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Strata control technology for mass exploitation of underground coal deposits: a case study of continuous miner

机译:大规模开采地下煤层的地层控制技术:以连续采矿机为例

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摘要

Field investigations were carried out over a two-year period at NCPH Colliery of S.E.C.L; R-6 Mine site for evaluation of strata behavior during extraction of coal in a 6.5 m thick seam by continuous miner at a depth of 106 m. Numerical and empirical models were also used for modification of existing support system leading to formulation of guidelines for the Strata Management.For the geomining conditions of R-6 mine, maximum of 16 mm roof convergence was observed during widening of galleries. Conventional support system of cement grouted roof bolts of 1.5 m length, 22 mm diameter at a spacing of 1.5 m between rows and 4 bolts in a row. With this conventional support system, widening of galleries up to 6 m has shown no considerable convergence but greater than 6 m wide galleries has resulted in the formation of undulated roof and floor conditions.Based on field observations including convergence of development and depillaring galleries and numerical modeling studies, the support system was modified with resin bolting so as to provide safer working conditions. The modified support system has 1.8 m long resin bolt for split galleries, 2.4 m long resin bolts for original gallery and point-anchored rebar at 1.5 m center-to-center spacing for the roof conditions of NCPH mine. Based on Numerical modeling results, the bolting was found efficient at a distance of 0.6 m from the side of the pillar and 1.5 m distance from the adjacent bolt.Although this work is based on studies carried out for the geomining conditions of the NCPH Colliery; R-6 Mine, it is believed that the findings can be applied to other shallow depth coal mines in similar geological conditions. A significant improvement in safety, productivity, and economy was observed at the NCPH Colliery R-6 Mine by adopting many of the recommendations, and strata management guidelines developed through this work.
机译:在S.E.C.L的NCPH煤矿进行了为期两年的现场调查; R-6矿井,用于评估在106 m深度由连续采矿机在6.5 m厚的煤层中开采煤炭时的地层行为。数值和经验模型也被用于修改现有的支撑系统,从而制定了地层管理指南。对于R-6矿山的矿山条件,在展厅扩建过程中观察到最大16毫米的屋顶收敛。传统的水泥注浆屋顶螺栓支撑系统,其长度为1.5 m,直径为22 mm,两排之间的间距为1.5 m,每排4个螺栓。借助这种传统的支撑系统,画廊的扩展至6 m并没有显示出明显的收敛性,但宽度超过6 m的画廊导致形成了起伏的屋顶和地面状况。基于实地观察,包括开发和脱毛画廊的收敛性以及数值建模研究中,对支撑系统进行了树脂螺栓固定,以提供更安全的工作条件。改进后的支撑系统具有用于分隔式画廊的1.8 m长的树脂螺栓,用于原始画廊的2.4 m长的树脂螺栓以及在NCPH矿顶条件下中心距中心为1.5 m的点锚钢筋。根据数值模拟结果,在距柱子侧面0.6 m的距离和与相邻螺栓的距离1.5 m的距离处发现了锚固有效。尽管这项工作是基于对NCPH煤矿的采矿条件进行的研究。 R-6矿井,据信该发现可应用于其他地质条件相似的浅层煤矿。通过采用许多建议,NCPH煤矿R-6矿在安全性,生产率和经济性方面均取得了显着改善,并通过这项工作制定了地层管理指南。

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    Singh S K;

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