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Computer Simulation of Gas Pressure and Drainage Radius for Dense Boreholes Gas Pre-drainage in Outburst Coal Seam

机译:爆发煤层致密钻孔气体预防煤气压力和排水半径的计算机模拟

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The computer simulation technique has been widely applied to the mine disaster control field. In this paper, we discuss the use of dense borehole pre-drainage technology as a preventive measure for coal and gas outburst. In order to enhance the pre-drainage efficiency and rationally arrange the borehole, the solid-gas coupled RFPA{sup}(2D)-Gas software is used to study the variation regularity in gas pressure and drainage radius under different conditions. These include the coal seam permeability coefficient, the space between boreholes, the borehole diameter, the gas content coefficient and the pre-drainage time. In conclusion, if a large permeability coefficient, a large borehole diameter, a small space between boreholes and a small content coefficient are used in the coal seam, then the reduction in gas pressure and drainage radius will be large. In this case, the shortest pre-drainage time is required in order to avoid the outburst danger in the coal seam. If the pre-drainage time is extended, both gas pressure reduction and drainage radius increase.
机译:计算机仿真技术已广泛应用于矿区灾害控制领域。在本文中,我们讨论了密集的钻孔前排水技术的使用作为煤气和燃气突出的预防措施。为了提高预排水效率并合理排列钻孔,使用固体气体耦合的RFPA {SUP}(2D) - GAS软件用于在不同条件下研究气体压力和排水半径的变化规律性。这些包括煤层渗透系数,钻孔,钻孔直径,气体含量系数和预排出时间之间的空间。总之,如果在煤层中使用较大的渗透系数,钻孔之间的小空间和小含量系数之间的小空间,则气体压力和排水半径的降低将大。在这种情况下,需要最短的预排水时间,以避免煤层中的突出危险。如果延长预排水时间,则气压降低和排水半径增加。

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