roof. The Xinhe mine was chosen for the case study because it is typical of the type of mine in which the LTCC method is adopted, and the minable coal seam usually underlies a double-layer, hard, and thick sandstone. The mining-induced fracturing and movement of the roof were investigated via microseismic (MS) monitoring. The structural characteristics affected by roof fracturing were determined, which helped in explaining the strong strata behavior. In addition, in order to control the local damage caused by the instantaneous fracture of the roof, a suitable long-hole pre-split blasting technique was adopted to weaken the strength and massiveness of the double-layer hard and thick roof. The total length of the longwall panel could be smoothly extracted without any further roadway instability after the systematic adoption of the proposed long-hole pre-split blasting technique.Highlights?In situ investigations were performed into the progressive fracture failure procedure of double-layer hard and thick roof in mining deep coal seam in the LTCC operation.?The clear structures of fracturing and caving of double-layer hard and thick roof in the LTCC operation are obtained.?A long-hole pre-split blasting technique is presented to weaken the strata behaviors for the movement of double-layer hard and thick roofs.]]>
机译:<![cdata [ 抽象 通过Longwall顶部煤崩(LTCC)在地下煤提取过程中双层硬和厚主屋顶的移动与其他类型的覆盖层的不同之处不同。因此,由于双层硬和厚主屋顶的瞬时断裂,将遇到诸如道路不稳定性,摇滚乐和液压缸损坏的许多问题。控制地层行为的关键是理解双层硬屋顶的运动和断裂图案。选择Xinhe Mine为案例研究选择,因为它是采用LTCC方法的矿井类型的典型,并且可拆除煤层通常是双层,硬和厚砂岩。通过微动脉(MS)监测研究了屋顶的采矿诱导的压裂和运动。确定受屋顶压裂影响的结构特征,这有助于解释强烈的地层行为。此外,为了控制由屋顶的瞬时断裂引起的局部损伤,采用合适的长孔预分裂爆破技术来削弱双层硬屋顶的强度和质量。可以在系统采用所提出的长孔预分裂爆破技术的系统采用后平滑地提取长墙板的总长度而没有任何进一步的道路不稳定性。 亮点 在采矿深煤中的双层硬屋顶的渐进式断裂术后,进行了原位调查LTCC操作中的接缝。 透明结构的分压和浓稠的双层压裂和塌陷在LTCC操作中获得。 提出了长孔预分裂爆破技术,以削弱双层硬屋顶运动的地层行为。 ]]>

著录项

  • 来源
    《Engineering failure analysis》 |2017年第2017期|共18页
  • 作者单位

    State Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandon Province and the Ministry of Science and Technology Shandong University of Science and Technology;

    State Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandon Province and the Ministry of Science and Technology Shandong University of Science and Technology;

    State Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandon Province and the Ministry of Science and Technology Shandong University of Science and Technology;

    State Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandon Province and the Ministry of Science and Technology Shandong University of Science and Technology;

    State Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandon Province and the Ministry of Science and Technology Shandong University of Science and Technology;

    State Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandon Province and the Ministry of Science and Technology Shandong University of Science and Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程力学;
  • 关键词

    Hard and thick roof; Fracturing; Microseismic monitoring; Ground control;

    机译:坚硬而厚的屋顶;压裂;微震监测;地面控制;

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