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Model development and analysis of the evolution of coal permeability under different boundary conditions

机译:不同边界条件下煤渗透率演化的模型发展与分析

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Coal permeability is an important parameter for coalbed methane (CBM) production and CO2-enhanced coalbed methane (ECBM) recovery. Coal permeability is mainly controlled by the structure of the coal. In this study, based on the pore-elasticity principle and the coal matrix-fracture interactions, we developed an analytical coal permeability model and its five forms under the corresponding specific boundary conditions, and four of them are validated by matching the corresponding field data or experimental data. The study presents a discussion of the permeability evolution for the different forms. The results show that the coal permeability under constant volume and constant effective stress conditions are controlled by the matrix sorption deformation and that the coal permeability under uniaxial strain and constant external stress conditions is governed by both the effective stress and the matrix sorption deformation. The constant volume model may be a special form of the constant effective stress model. For the same pressure drawdown, the permeability that is predicted under constant external stress conditions decreases more than that the permeability that is predicted under uniaxial strain conditions, and the permeability change induced by the matrix sorption deformation depended on the values of the internal swelling partition. The boundary conditions are important to the model, and different boundary conditions will lead to different evolutions of coal permeability. The permeability model can only be used to predict the evolution of permeability under the corresponding boundary conditions. (C) 2016 Elsevier B.V. All rights reserved.
机译:煤渗透率是煤层气(CBM)生产和CO2强化煤层气(ECBM)回收的重要参数。煤的渗透性主要受煤的结构控制。在这项研究中,基于孔隙弹性原理和煤基质-断裂相互作用,我们开发了一个解析的煤渗透率模型及其在相应的特定边界条件下的五种形式,并通过匹配相应的现场数据或模型验证了其中的四种形式。实验数据。该研究对不同形式的渗透率演化进行了讨论。结果表明,恒定体积和恒定有效应力条件下的煤渗透率受基体吸附变形的控制,单轴应变和恒定外应力条件下的煤渗透率受有效应力和基体吸附变形的共同控制。恒定体积模型可以是恒定有效应力模型的一种特殊形式。对于相同的压降,在恒定外部应力条件下预测的渗透率比在单轴应变条件下预测的渗透率下降更多,并且基体吸附变形引起的渗透率变化取决于内部溶胀分区的值。边界条件对模型很重要,不同的边界条件将导致煤渗透性的不同演变。渗透率模型只能用于预测相应边界条件下渗透率的演变。 (C)2016 Elsevier B.V.保留所有权利。

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