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Computational fluid dynamics simulation on the longwall gob breathing

机译:长壁采空区呼吸的计算流体动力学模拟

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In longwall mines, atmospheric pressure fluctuations can disturb the pressure balance between the gob and the ventilated working area, resulting in a phenomenon known as ‘‘gob breathing”. Gob breathing triggers gas flows across the gob and the working areas and may result in a condition where an oxygen deficient mixture or a methane accumulation in the gob flows into the face area. Computational Fluid Dynamics(CFDs) modeling was carried out to analyze this phenomenon and its impact on the development of an explosive mixture in a bleeder-ventilated panel scheme. Simulation results indicate that the outgassing and ingassing across the gob and the formation of Explosive Gas Zones(EGZs) are directly affected by atmospheric pressure changes. In the location where methane zones interface with mine air, EGZ fringes may form along the face and in the bleeder entries. These findings help assess the methane ignition and explosion risks associated with fluctuating atmospheric pressures.
机译:在长壁矿井中,大气压力的波动会干扰采空区和通风区域之间的压力平衡,从而导致一种称为“采空区呼吸”的现象。料滴呼吸会触发气体流过料滴和工作区域,并可能导致缺氧混合物或料滴中的甲烷积聚流入面部区域。进行了计算流体动力学(CFDs)建模,以分析这种现象及其对在通风面板通风装置中爆炸性混合物发展的影响。仿真结果表明,大气压下气体的除气和埋入以及爆炸性气体区域的形成直接受到影响。在甲烷区域与矿井空气接触的位置,EGZ边缘可能会沿着工作面和放气口形成。这些发现有助于评估与大气压力波动相关的甲烷着火和爆炸风险。

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