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地面钻孔抽采对采空区瓦斯运移及自然发火的影响数值模拟研究

Numerical Simulation for the Effect of Surface Borehole Extraction on Gas Migration and Spontaneous Combustion

  • 摘要: 地面钻孔抽采导致采空区漏风增加,采空区内瓦斯及氧气浓度分布发生变化,影响采空区自燃危险性。采用数值模拟的方法,对不同钻孔抽采量和抽采位置条件下采空区氧化带宽度及瓦斯浓度分布情况进行了模拟,研究结果表明,经地面钻孔抽采后,采空区两侧瓦斯浓度降低,高浓度瓦斯位置整体后移,但自燃氧化带宽度随之增加。随着抽采流量增加,瓦斯浓度降低,氧化带宽度增加;在靠近工作面及采空区深部位置布置钻孔进行联合抽采时,瓦斯浓度及自燃氧化带分布较为理想。采用多孔联合抽采方式时,在合理的布孔间距和抽采流量条件下,既可以降低采空区瓦斯浓度又能控制自燃氧化带宽度范围,能够有效解决采空区瓦斯涌出与自然发火问题。

     

    Abstract: The extraction through surface borehole led to the increase of air leakage, the change of gas and oxygen distribution in goaf, and affect the risk of spontaneous combustion. By means of numerical simulation, the width of oxidation zone and the distribution of gas concentration under different drilling and extraction conditions of different boreholes were simulated. The reaserch results showed that the gas concentration reduced on both sides of the golf and high concentration area moved backward, however, the width of spontaneous combustion oxidation zone increased at the same time. The gas concentration reduced and the width of oxidation zone increased with the growth of drainage gas flow. Through combined extraction by arranging the borehole close to working face and deep location of the goaf, a better distribution of oxidization zone and gas concentration was got. As under the condition of reasonable spacing of the holes and extraction flow, utilizing multiple borehole combined extraction can not only decline the gas concentration in golf, but also control the width of oxidation zone, which solved gas emission and spontaneous combustion in goaf effectively.

     

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