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Study of gas emission law at the heading face in a coal‐mine tunnel based on the Lattice Boltzmann method

机译:基于晶格Boltzmann方法的煤矿隧道标题煤气排放法研究

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Gas distribution ahead of the coal tunnel is the key risk factor controlling coal and gas outburst. Based on an analysis of the influence of the stress state on the porosity of the coal seam, an improved quartet structure generation set (QSGS) random porous media generation tool is used to reconstruct the coal structure. Adopting the reconstructed pore structure of the coal as the boundary of the flow field, the Lattice Boltzmann method (LBM) is used to simulate the gas dynamic distribution law ahead of the coal tunnel. The gas pressure of the coal seam decreases obviously in the fracture zone only, and the change in gas pressure is very small in the stress concentration zone and ahead of the coal seam. This research is of significance for gas drainage and the prevention of coal and gas outburst hazards in the working face during coal tunneling.
机译:煤隧道前方的气体分配是控制煤炭和天然气突出的关键危险因素。基于对应力状态对煤层孔隙率的影响的分析,使用改进的四重奏结构产生组(QSGS)随机多孔介质产生工具来重建煤结构。采用煤的重建孔隙结构作为流场的边界,格子Boltzmann方法(LBM)用于模拟煤隧道前方的气体动态分布规律。煤层的气压仅在裂缝区中显而降,气体压力的变化在应力集中区和煤层前面非常小。该研究对煤隧道煤气引流和防止煤炭和煤气突出危害的意义具有重要意义。

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