极厚关键层下远距离保护煤层裂隙演化与卸压瓦斯抽放

Liang WANG , Yuan-ping CHENG , Feng-rong LI , Hai-feng WANG , Hai-bo LIU
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引用次数: 48

摘要

在开采保护煤层条件下,当弯曲带保护煤层上方存在极厚岩层时,该极厚岩层控制着整个上覆地层的移动。这种极厚的岩层被称为“主关键层”,在很长一段时间内不会下沉或破裂,导致下部裂缝和离层不能闭合,气体可以沿着裂缝向离层区运移。这些层析层成为天然气富集区。通过分析深部保护煤层开采后主关键层下裂隙演化和瓦斯运移规律,提出了一种利用大深度钻穿岩层和煤层的钻孔抽放卸压瓦斯的新方法。在这种方法中,钻孔位于高吸力巷道(我们也可以在位于高空气通道的钻孔场中钻孔)。结合海子矿的实践,中煤组瓦斯抽放率可达73%,抽放半径大于100m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fracture evolution and pressure relief gas drainage from distant protected coal seams under an extremely thick key stratum

When an extremely thick rock bed exists above a protected coal seam in the bending zone given the condition of a mining protective seam, this extremely thick rock bed controls the movement of the entire overlying stratum. This extremely thick rock bed, called a “main key stratum”, will not subside nor break for a long time, causing lower fractures and bed separations not to close and gas can migrate to the bed separation areas along the fractures. These bed separations become gas enrichment areas. By analyzing the rule of fracture evolution and gas migration under the main key stratum after the deep protective coal seam has been mined, we propose a new gas drainage method which uses bore holes, drilled through rock and coal seams at great depths for draining pressure relief gas. In this method, the bores are located at a high level suction roadway (we can also drill them in the drilling field located high in an air gateway). Given the practice in the Haizi mine, the gas drainage rate can reach 73% in the middle coal group, with a gas drainage radius over 100 m.

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