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A Novel Longwall Mining Layout Approach for Extraction of Deep Coal Deposits

机译:一种新型的深壁煤层长壁开采布局方法

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As more easily mined deposits are depleted, the reserves are becoming more limited and less favorable. Deposits of coal or trona that are being longwall mined are deep and are getting deeper. Coal bursts and bumps frequently occur within development entries in longwall mining of deep mines due to high stresses. This paper presents a novel patented longwall mining layout ?¢????Longwall Mining with Split-level Gate roads (LMSG)?¢???? that has the potential to mitigate several problems related to deep mining (Patent No. ZL98100544.6). LMSG locates gate roads on either end of a longwall panel at different vertical heights within a coal seam or in a geologically split seam, so that the two adjacent panels can be partially offset horizontally. It is novel in that it incorporates unit operations of different mining methods into the system. By employing multiple slice longwall mining method locally at the face ends, and adjacent panels overlapping end to end, pillar-less longwall mining can be achieved to mine deep deposits. A conventional rectangular gate road pillar is therefore transformed into a small triangular pillar and the gate road of the subsequent panel can be located along or under the gob of the previously mined panel where the stresses are lower. Several mines in China and Russia are currently using the technology with reduced incidence of ground control problems. Through theoretical analysis, and physical and numerical modeling approaches, it is demonstrated that LMSG significantly improves stress environment for development entries, with associated reduction in coal bursts and ground control problems.
机译:随着更容易开采的矿床枯竭,储量变得越来越有限且不利。正在长壁开采的煤炭或天然碱的沉积物越来越深。由于高应力,在深井长壁开采的开发入口中经常发生煤爆和颠簸。本文介绍了一种新颖的专利长壁开采布局-带有分层闸道的长壁开采(LMSG)。具有缓解与深层开采有关的若干问题的潜力(专利号ZL98100544.6)。 LMSG在长壁面板的任一端在煤层内或在地质上分开的煤层中以不同的垂直高度定位门道,以便两个相邻的面板可以部分地水平偏移。它的新颖之处在于它将不同挖掘方法的单元操作合并到系统中。通过在工作面端部局部采用多片长壁开采方法,相邻的板块首尾相接,可以实现无柱长壁开采。因此,将常规的矩形闸道支柱转换为小的三角形支柱,并且后续面板的闸道可以沿着应力较低的先前开采的面板的料滴或沿其下方定位。中国和俄罗斯的几座矿山目前正在使用该技术,减少了地面控制问题的发生。通过理论分析以及物理和数值建模方法,证明了LMSG显着改善了开发项目的应力环境,并伴随着减少了煤爆和地面控制问题。

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