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Change of stress regime during geothermal reservoir stimulation

机译:地热储层增产过程中应力状态的变化

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Earthquakes are induced by man-made changes of the stress field by injection or withdrawal of fluids in hydrocarbon production, geothermal exploitation, and wastewater disposal. However, the actual perturbation of the stress field and stress release by injection-induced seismicity remains largely unknown. We provide evidence for currently not understood hydromechanical processes after shut-in of the well. We invert earthquake focal mechanisms from a massive stimulation to invert for stress resolved in time and depth to obtain changes of the stress orientation and magnitude. Prior information about fracture orientations from well logs is taken into account. Comparison with independent stress measures reveals that stresses obtained from inversion of fluid-induced seismicity are highly perturbed and not representative of the initial stress field. The horizontal stresses change by tens of megapascals, turning the stress regime from transitional normal faulting/strike-slip faulting to pure normal faulting. The observed stress changes are attributed to large-scale aseismic deformation.
机译:地震是由于在烃生产,地热开采和废水处理中注入或抽出流体而引起的应力场的人为改变引起的。然而,由注入引起的地震作用引起的应力场的实际扰动和应力释放仍然是未知的。我们为关闭井后目前尚不了解的水力机械过程提供了证据。我们将地震震源机制从大规模刺激中转化为时间和深度上已分解的应力,从而获得应力方向和强度的变化。考虑了来自测井的关于裂缝取向的先前信息。与独立应力测量的比较表明,从流体诱发的地震活动反演中获得的应力受到高度扰动,并不代表初始应力场。水平应力变化数十兆帕斯卡,使应力状态从过渡正断层/走滑断层转变为纯正断层。观察到的应力变化归因于大规模抗震变形。

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