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Numerical modelling of fracturing effect stimulated by pulsating hydraulic fracturing in coal seam gas reservoir

机译:煤层气储层脉冲水力压裂刺激压裂效果的数值模型

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摘要

Pulsating hydraulic fracturing (PHF) technology is an advanced permeability enhancement method for coal seam gas mining. Laboratory and field experiments indicate that PHF can stimulate a well distributed fracture system inside a coal reservoir. However, the basic mechanism behind this effect is still poorly understood. In this study, a better mathematical model for pressure ripple propagation is proposed and an analytical solution is obtained. Furthermore, the particle flow code is applied based on the analytical solution to numerically simulate the fracturing effect of PHF. The mechanism for fracture system formation with the original coal cleat system is quantitatively analysed by using advanced indicators (crack event density, crack intensity rate and kinetic energy). A new cracking pattern is proposed and discussed. Eventually, fracturing effects under different engineering PHF inputs (i.e., pulsating frequency and ripple amplitude) are numerically simulated and analysed. The conclusions build a theoretical basis for the mechanism of PHF effect. The PHF parameters may also be largely improved and optimized for the extension and formation of fracture networks in a coal seam gas reservoir. (C) 2017 Elsevier B.V. All rights reserved.
机译:脉动液压压裂(PHF)技术是煤层气开采的先进渗透性增强方法。实验室和现场实验表明,PHF可以刺激煤储层内部分布良好的骨折系统。然而,这种效果背后的基本机制仍然明白。在本研究中,提出了一种更好的压力纹波传播的数学模型,获得了分析解决方案。此外,基于分析溶液施加颗粒流量代码,以数值模拟PHF的压裂效果。通过使用先进指标(裂缝事件密度,裂纹强度和动能)定量分析与原煤层系统的断裂系统形成机制。提出并讨论了一种新的裂缝模式。最终,在数值模拟和分析不同工程PHF输入下的压裂效应(即,脉动频率和纹波幅度)。结论为PHF效应的机制构建了理论依据。也可以大大改善PHF参数并针对煤层气储层中的裂缝网络的延伸和形成优化。 (c)2017 Elsevier B.v.保留所有权利。

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