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首页> 外文期刊>Arabian journal of geosciences >Methane drainage optimization by roof-borehole based on physical simulation
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Methane drainage optimization by roof-borehole based on physical simulation

机译:基于物理模拟的顶孔瓦斯抽放优化

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摘要

As a kind of global disaster, the methane hazards extensively exist in the major coal-production countries. At present, conventional techniques, such as ventilation or drilling bore in coal seam, fail to completely solve the methane problem. To improve the methane drainage efficiency, a new method called roof-borehole, instead of traditional drainage methods (laying pipes in goaf and drilling hole in coal seam), was used to manage the gas disaster in goaf. Therefore, this study used the physical simulation experiment to study and determine the distribution characteristics of the fissure zone and methane zone in the overlying strata of coal seam and the necessary parameters of roof-borehole in turn. In addition, according to the experiment results, the optimal parameters for the position of roof-borehole (vertical distance and horizontal distance) were designed. By testing the effects of different drainage methods in field, it was found that the efficiency of methane drainage was significantly improved by the roof-borehole.
机译:作为一种全球性灾难,主要的煤炭生产国广泛存在甲烷危害。当前,常规技术,例如通风或煤层中的钻孔,不能完全解决甲烷问题。为了提高瓦斯抽放效率,采用了一种称为顶孔的新方法来代替传统的排放方法(在采空区敷设管道和在煤层中钻孔),以管理采空区的瓦斯灾害。因此,本研究利用物理模拟实验研究并确定了煤层上覆地层裂缝区和甲烷区的分布特征,进而确定了顶棚钻孔的必要参数。另外,根据实验结果,设计了顶孔位置的最佳参数(垂直距离和水平距离)。通过在田间测试不同排水方法的效果,发现顶孔显着提高了甲烷排放效率。

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