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The influence of gas storage parameters on gas emission rate from borehole

机译:气体存储参数对钻孔气体排放率的影响

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Gas emission rate from borehole is one of the most important indexes for the coal and gas outburst prediction. The mathematical model of gas flow in the coal seam, gas flow into the measuring chamber, gas pressure change in the measuring chamber, and gas flow out of the chamber through the pipe is established. Gas migration in the coal seam, gas pressure in borehole chamber and gas flow in pipe is simulated using the finite difference method. Gas emission rate is obtained under dynamic boundary conditions. The influence of gas storage parameters on gas emission rate from borehole is analyzed. Results show that: the gas pressure and the permeability coefficient have great impacts on the value of gas flow quantity in borehole. The larger the original gas pressure of coal seam and the permeability coefficient of coal seam are, the greater the maximum value of gas emission rate form borehole and the later the maximum appears.
机译:来自钻孔的气体排放率是煤和燃气突出预测最重要的指标之一。 建立了煤层中气流的数学模型,气体流入测量室,测量室中的气体压力变化,以及通过管道的气体流出腔室。 煤层中的气体迁移,使用有限差分法模拟钻孔室中的气体压力和管中的气流。 在动态边界条件下获得气体排放率。 分析了气体储存参数对钻孔气体发射率的影响。 结果表明:气体压力和渗透系数对钻孔中的气体流量的价值产生了很大的影响。 煤层的原始气体压力越大,煤层的渗透系数是,气体排放率的最大值越大,钻孔的最大值和后来出现的最大值。

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