凡永鹏, 霍中刚, 王永. 基于流-固-热耦合的CO2-ECBM数值模拟研究[J]. 煤矿安全, 2022, 53(2): 162-169.
    引用本文: 凡永鹏, 霍中刚, 王永. 基于流-固-热耦合的CO2-ECBM数值模拟研究[J]. 煤矿安全, 2022, 53(2): 162-169.
    FAN Yongpeng, HUO Zhonggang, WANG Yong. Numerical simulation of CO2-ECBM based on fluid-solid-thermal coupled model[J]. Safety in Coal Mines, 2022, 53(2): 162-169.
    Citation: FAN Yongpeng, HUO Zhonggang, WANG Yong. Numerical simulation of CO2-ECBM based on fluid-solid-thermal coupled model[J]. Safety in Coal Mines, 2022, 53(2): 162-169.

    基于流-固-热耦合的CO2-ECBM数值模拟研究

    Numerical simulation of CO2-ECBM based on fluid-solid-thermal coupled model

    • 摘要: 气体的非等温竞争吸附和渗流扩散特征,建立CO2-ECBM的流-固-热耦合模型,进行CO2-ECBM工程数值模拟研究,分析初始储层温度、渗透率和压力对煤层渗透率、CH4生产速率和CO2封存速率的影响。结果表明:CH4的生产速率在抽采初始阶段下降迅速,之后随着抽采时间的增加,生产速率减幅越小;CO2封存速率可以被分成3个阶段:初始迅速减小,中期几乎保持稳定,后期缓慢减小;CO2未影响区域,煤层渗透率的变化规律是先略微减小然后不断增加,CO2影响区域,煤层渗透率迅速下降;相同条件下,储层的CH4生产速率和CO2封存速率与初始储层温度成反比,与初始储层渗透率和初始储层压力成正比。

       

      Abstract: In order to analyze the effect of coal reservoir characteristic parameters on CO2-ECBM project, based on the non-isothermal competitive adsorption and seepage characteristics of binary gas, a fluid-solid-thermal coupled model of CO2-ECBM was established. The effects of initial reservoir temperature, permeability, and pressure on permeability, CH4 production rate, and CO2 storage rate were studied by numerical simulation. Results show that: CH4 production rate drops rapidly in the initial stage of pumping, after that, the production rate slowly decreases with the increase of the extraction time; the CO2 storage rate can be divided into three stages: initial rapid reduction, almost stable in the middle period, and slowly decreasing in the later period; in the gas extraction process without CO2 injection, the variation of permeability is competition result of two types of factors: the coal matrix shrinkage caused by temperature reduction and gas desorption increase, the other is the coal matrix expansion caused by gas pressure decrease, so the permeability follows the rule of first decreasing and then increasing with the extraction time, the injection of CO2 has a great influence on the permeability of coalbed, adsorption of CO2 by the coal matrix causes the permeability to drop rapidly; under the same conditions, the CH4 production rate and CO2 storage rate are inversely proportional to the initial reservoir temperature and are proportional to the initial reservoir permeability and initial reservoir pressure.

       

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