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首页> 外文期刊>International Journal of Coal Geology >Mechanism of strata deformation under protective seam and its application for relieved methane control
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Mechanism of strata deformation under protective seam and its application for relieved methane control

机译:防护煤层下地层变形机理及其在甲烷缓解控制中的应用

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摘要

In this paper, an equation correlated with normal stress and permeability was developed and FLAC~(3D) software was used to investigate the rock mass stress evolution and distribution to understand the methane flow characteristics. Research results show that the rock mass under the protective coal seam can be divided into three belts (zones) in the vertical direction, including total de-stressed belt, vertical de-stressed belt and original stress belt. Methane in the total de-stressed belt can flow into the working face of protective coal seam by its own pressure gradient. Methane in the vertical de-stressed belt can only be extracted by boreholes. In the horizontal direction, the rock mass was also divided into five zones, including original zone, compression zone, expansion zone, recovering zone and re-compacted zone, which have been proved correct by the field experiments. The rock mass permeability in the de-stressed belts doesn't increase until stepping into the expansion zone, and from then on higher concentration of methane can be extracted. The methane in original regions is difficult to extract because rock stresses stay the same. The division of “three belts and five zones” reveals the rock mass stress and permeability distribution and evolution and supplies theoretical guidance for relieved methane control.
机译:本文建立了与法向应力和渗透率相关的方程,利用FLAC~(3D)软件研究了岩体应力演化和分布,以了解甲烷流动特征。研究结果表明,防护煤层下的岩体在垂直方向上可划分为3条带(带),包括全应力带、竖向应力带和原始应力带。全应力带中的甲烷可通过自身的压力梯度流入防护煤层工作面。垂直减压带中的甲烷只能通过钻孔提取。在水平方向上,岩体也被划分为原带、压缩带、膨胀带、恢复带和再压实带5个区域,野外试验证明这些区域是正确的。在进入膨胀带之前,去应力带中的岩体渗透率不会增加,从那时起可以提取更高浓度的甲烷。原始地区的甲烷很难提取,因为岩石应力保持不变。“三带五区”划分揭示了岩体应力和渗透率的分布和演化,为缓解甲烷控制提供了理论指导。

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