亓宪寅, 杨典森, 陈卫忠. 煤层气解吸滞后定量分析模型[J]. 煤炭学报, 2016, 41(S2): 475-481. DOI: 10.13225/j.cnki.jccs.2016.0093
引用本文: 亓宪寅, 杨典森, 陈卫忠. 煤层气解吸滞后定量分析模型[J]. 煤炭学报, 2016, 41(S2): 475-481. DOI: 10.13225/j.cnki.jccs.2016.0093
QI Xian-yin, YANG Dian-sen, CHEN Wei-zhong. Research of a bidisperse diffusion model based on adsorption hysteresis[J]. Journal of China Coal Society, 2016, 41(S2): 475-481. DOI: 10.13225/j.cnki.jccs.2016.0093
Citation: QI Xian-yin, YANG Dian-sen, CHEN Wei-zhong. Research of a bidisperse diffusion model based on adsorption hysteresis[J]. Journal of China Coal Society, 2016, 41(S2): 475-481. DOI: 10.13225/j.cnki.jccs.2016.0093

煤层气解吸滞后定量分析模型

Research of a bidisperse diffusion model based on adsorption hysteresis

  • 摘要: 针对煤解吸滞后过程解、吸附量和速度变化特征,提出了煤层气解吸滞后定量分析模型。根据煤解吸滞后现象分析,结合"墨水瓶"理论,通过引入滞后因子α,提出了煤吸附-解吸模型,揭示了煤吸附-解吸过程质量变化的解吸滞后机理;通过比较解、吸附过程速度,提出了考虑煤基质吸附-解吸过程孔隙率变化的扩散方程,该方程中扩散系数直接可以反映吸附-解吸过程时间异步问题。基于Comsol计算平台,实现了煤层气解吸滞后定量分析模型的数值求解。数值模拟结果显示不同煤阶煤样的等温吸附实验数据验证了α值的合理性,拟合数据表明随煤阶提高,α值越大,解吸滞后程度越大;吸附-解吸过程中扩散系数的变化趋势相反,吸附过程中扩散系数随时间减小,吸附速率随时间减小,解吸过程中,其值随时间增大,解吸速率随时间增大,通过扩散系数得到的解、吸附速率变化趋势与实验室结果一致,证明了此参数的合理性,进而可用来分析解吸滞后现象在时间上的变化趋势。

     

    Abstract: A new model of adsorption hysteresis was put forward for describing the sorption quantity and speed variation characteristics of coal adsorption hysteresis process.According to the coal adsorption hysteresis analysis and combined with the theory of ink bottle, a sorption model was put forward by introducingα named hysteresis factor, which revealing the mechanism of the coal quality change in the process of sorption, then α was verified reasonable by fitted with the four types of domestic and foreign data of isothermal adsorption experiments and the fitting data showed that the bigger the α value, the greater the degree of sorption hysteresis.By comparing the velocity of adsorption process, a diffusion equation considering the change of coal matrix porosity was put forward, which the equation of diffusion coefficient can directly reflect the problem of asynchronous time in the process of sorption.Based on Comsol computing platform, the numerical simulation of the diffusion equations had realized.Numerical simulation results showed that the tendency of the diffusion coefficient in the process of adsorption was on the contrary, for instance, the diffusion coefficients decreased with time in the process of adsorption, the adsorption rate decreased with time and the process of adsorption was on the contrary, this result was consistent with the laboratory result which could prove the rationality of the parameters and further be used to analyze the change trend of adsorption hysteresis phenomenon on the time.

     

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