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Improvement of Gas Drainage Efficiency of Low-Permeability Coal Seams Using Ultra-High Pressure Hydraulic Cutting Technique

机译:采用超高压液压切割技术提高低渗透煤层燃气排水效率

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With the increase in the coal mining depth, the dynamic disasters of deep coal seam under the combined effects of high crustrals stress and high gas pressure seriously restrict the safety production of the coal mines. Moreover, it is very difficult to lower the gas content of the low-permeability coal seams. Even though numerous boreholes have been drilled inside the coal seam and gas drainage have been performed for a long period. High-pressure water jet cutting technology can effectively increase the exposure area of coal seams, improve the gas flow state in coal seams, so that the coal can be evenly and fully discharged in a certain range, and then the goal of rapid discharge and permeability enhancement can be achieved. After cutting the coal seam between lm and 2m interval, a uniform pressure relief space is formed inside the boreholes to increase the permeability of the coal seam and improve the gas drainage efficiency The field test results shows that the equivalent diameter of boreholes with cutting is about 5 times that of boreholes without cutting. The gas drainage radius of boreholes with cutting is 2.8 times that of boreholes without cutting, which significantiy shortens the gas drainage time of the coal lane strip, and then attributes to relizing the rapid and safe excavation of coal seam roadway. This technique can provide reference significance for the modification of low-permeabilety coal seans in the similar condition area.
机译:随着煤炭开采深度的增加,深煤层的动态灾害在高渠道胁迫和高气体压力的综合影响下严重限制了煤矿的安全生产。此外,很难降低低渗透煤层的气体含量。尽管在煤层内已经钻出了许多钻孔,但是已经长时间进行了煤层和煤气排水。高压水射流切割技术可以有效地增加煤层的曝光面积,改善煤层中的气流状态,使煤可以在一定范围内均匀且完全放电,然后快速放电和渗透性的目标可以实现增强。在将煤层切割在LM和2M间隔之间后,在钻孔内形成均匀的减压空间,以提高煤层的渗透率,提高煤气排水效率,现场测试结果表明,切割的钻孔的等效直径是关于没有切割的钻孔的5倍。钻孔的煤气排水半径与切割的钻孔是2.8倍,这显着缩短了煤巷条的煤气排水时间,然后将煤层气道路的快速安全开挖的归因缩短。该技术可以为类似条件区域的低渗透粉末改变提供参考意义。

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