煤样尺度的二氧化碳驱替煤层气数值模拟

    Numerical simulation of CO2-ECBM based on coal sample scale

    • 摘要: 为了实现ECBM实验研究和数值模拟结合分析,基于实验室应力条件的渗透率模型,建立了煤孔隙裂隙介质系统的CO2驱替煤层CH4的数值模型。开展了不同CO2注入压力下煤样尺度的二氧化碳驱替煤层气的数值模拟。结果表明:CO2的注入压力越大,注入后CO2从煤样末端流出所需时间越小;CO2的注入会引起煤的渗透率减小,注入压力较小时渗透率变化分为三个阶段,包括有效应力影响的阶段、CH4压力不变的阶段和CO2吸附影响阶段,但是当注入压力较大时则不存在CH4压力不变的阶段;注入压力增大,CH4产出量在注入CO2后的一定时间内有很大提高,然后在注气后期,CH4产出量反而较小。上述结果对指导室内开展ECBM实验和分析ECBM室内实验的结果具有指导意义。

       

      Abstract: In order to achieve the ECBM experimental research and numerical simulation combined analysis, based on the permeability model under the laboratory stress conditions, a numerical model of CO2-ECBM, including the pore and fracture medium system of coal, was established.Numerical simulation of CO2-ECBM at different CO2 injection pressures was carried out.The results show that the greater the injection pressure of CO2, the less time it takes for CO2 to flow out from the end of the coal after injection.The injection of CO2 will cause the permeability of coal to decrease, and when the injection pressure is small, the change of permeability will be divided into three stages, including the stage of effective stress, the stage of constant CH4 pressure, and the stage of CO2 adsorption.When the injection pressure is large, there is no stage of the stage of constant CH4 pressure.As the injection pressure increases, the CH4 output increases greatly after a certain period of time after the injection of CO2, and then the CH4 output is smaller at the later stage of gas injection.The above results are instructive for the CO2-ECBM experiments and the analysis of its experimental results.

       

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