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Analysis on Production of Coal Bed Methane Considering the Change in Permeability of Coal Rock

机译:考虑煤岩渗透率变化的煤层气产量分析

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Based on the mechanism of migration of the coal bed methane (CBM), and taking into account the deformation of the coal rock during the process of CBM production was also taken into account, a coupled mathematical model considering the interaction of solid and fluid for methane extraction was built. The coal gas extraction of JINcheng coal mine was taken as an example, some typical coal sample was chosen to test the permeability under different confining pressure. The curve for permeability of coal rock versus effective stress under different confining pressure was obtained, a numerical model considering the variation of permeability for methane extraction was set up. The influence of deformation of coal rock on the gas production was simulated and analyzed. The simulation results indicate that the productivity curve considering deformation of rock is closer to the actual production data, at the initial stage of production, the gas rate is less than the case without considering deformation of rock, but the time of stable yield will last longer, and this matches the actual methane extraction, therefore, we recommend that the deformation of coal seam should be considered during the prediction of methane production for JINcheng coal mine.
机译:基于煤层气(CBM)运移机理,并考虑到煤层气在生产过程中的变形,建立了考虑固液相互作用的甲烷耦合数学模型。提取被建立。以金城煤矿的瓦斯抽采为例,选取一些典型的煤样对不同围压下的渗透率进行了测试。得到了不同围压条件下煤岩渗透率与有效应力的关系曲线,建立了考虑甲烷渗透率变化的数值模型。模拟分析了煤岩变形对瓦斯产生的影响。仿真结果表明,考虑岩石变形的生产率曲线更接近实际生产数据,在生产初期,燃气率小于不考虑岩石变形的情况,但稳定产量的时间会更长。 ,这与实际的甲烷抽采量相匹配,因此,我们建议在金城煤矿的甲烷产量预测中应考虑煤层变形。

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