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Strata Control Investigations During Fully Mechanized Coal Pillar Extraction in Indian Coalfields

机译:印度煤炭综合机械化煤柱提取过程中的地层控制研究

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Considering the importance of a fully mechanized depillaring operation, the Indian coal mining industry has introduced a number of such depillaring operations at depths of cover ranging from 60 m to 377 m. The overlying strata of these depillaring faces vary widely from highly laminated, weak and easily caveable to massive, strong and difficult to cave. Most of these mechanized depillaring operations were carried out in difficult site conditions, however, performance monitoring in the field has showed good production, productivity and safety results. Field studies have shown that the use of roof bolts as breaker line support for this technology worked well for moderate strength overlying roof strata, but experienced difficulties for both extremely weak and strong/massive overlying roof strata. It is observed that the performance of a breaker line support along the goaf edge deteriorated with an increase in depth of cover of the depillaring face. Practice of a straight line of extraction (single row of pillars) during the mechanized depillaring below competent roof strata experienced a considerably large hanging area inside the goaf, which needs to be managed either by induced caving of the roof strata or through an increase in width of the excavation. Observations of good performance of a fully mechanized depillaring face under highly laminated and weak strata at a shallow cover is mainly due to a faster rate of extraction. However, the mechanized depillaring underneath laminated and weak roof strata for a deep-seated coal seam was forced to go for partial extraction mainly due to strata control problems. Discussing the implications of main technical and operational differences between the conventional (semi-mechanized) and fully mechanized depillaring, this paper presents results of different strata control studies conducted at different mechanized depillaring sites with varying geo-mining conditions.
机译:考虑到综合机械化失调运作的重要性,印度煤矿业在覆盖深度范围内引入了许多此类存放操作,范围为60米至377米。这些废弃面的上覆层面从高度层压,弱且易于观察到巨大,强大,难以洞穴的覆盖层。这些机械化的缺失操作中的大部分是在困难的场地条件下进行的,然而,该领域的性能监测表现出良好的生产,生产力和安全结果。现场研究表明,使用屋顶螺栓作为该技术的断路器线路支持,适用于中等强度覆盖屋顶地层,但对于极其弱和强/巨大的上覆盖屋顶地层而言经历了困难。观察到,沿着GoaF边缘的断路器线支撑的性能随着物质覆盖面的覆盖深度的增加而劣化。在低于主管屋顶地层的机械化拆卸过程中练习直线萃取(单排柱)在GOAF内经历了相当大的悬挂区域,需要通过凸起的屋顶地层或宽度的增加来管理。挖掘。在浅盖下高度层压和弱层下良好地性能良好性能的观察主要是由于萃取率更快。然而,下层煤层的层压和弱屋顶地层下方的机械化缺口被迫用于部分提取,主要是由于地层控制问题。讨论常规(半机械化)和综合置换物之间的主要技术和操作差异的影响,本文介绍了在不同机械化缺陷部位进行的不同地层对照研究的结果,具有不同的地培条件。

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