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Research on Optimization of Key Areas of Drainage Borehole Sealing in Ultrathick Coal Seam

机译:超薄煤层中排水钻孔密封关键领域优化研究

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Gas drainage is an important means of gas control. The influence of the key position of the sealing hole on gas drainage was studied by theoretical and numerical simulation combined with field measurement to solve low gas concentration in gas predrainage boreholes in coal mines of China. By analyzing the distribution of cracks around the boreholes and the law of air leakage and simulating the drainage effect of different sealing areas (8?m, 12?m, and 16?m), it was proposed that the key position of the sealing hole should be in the prepeak stress concentration area. According to the actual situation of Baode Mine, the sealing test scheme of different sealing areas was put forward, and the field test was carried out to obtain the key sealing area of gas predrainage boreholes in Baode Mine. Research shows that when the sealing area is 8–16?m, the average gas concentration is 63.57%, and the average pure gas flux is 0.408?m 3 /min. The sealing effect of this area is better, with fewer cracks, than that of the existing sealing area, effectively preventing gas leakage and increasing the gas concentration and gas scalar.
机译:气体排水是气体控制的重要手段。通过理论和数值模拟研究了田间测量,研究了密封孔对气体排水对气体排水的影响。通过分析钻孔周围的裂缝分布和空气泄漏定律,并模拟不同密封区域的排水效果(8?M,12?M和16?M),提出了密封孔的关键位置应该在Prepeak应力集中区域。根据Baode矿井的实际情况,提出了不同密封区域的密封试验方案,并进行了现场试验,以获得Baode矿井气体预培养孔的关键密封面积。研究表明,当密封面积为8-16Ωm时,平均气体浓度为63.57%,平均纯气体通量为0.408Ω/ min。该区域的密封效果更好,裂缝较少,而不是现有的密封区域,有效地防止气体泄漏并增加气体浓度和气体标量。

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