论文标题
地热储层的液压刺激中的断层滑移:管理机制和过程结构相互作用
Fault slip in hydraulic stimulation of geothermal reservoirs: governing mechanisms and process-structure interaction
论文作者
论文摘要
低渗透性基底和结晶的火成岩中的地热储层的水力刺激可以通过重新激活和剪切膨胀来增强渗透性。该过程的特征是流体流,变形和形成的断裂结构之间的相互作用。该流量受到骨折网络的高度影响,裂缝网络又由于流体注入引起的水力机械应力变化而变形。这种过程结构的相互作用对于液压刺激的结果是决定性的,在分析管理机制时,基于物理的建模具有补充现场和实验数据的潜力。在这里,我们展示了最近开发的仿真技术是一种有价值的工具,可以理解液压耦合过程的机理以及故障的重新激活和变形。该方法完全夫妻以断层和矩阵的矩阵形式流动,并带有孔隙弹性矩阵变形和故障的接触力学模型,包括由于滑动而扩张。关键要素是在高度耦合的管理方程式中的故障和强大的非线性的高纵横比。使用我们的开源软件的示例模拟说明了直接和间接的液压故障重新激活以及相应的渗透性增强。虽然从概念上讲简单,但这些示例说明了在研究动力学时强大的水力力学耦合以及基于物理学的数值模型的前景。
Hydraulic stimulation of geothermal reservoirs in low-permeability basement and crystalline igneous rock can enhance permeability by reactivation and shear dilation of existing fractures. The process is characterized by interaction between fluid flow, deformation, and the fractured structure of the formation. The flow is highly affected by the fracture network, which in turn is deformed because of hydromechanical stress changes caused by the fluid injection. This process-structure interaction is decisive for the outcome of hydraulic stimulation, and, in analysis of governing mechanisms, physics-based modeling has potential to complement field and experimental data. Here, we show how recently developed simulation technology is a valuable tool to understand governing mechanisms of hydromechanical coupled processes and the reactivation and deformation of faults. The methodology fully couples flow in faults and matrix with poroelastic matrix deformation and a contact mechanics model for the faults, including dilation because of slip. Key elements are high aspect ratios of faults and strong nonlinearities in highly coupled governing equations. Example simulations using our open-source software illustrate direct and indirect hydraulic fault reactivation and corresponding permeability enhancement. While conceptually simple, the examples illustrate the strong hydromechanical couplings and the prospects of physics-based numerical models in investigating the dynamics.