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Strata Management with Ground Behavior Assessment for Mass Exploitation of Coal Deposits: A Case Study of Continuous Miner

机译:煤层气大规模开采地层管理与地面行为评估:以连续采矿机为例

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The mechanics of load transfer in bord-and-pillar mining is not well understood despite the evolution of the art of pillar extraction over the last 20 years via trial and error (empirical) or Rock Mass Rating (RMR), simple monitoring and pillar extraction experiences at neighboring mines. Variations in geologic conditions and pillar extraction methods, along with a lack of comprehensive instrumentation programs for monitoring ground behavior during pillar recovery, are among the factors that make it difficult to predict how strata will respond to pillar extraction. Efficient and safe use of roof supports depends on the interaction between the designed support and coal strata. Of particular interest in this study is the mechanics of strata deformation as influenced by geologic conditions, pillar extraction methods and optimum support with load-bearing capabilities in strata control during mass exploitation of underground coal deposits required detailed investigation,". To provide a better understanding of the mechanics of strata deformation, as researchers, we have collected data and reviewed measurements of convergence and stress in one mine of South Eastern Coalfields Limited (S.E.C.L.), i. e., in North Chirimiri Pondary Hills (NCPH) and have completed numerical modeling with FLAC software for (Fast Lagrangian Analysis of Continua modeling, Itasca India Consulting Pvt. Ltd.) for two typical pillar extraction plans. Stress distribution in the mine roof above pairs of roof supports was calculated to demonstrate how Resin roof bolt support installed support contributed to roof block movement control. It was shown that overall stress and roof-floor convergence patterns were most influenced by the stiffness of coal measure rocks and by pillar extraction sequences and layouts. Also, resin roof bolts and other support systems play a critical role in controlling stability of both the immediate roof and the main roof for a distance of up to 18 meters (i.e., working coal seam height X three times) above the seam. Installed supports provide unique strata control advantages over other types of secondary support by significantly reducing the time between mining and installation of the secondary support. Although resin roof bolts are similar to posts in stiffness and capacity, they are more effective than posts under static loads because they can yield and still maintain loads at near-peak capacity(Singh, et al., 2006), whereas posts fail and lose their ability to limit mine roof deformation.
机译:尽管过去20年来,通过反复试验(经验)或岩体额定值(RMR),简单的监测和立柱开采技术使立柱开采技术得到了发展,但对沿线开采和立柱开采中的载荷传递机理仍知之甚少。在邻近矿山的经验。地质条件和柱子开采方法的变化,以及缺乏用于监测柱子开采过程中地面行为的综合仪器程序,都是导致难以预测地层对柱子开采反应的因素。屋顶支架的有效和安全使用取决于设计支架与煤层之间的相互作用。这项研究特别令人感兴趣的是受地质条件,地层开采方法和在地下煤层的大规模开采过程中地层控制中具有承重能力的最佳支撑的影响而引起的地层变形的力学,需要进行详细研究。”作为研究者,我们收集了数据并审查了东南煤田有限公司(SECL)的一个矿山,即北奇里米里庞达里山(NCPH)的收敛和应力测量,并完成了用FLAC进行的数值建模软件(用于Itasca India Consulting Pvt。Ltd.的快速Contina建模的快速拉格朗日分析),用于两个典型的立柱抽取计划,计算了在一对顶板支架上方的矿顶中的应力分布,以演示树脂顶板螺栓支架安装的支架如何对顶板做出了贡献块移动控制,结果表明整体应力和楼板收敛煤样岩石的刚度以及煤柱开采顺序和布局对模式的影响最大。而且,树脂顶板螺栓和其他支撑系统在控制直立顶板和主顶板在距离煤层最多18米(即工作煤层高度X的三倍)的距离中的稳定性方面也起着至关重要的作用。与其他类型的辅助支架相比,已安装的支架通过显着减少挖掘和安装辅助支架之间的时间提供了独特的地层控制优势。尽管树脂屋面螺栓的刚度和承载能力类似于立柱,但它们在静载荷下比立柱更有效,因为它们可以屈服并仍保持峰值载荷下的载荷(Singh等人,2006),而立柱会失败或丢失他们限制矿井顶板变形的能力。

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