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Determination of Optimal Extrication Location of High Extraction Roadway of Large-Mining-Height Fully Mechanized Face

机译:大采高综采工作面高抽采巷道最佳析出位置的确定

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Determining the optimal extrication location of the high extraction roadway can improve the gas extrication effect of highly gassy mine and solve the problem of gas concentration overrun at the upper corner, which is of great significance to safety and efficient mine production. According to the actual situation of mine, the gas gushing amount in the goaf, pressure difference at both ends of the working face, the 3D porosity, and permeability distribution of the caving zone and fissure zone were obtained by field measurement and numerical calculation. Through theoretical calculation, the proper extraction site of a high-position alley was determined. On this basis, the optimal extraction site of a high-position alley was determined by numerical analysis of the gas extraction effect at different sites. The results show that as the perpendicular distance between high-position alley and goaf floor increases, the gas extraction amount increases first and then decreases. The concentration of extraction gas gradually increases, and the increasing trend is gradually diminished. With the increase of the horizontal distance between the air return way and the high-position alley, the gas extraction amount and gas extraction concentration increase first and then decrease. The optimal extraction site of a high-position alley should be 39 m vertically away from the goaf floor and 30 m horizontally away from the air return way.
机译:确定高抽放巷道的最佳抽放位置,可以提高高瓦斯矿井的瓦斯抽放效果,解决上角瓦斯浓度超标的问题,这对安全高效地生产煤矿具有重要意义。根据矿山的实际情况,通过现场测量和数值计算,获得了采空区的瓦斯涌出量,工作面两端压力差,3D孔隙度以及崩落带和裂隙带的渗透率分布。通过理论计算,确定了高位胡同的适当提取部位。在此基础上,通过数值分析不同位置的抽气效果,确定了高位胡同的最佳抽气位置。结果表明,随着高位巷道与采空区底板垂直距离的增加,瓦斯抽采量先增加后减少。提取气体的浓度逐渐增加,增加趋势逐渐减小。随着回风通道与高位胡同之间水平距离的增加,抽气量和抽气浓度先升高后降低。高位胡同的最佳抽风地点应在距采空区地面垂直39 m处和距回风口水平处30 m处。

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