首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Coupled fluid-flow and geomechanics for triple-porosity/dual-permeability modeling of coalbed methane recovery
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Coupled fluid-flow and geomechanics for triple-porosity/dual-permeability modeling of coalbed methane recovery

机译:耦合流体流和地质力学的煤层气采收率三孔/双渗透模型

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摘要

A coupled fluid-flow and geomechanics model for simulating coalbed methane (CBM) recovery is presented. In the model, the fluid-flow process is simulated with a triple-porosity/dual-permeability model, and the coupling effects of effective stress and micro-pore swelling/shrinkage are modeled with the coupled fluid-flow and geomechanical deformation approach. The mathematical model is implemented with a finite volume method. First, a case without considering coupling between fluid-flow and geomechanics is simulated and compared with an existing simulator. The effects of coupled fluid-flow and geomechanics are then studied in detail with two illustrative examples. The first one is designed for testing the effective stress effect without micro-pore swelling/shrinkage effect, and the other for testing the coupling effects of the effective stress and micro-pore swelling/shrinkage on the methane production. The numerical results indicate that both the effective stress and the micro-pore shrinkage make a significant contribution to fluid-flow in CBM reservoir and to methane production. The methane production sensitivity to Young's modulus and Langmuir sorption strain are investigated as well. Finally, we make a dynamic analysis of the coupling effects of fluid-flow process and geomechanics.
机译:提出了一种模拟煤层气(CBM)采收率的流体流动与地质力学耦合模型。在该模型中,用三孔/双渗透率模型模拟了流体的流动过程,并使用流体-流动和岩土力学变形方法对有效应力和微孔膨胀/收缩的耦合效应进行了建模。数学模型通过有限体积法实现。首先,模拟了一种不考虑流体流动与地质力学之间耦合的情况,并将其与现有的模拟器进行了比较。然后,通过两个示例性实例详细研究了耦合的流体流动和地质力学的影响。第一个设计用于测试有效应力效应而无微孔膨胀/收缩效应,另一个设计用于测试有效应力和微孔膨胀/收缩对甲烷生产的耦合效应。数值结果表明,有效应力和微孔收缩都对煤层气储层中的流体流动和甲烷产生有重大贡献。还研究了甲烷生产对杨氏模量和Langmuir吸附应变的敏感性。最后,我们对流体流动过程与地质力学的耦合效应进行了动态分析。

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