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Failure mechanism and safety control strategy for laminated roof of wide-span roadway

机译:宽跨路巷道层压机构的故障机理与安全控制策略

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摘要

The laminated roof of wide-span roadway is characterized by large subsidence, easy instability and difficult support. The open-off cut of #30102 working face in Nanliang coal mine is taken as an example to expound the roof failure mechanism. The roof exploration test are carried out to reveal geologic characteristics. The parametric asymmetric Voronoi block generation program is developed by Python, and the parametric modeling of laminated strata is first implemented in UDEC, then, the numerical model of roadway is established by combining the results of exploration test, microproperties calibration, tension and shear test of rockbolt, and bearing characteristics of timber. It can be concluded that the main types of joint failure are dominated by tensile through numerical calculation. The joint failure height is independent of the roadway width, and when the roadway width is greater than the limit span of the combination beam, there will be roof caving. Based on above analysis, the "rockbolt + timber" combined support technology is proposed, which can combine the roof strata and further reduce the roof span. Numerical simulation results and field application results show that this support scheme can effectively realize the safety control of the laminated roof of the wide-span roadway.
机译:宽跨道路的层压屋顶的特点是沉降,方便不稳定和困难的支持。南梁煤矿的开关削减南江矿矿的剪切削减为例,以阐述屋顶故障机制。屋顶勘探测试进行了揭示地质特征。由Python开发的参数非对称Voronoi块生成程序,并且层压地层的参数建模首先在UDEC中实现,然后,通过组合勘探测试的结果,微振动校准,张力和剪切试验来建立道路数值模型岩波,木材轴承特性。可以得出结论,主要类型的关节故障通过数值计算来抗拉伸。关节故障高度与道路宽度无关,当道路宽度大于组合梁的极限跨度时,会有屋顶塌陷。基于上述分析,提出了“摇滚栓+木材”组合支持技术,可以将屋顶地层结合,进一步减少屋顶跨度。数值模拟结果和现场应用结果表明,该支撑方案可以有效地实现宽跨道路的层压屋顶的安全控制。

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