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Longwall mining under gateroads and gobs of abandoned small mine

机译:废弃小矿山的闸门和采空区下的长壁开采

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Due to the use of outdated mining technology or room and pillar mining process in small coal mines, the coal recovery ratio is only 10–25%. In many regions of China, the damage area caused by the small coal mines amounted to nearly one hundred square kilometers. Therefore, special mining techniques must be taken to reclaim the wasted resource in disturbed coal areas. This paper focuses on the different mining methods by analyzing the longwall panel layout and abandoned gateroad(AG) distribution in the abandoned area of Cuijiazhai coal mine in northwestern China. On the basis of three-dimensional geological model, FLAC3 D numerical simulation was employed. The abutment pressure distribution was simulated when the panel face passed through the disturbed areas. The proper angle of the inclined face was analyzed when the panel face passed through the abandoned gateroads. The results show that the head end of the face should be 13–20 m ahead of the tail end. The pillars on both sides of abandoned gateroads had not been damaged at the same time, and no large-area stress concentration occured above the main roof.Therefore, the coal reserves of disturbed areas can be successfully recovered by using underground longwall mining.
机译:由于在小型煤矿中使用了过时的开采技术或房间和支柱开采工艺,因此煤炭的回收率仅为10%至25%。在中国许多地区,小煤矿造成的破坏面积近一百平方公里。因此,必须采用特殊的开采技术来回收受干扰的煤区中浪费的资源。通过分析西北地区崔家寨煤矿废弃区的长壁板布局和废弃门道(AG)分布,重点研究了不同的开采方法。在三维地质模型的基础上,进行了FLAC3D数值模拟。当面板面通过扰动区域时,模拟了基台压力分布。当面板面通过废弃的门道时,分析了倾斜面的适当角度。结果表明,面部首端应比尾端提前13–20 m。废弃闸道两侧的柱子没有同时受到破坏,主顶上方也没有大面积应力集中发生,因此,利用地下长壁开采可以成功地恢复受灾地区的煤炭储量。

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