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Controlling fluid-induced seismicity during a 6.1-km-deep geothermal stimulation in Finland

机译:在芬兰6.1公里深的地热增产过程中控制流体诱发的地震活动

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We show that near–real-time seismic monitoring of fluid injection allowed control of induced earthquakes during the stimulation of a 6.1-km-deep geothermal well near Helsinki, Finland. A total of 18,160 msup3/sup of fresh water was pumped into crystalline rocks over 49 days in June to July 2018. Seismic monitoring was performed with a 24-station borehole seismometer network. Using near–real-time information on induced-earthquake rates, locations, magnitudes, and evolution of seismic and hydraulic energy, pumping was either stopped or varied—in the latter case, between well-head pressures of 60 and 90 MPa and flow rates of 400 and 800 liters/min. This procedure avoided the nucleation of a project-stopping magnitude MsubW/sub 2.0 induced earthquake, a limit set by local authorities. Our results suggest a possible physics-based approach to controlling stimulation-induced seismicity in geothermal projects.
机译:我们显示,对流体注入进行近实时地震监测可以控制在芬兰赫尔辛基附近6.1公里深的地热井的增产过程中的诱发地震。在2018年6月至2018年7月的49天内,总共将18,160 m 3 淡水泵入了晶体岩中。使用24站钻孔地震仪网络进行了地震监测。利用有关地震发生率,位置,震级以及地震和水力能的演变的近实时信息,泵被停止或改变了(在后一种情况下,在井口压力为60和90 MPa与流量之间) 400和800升/分钟该程序避免了由地方当局设定的极限M W 2.0诱发地震的成核作用。我们的结果提出了一种可能的基于物理的方法来控制地热项目中的增产引起的地震活动。

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