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Roof Movement and Failure Behavior When Mining Extra-Thick Coal Seams Using Upward Slicing Longwall-Roadway Cemented Backfill Technology

机译:屋顶运动和故障行为采用厚厚的煤层,使用向上切割龙墙 - 巷道水泥回填技术

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摘要

A novel and environmental-friendly backfill mining method known as upward slicing longwall-roadway cemented backfill (USLCB) technology has recently been proposed and successfully applied in mines extracting extra-thick coal seams located under sensitive areas. This paper studies the effects USLCB had on roof movement and failure behavior using the mechanical analysis approach. The application of USLCB in the Gonggeyingzi Mine is taken as a case study with roof movement behavior being monitored over a single mining cycle, as well as over multiple mining cycles of different coal slices. In addition, backfill performance requirements to prevent roof failures where USLCB is implemented are studied. The results show that the deflection curves of the roof at the end of each mining cycle during mining the first and the six slices are symmetrical, but they change from asymmetrical to symmetrical during the mining progresses of the second slice to the fifth slice. The final state of roof movement after the first slice, and through to the fifth slice, displays an obvious “flat bottom” pattern in the middle of the deflection curve. The roof movement during the removal of the top slice is noticeably different from other slices. The results also show that the requirements of the elastic modulus, as well as the strength of the backfill, increase as the number of mined slices increases from 1 to 5, but the requirements drop sharply for mining the top slice.
机译:最近提出了一种新颖的和环保型回填采矿方法,最近已提出并成功地应用于矿山居中的矿泉煤层的矿井中成功地应用了巩固长墙道路泥土巷道回填(USLCB)技术。本文研究了使用机械分析方法对屋顶运动和故障行为的影响。 USLCB在Gonggeyingzi矿井中的应用是在单个采矿循环中监测屋顶运动行为的案例研究,以及不同煤切片的多个采矿循环。此外,回收性能要求以防止实现USLCB的屋顶故障。结果表明,在挖掘第一和六个切片期间每个采矿循环结束时屋顶的偏转曲线是对称的,但它们在第二切片的挖掘进展期间从不对称变为对称的第二切片到第五片。第一切片之后的屋顶运动的最终状态,并通过到第五片,在偏转曲线的中间显示出明显的“平底”图案。在移除顶部切片期间的屋顶运动明显不同于其他切片。结果还表明,随着开采片数的增加,弹性模量的要求以及回填的强度从1到5增加,但需要急剧下降以挖掘顶部切片。

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