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Half a Career Trying to Understand Why the Roof Along the Longwall Face Falls in from Time to Time?

机译:半职业试图理解为什么长壁面的屋顶不时掉进去?

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Probably the most expensive but least well understood roof falls in underground coal mining, are those that occur ahead of the powered supports in the centre of longwall face Even small roof cavities result in the dilution of the ROM product and large cavities can stop the face for days if not weeks and the incurred cash flow losses can be catastrophic Expensive and time-consuming remedial measures (e.g PUR, cavity filling, removal of stone from the AFC by hand) are required and equipment wear and damage can be significant when the need to blast and convey stone is also considered.Through four major research projects within the Australian coal industry and numerous consulting assignments, the author has spent the best part of fifteen years attempting to identify and define the various geotechnical and operational factors that determine whether a major roof cavity occurs ahead of the powered supports or a normal goaf fall occurs just behind them, the difference in operational outcome being enormousThe paper presents a condensed summary of the overall technical findings covering such issues as roof fall mechanisms, the measured influence of cover depth, periodic weighting of massive strata units and its quantification, the role of cut-throughs in chain pillars, face width and height, the role of the powered support and the influence (both positive and negative) of mine site operationsThe big picture outcome is the view that high production longwall extraction is well-suited to certain geotechnical environments, is marginal in others and under certain conditions is fatally flawed and beyond the control of mine operators, although fortunately the latter category is a relatively rare situation Various risk-based research findings in this regard will be given as a basis for future discussion.
机译:可能是在地下煤矿开采中最昂贵但了解得最少的屋顶坠落,是在长壁工作面中心的动力支撑之前发生的那些坠落。即使很小的屋顶孔洞也会导致ROM产品被稀释,而大的孔洞会使井壁停止工作。数天(如果不是数周)的损失,并且造成的现金流量损失可能是灾难性的。需要采取昂贵且费时的补救措施(例如,PUR,空腔填充,用手从AFC中清除石头),并且在需要时设备的磨损和损坏可能会很严重。还考虑了爆炸和运送石头。 通过澳大利亚煤炭行业内的四个重大研究项目和众多咨询工作,作者花了十五年的最佳时间来尝试确定和定义各种岩土和运营因素,这些因素决定了主要顶棚是否发生在动力支撑或支撑之前。正常的采空区坠落就在他们身后,操作结果的差异非常大 本文简要总结了总体技术发现,包括屋顶跌落机制,覆盖层深度的测量影响,大质量地层单元的定期加权及其定量,链条中切缝的作用,面宽和高等问题,动力支持的作用以及矿场运营的影响(正面和负面) 总体结果是,认为高产量长壁开采非常适合某些岩土环境,在其他岩土环境中是微不足道的,并且在某些条件下存在致命缺陷,并且不受矿山运营商的控制,尽管幸运的是,后一类开采是相对罕见的情况在这方面,各种基于风险的研究结果将作为未来讨论的基础。

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