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Intermediate coal pillar instability and permeability evolution in extremely thin protective seam by auger mining

机译:螺旋桨采矿极薄保护煤层中间煤支柱不稳定性和渗透性进化

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摘要

Protective seam mining method is an effective way to eliminate the coal and gas outburst hazard. Auger mining (AM) is adopted to protective seam thinner than 1.0m. The key of AM is to set intermediate coal pillar (ICP) because they have two functions: on the one hand, ICPs have to support the roof temporarily to avoid coal auger crushing; on the other hand, they have to be broken subsequently to release the pressure of protected layer above. Theoretical analysis and numerical simulation are used to study the instability mechanism of the ICPs. On this basis, the effect of ICPs on the pressure relief and permeability evolution of the protected layer was analyzed. Results show that the reasonable ICP width is related to many factors, such as AM width, AM height, and ICP strength. The single ICP instability mode is compressive failure and the ICPs collapse one by one gradually instead of collapsing wholly and suddenly. The reasonable ICP width of Chiyu Coal Mine is 2.0m with the conditions of 1.0m AM height and 10.0m AM width, namely when 4 AM rooms are mined by the coal auger and three ICPs are set. These ICPs collapse one by one and the sequence is No. 2, No. 1, and then No. 3. With the AM face advancing, the amount of ICPs increase and the pressure relief effect is also gradually improved. When some of ICPs collapse, the stress within the overburden above the goaf is released rapidly which significantly improves the performance of pressure relief.
机译:保护煤层采矿方法是消除煤和燃气突出危害的有效途径。采用螺旋钻矿(AM),用于保护缝比1.0米更薄。 AM的关键是设定中间煤柱(ICP),因为它们有两种功能:一方面,ICPS必须暂时支撑屋顶以避免煤扣粉碎;另一方面,它们必须随后被破裂,以释放上面保护层的压力。理论分析和数值模拟用于研究ICPS的不稳定机制。在此基础上,分析了ICP对受保护层的减压和渗透性演化的影响。结果表明,合理的ICP宽度与许多因素有关,例如AM宽度,高度高度和ICP强度。单个ICP不稳定模式是压缩故障,并且ICP逐渐折叠,而不是完全突然坍塌。合理的Chiyu煤矿的ICP宽度为2.0米,宽度为1.0米,宽度100米,宽度10.0米,即当煤炭螺旋钻和三个ICP开采时。这些ICP逐一折叠,序列是第2号,第1号,然后第3号。随着AM面部的推进,ICP增加的量增加,减压效果也逐渐提高。当一些ICPS崩溃时,GOAF上方的覆盖层内的压力迅速发布,从而显着提高了减压性能。

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