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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >A numerical model for fluid injection induced seismicity at Soultz-sous-Forets
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A numerical model for fluid injection induced seismicity at Soultz-sous-Forets

机译:Soultz-sous-Forets中流体注入引起地震活动的数值模型

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摘要

During fluid injection experiments at the geothermal site of Soultz-sous-Forets (France), more than 114,000 induced seismic events with magnitudes between -2.0 and + 2.9 were detected by a local downhole monitoring network. Of these, 35,039 events are sufficiently constrained to be located. Hypocenters align along a sub-vertical, planar structure with the apparent width being dominated by data scattering indicating that seismic activity predominantly occurs along a (pre-existing) larger scale fault structure. For this scenario, we present a numerical model to simulate hydraulic overpressures and induced seismicity during hydraulic injection. The numerical model is based on the physical processes of fluid pressure and stress diffusion with triggering of the induced seismicity being controlled by Coulomb friction. Even in its simplest form of a fault zone without any structural heterogeneity, the numerical model reproduces typical observations at Soultz-sous-Forets, such as number and magnitude of induced events, hypocenter locations (including the Kaiser effect), occurrence of post-injection seismicity, and the largest magnitude event occurring several days after shut-in.
机译:在法国Soultz-sous-Forets的地热站点进行的流体注入实验期间,当地的一个井下监测网络检测到114,000多处地震事件,震级在-2.0和+ 2.9之间。其中,充分限制了35,039个事件的位置。震源沿着亚垂直的平面结构排列,其表观宽度受数据散射支配,表明地震活动主要发生在(预先存在的)大型断层结构上。对于这种情况,我们提出了一个数值模型来模拟水力注入过程中的水力超压和诱发地震。数值模型基于流体压力和应力扩散的物理过程,而诱发的地震活动的触发由库仑摩擦控制。即使是最简单的断层带形式,也没有任何结构上的异质性,该数值模型仍能再现Soultz-sous-Forets的典型观测值,例如诱发事件的数量和大小,震源位置(包括Kaiser效应),注入后的发生地震活动,以及关闭后几天发生的最大地震事件。

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