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Highwall Stability Implications from Longwall Mining at Broadmeadow Mine

机译:宽阔的矿井矿井在广泛的矿井矿井矿井稳定性影响

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The Broadmeadow punch longwall coal mine in Central Queensland Australia has experienced significant highwall movement associated with the effect of longwall subsidence when the longwalls approach their final position close to the open-cut highwall. In response to this movement, Broadmeadow employed two types of broadscale highwall monitoring (radar and laser scanners) to provide full coverage measurement throughout three consecutive longwalls approaching the highwall. This was to attain a better understanding of the mechanism causing the movement and potentially enable prediction of instability. Results from the monitoring found the highwall is displaced to magnitudes unlike those typically measured in open-cut mining and in direct contrast with typical longwall subsidence behaviour. This paper discusses the ground movements measured, monitoring methods used, safety measures established, as well as theorising the failure mechanism. Recommendations are made for mine and pit designs for future punch longwall layouts. The paper shows how the movements measured are more aligned to some measurements made during stream valley closure studies previously presented at the ICGCM and challenge the mechanisms suggested by previous literature.
机译:澳大利亚中部澳大利亚广域服的冲床长壁煤矿经历了显着的高墙球运动,当长墙接近靠近开口高墙的最终位置时,与长墙沉降的影响有关。为了响应这种运动,BroadMeadow采用两种类型的广播高墙监测(雷达和激光扫描仪),在整个三个连续的长壁上提供完全覆盖测量,该长壁接近高墙。这是为了更好地理解导致运动的机制,并且可能能够预测不稳定。来自监测的结果发现,与通常在开口挖掘中测量的那些,与典型的LongWALL沉降行为相比,该高壁的偏置幅度偏移。本文讨论了测量的地面运动,使用监测方法,建立的安全措施,以及理论故障机制。建议是为未来打孔长墙布局的矿山和坑设计制作的建议。本文展示了测量的运动如何更加对准,以在ICGCM之前呈现的流域闭合研究期间进行的一些测量值,并挑战以前文献所提出的机制。

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