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Numerical modeling of seismicity induced by fluid injection in naturally fractured reservoirs

机译:天然裂缝性油藏注水诱发地震活动的数值模拟

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The interaction between hydraulic and natural fractures is of great interest for the energy resource industry because natural fractures can significantly influence the overall geometry and effectiveness of hydraulic fractures. Microseismic monitoring provides a unique tool to monitor the evolution of fracturing around the treated rock reservoir, and seismic source mechanisms can yield information about the nature of deformation. We performed a numerical modeling s t u d y u s i n g a 2D distinct-element particle flow code (PFC~(2D)) to simulate realist i c conditions and increase understanding of fracturing mechanisms in naturally fractured reservoirs, through comparisons with results of the geometry of hydraulic fractures and seismic source information (locations, magnitudes, and mechanisms) from both laboratory experiments and field observations. A suite of numerical models with f u l l y dynamic and hydromechanical coupling was used to examine the interaction between natural and induced fractures, the effect of orientation of a preexisting fracture, the influence of differential stress, and the relationship between the fluid front, fracture tip, and induced seismicity. The numerical results qualitatively agree with the laboratory and field observations, and suggest possible mechanics for new fracture development and their interaction with a natural fracture (e.g., a tectonic fault). Therefore, the tested model could help in investigating the potential extent of induced fracturing in naturally fractured reservoirs, and in interpreting microseismic monitoring results to assess the effectiveness of a hydraulic fracturing project.
机译:水力裂缝和自然裂缝之间的相互作用对于能源行业非常重要,因为自然裂缝会显着影响水力裂缝的整体几何形状和有效性。微地震监测提供了一种独特的工具,可监测已处理岩石储层周围裂缝的演化,地震源机制可提供有关变形性质的信息。我们通过与水力压裂的几何结果和震源信息进行比较,使用二维离散元素颗粒流代码(PFC〜(2D))进行了数值建模研究,以模拟现实条件并加深对天然裂缝性油藏压裂机理的了解。 (位置,大小和机制)来自实验室实验和现场观察。使用一套具有完全动态和流体力学耦合的数值模型来检查天然裂缝和诱发裂缝之间的相互作用,既有裂缝的取向的影响,压差的影响以及流体前沿,裂缝尖端和流体之间的关系。诱发地震。数值结果在质量上与实验室和现场观察相符,并提出了新的裂缝发展及其与天然裂缝(例如构造断裂)相互作用的可能机理。因此,测试模型可以帮助调查自然裂缝储层中诱发压裂的潜在程度,并有助于解释微震监测结果以评估水力压裂项目的有效性。

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