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Evaluation of Pillar Recovery in Southern West Virginia

机译:西维吉尼亚州南部支柱恢复的评估

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Pillar recovery continues to be a significant ground control hazard. During the past decade, 10 miners were killed during pillar extraction operations in southern West Virginia. Studies conducted during the past decade have identified a number of "risk factors" that can be used to evaluate pillar extraction plans: 1. Cut sequence 2. Final'stump 3. Timber or Mobile Roof Supports 4. Roof bolting 5. Intersection span 6. Depth of cover 7. Roof quality 8. Age of workings For each of these factors, rock mechanics science suggests which alternative would be expected to be more risky. For example, numerical models were used to evaluate different cut sequences, and indicated that less roof convergence occurred with the outside lift method than with the Christmas tree in the particular environment simulated. For many of the risk factors, accident statistics confirm the science. One finding was that currently almost 70% of the retreat coal in southern WV is being mined with MRS. In contrast, timber supports were used in 70% of the past decade's pillaring fatalities. This paper discusses each of the risk factors in turn, presents the relevant accident statistics, and shows how the risk factors can be combined to estimate the overall hazard. It also addresses the use of pillar design to minimize the risk of global stability hazards including squeezes, massive collapses, and bumps.
机译:支柱恢复仍然是地面控制的重大隐患。在过去十年中,西维吉尼亚州南部的支柱开采作业中有10名矿工丧生。在过去十年中进行的研究已经确定了许多可用于评估支柱提取计划的“风险因素”:1.切割顺序2.最终的树桩3.木材或活动屋顶支架4.屋顶螺栓5.交叉点跨度6 。覆盖层深度7.屋顶质量8.作业年龄对于这些因素中的每一个,岩石力学科学都建议采用哪种方法更具风险。例如,使用数值模型来评估不同的切割顺序,并且表明在模拟的特定环境中,外部举升方法所发生的屋顶收敛少于圣诞树。对于许多风险因素,事故统计数据证实了这一科学。一个发现是,目前在西WV南部,近70%的撤退煤是通过MRS开采的。相比之下,过去十年的主要死亡人数中有70%使用了木材支撑。本文依次讨论了每种风险因素,提供了相关的事故统计数据,并展示了如何将这些风险因素组合在一起以估计总体危害。它还解决了使用立柱设计的问题,以最大程度地降低全局稳定性风险,包括挤压,严重倒塌和颠簸。

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