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首页> 外文期刊>Rock Mechanics and Rock Engineering >Numerical Analysis of Improvements to CO2 Injectivity in Coal Seams Through Stimulated Fracture Connection to the Injection Well
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Numerical Analysis of Improvements to CO2 Injectivity in Coal Seams Through Stimulated Fracture Connection to the Injection Well

机译:通过刺激裂缝连接到喷射井煤层中CO2注射性的数值分析

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This work presents a hybrid discrete fracture-dual porosity model of compressible fluid flow, adsorption and geomechanics during CO2 sequestration in coal seams. An application of the model considers the influence of hydraulic fractures on CO2 transport and the stress field of the coal. The low initial permeability of coal is compounded by the injectivity loss associated with adsorption-induced coal swelling, which is recognised as the major challenge limiting CO2 sequestration in coal seams. In this model, the natural fracture network and coal matrix are described by a dual porosity model, and a discrete fracture model with lower-dimensional interface elements explicitly represents any hydraulic fractures. The two models are coupled using the principle of superposition for fluid continuity with a local enrichment approximation for displacement discontinuity occurring at the surface of hydraulic fractures. The Galerkin finite element method is used to solve the coupled governing equations, with the model being verified against analytical solutions and validated against experimental data. The simulation results show that the presence of a hydraulic fracture influences the distribution of gas pressure and improves the gas flow rate, as expected. The stress field of a coal seam is disturbed by CO2 injection, especially the vertical stress, and the presence of a hydraulic fracture leads to a reduction in stress with permeability recovery starting earlier.
机译:该工作介绍了煤层中CO2封存期间的可压缩流体流动,吸附和地质力学的混合离散断裂 - 双孔隙率模型。该模型的应用考虑了液压骨折对煤炭的CO2运输和应力场的影响。煤的低初始渗透性通过与吸附诱导的煤溶胀相关的注射损失复合,这被认为是限制煤层中的CO2封存的主要挑战。在该模型中,自然骨折网络和煤基质由双孔隙率模型描述,并且具有下尺寸界面元素的离散裂缝模型明确表示任何液压裂缝。这两种模型是使用叠加原理耦合的,用于流体连续性,局部富集近似用于在液压裂缝表面发生的位移不连续性。 Galerkin有限元方法用于解决耦合的控制方程,模型被验证针对分析解决方案并针对实验数据验证。仿真结果表明,液压断裂的存在影响气体压力的分布并提高气体流速,如所预期的那样。煤层的应力场受到二氧化碳注射,尤其是垂直应力,液压裂缝的存在导致液压裂缝的延伸引起渗透性恢复的胁迫。

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