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A Dynamic Fractal Permeability Model for Heterogeneous Coalbed Reservoir Considering Multiphysics and Flow Regimes

机译:考虑多职和流动制度的异构煤层气水库动态分形渗透模型

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Heterogeneous pore structure is critically important for unconventional gas recovery. In this paper, a dynamic fractal permeability model is proposed to investigate the interplay between heterogeneous pore structures and gas transport for coal seam gas reservoir. In this model, pore diameter and fractal dimension of pore size distribution are dynamically changing as a result of the variation of effective stress. Besides, based on fractal approach, a new Klinkenberg coefficient that dynamically changes with pore pressure is employed to incorporate the non-Darcy effect. This dynamic permeability model is applied to couple Multiphysics in coal seam gas recovery process. The impacts of these fractal parameters on permeability evolution are explored through a benchmark reservoir simulation. The numerical results exhibit good agreements with experimental data. The simulation results indicate that: (1) the dynamic permeability model matches better with experimental data than other homogeneous models, especially in low-pressure stage; (2) reservoir with larger initial fractal dimension is more sensitive to pressure depletion; (3) fractal dimension would change more dramatically when initial porosity is relatively smaller; (4) Klinkenberg coefficient increases with the decreasing of reservoir pore pressure during gas depletion. In summary, the dynamic permeability model predicts permeability evolution well in gas production process and provide some fundamental insights into the implications of reservoir heterogeneity on gas transport in reservoir simulation.
机译:异质孔隙结构对于非传统气体回收是至关重要的。本文提出了一种动态分形渗透性模型来研究异质孔隙结构与煤层气储层气体运输之间的相互作用。在该模型中,由于有效应力的变化,孔径分布的孔径和分形尺寸是动态变化的。此外,基于分形方法,采用孔隙压力动态变化的新Klinkenberg系数来包含非达到达到的效果。这种动态渗透性模型应用于煤层气回收过程中的多发性。通过基准储库模拟探索了这些分形参数对渗透性进化的影响。数值结果表现出与实验数据的良好协议。仿真结果表明:(1)动态渗透模型与实验数据比其他均匀模型更好,特别是在低压阶段; (2)具有较大初始分形尺寸的储层对压力耗尽更敏感; (3)当初始孔隙率相对较小时,分形尺寸会更大地变化; (4)Klinkenberg系数随着气体耗尽期间储层孔隙压力的降​​低而增加。总之,动态渗透性模型预测气体生产过程中的渗透性演化,并对储层异质性的影响对储层模拟中的气体运输产生了一些根本的见解。

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