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3D Simulation of Mixed-Mode Poroelastic Fracture Propagation for Reservoir Stimulation

机译:混合模式孔隙弹性裂缝扩展对油藏的3D模拟

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The paper presents three-dimensional numerical model for the multiple fracture propagation in the poroelastic reservoirs. The simulator model is developed based on the fully-coupled 3D poroelastic displacement discontinuity method for the hydro-mechanical response of the reservoir rocks and the linear elastic fracture mechanics for the fracture propagation. The reservoir rock mass is assumed homogenous and isotropic with constant poroelastic physical properties. The mixed-mode fracture propagation is analyzed using crack-tip opening displacement approach. Details of mathematical formulations and methodology for numerical implementation are presented first. Then, the numerical model is verified using analytical solution for a pressurized penny-shaped fracture. Finally, numerical examples for the fluid injection into a cluster of natural fractures and simultaneous propagation of pressurized multiple fractures in Westerly Granite are presented. The results demonstrate that along with the rock properties and the in-situ stress conditions, the "stress shadowing" effect which mainly depends on the spatial interval between the fractures plays a critical role in the multiple fracture propagation. Also, the simulation demonstrated that mixed-mode propagation can occur under influence of "stress shadowing".
机译:本文提出了多孔弹性储层中多重裂缝扩展的三维数值模型。基于全耦合3D孔隙弹性位移不连续性方法(用于储层岩石的水力响应)和线性弹性断裂力学(用于裂缝扩展),开发了仿真器模型。假定储层岩体是均质的,各向同性的,具有恒定的孔隙弹性物理特性。使用裂纹尖端开口位移方法分析了混合模式的裂纹扩展。首先介绍用于数字实现的数学公式和方法的详细信息。然后,使用解析解对加压的便士形裂缝进行了数值模型验证。最后,给出了将流体注入一簇天然裂缝并在Westerly Granite中同时传播多个受压裂缝的数值实例。结果表明,除了岩石特性和原地应力条件外,主要取决于裂缝之间的空间间隔的“应力遮蔽”效应在多重裂缝扩展中起着至关重要的作用。此外,仿真表明,在“应力阴影”的影响下可能会发生混合模式传播。

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