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Injection-induced surface deformation and seismicity at the Hellisheidi geothermal field, Iceland

机译:冰岛Hellisheidi地热田注入引起的地表变形和地震活动

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摘要

Induced seismicity is often associated with fluid injection but only rarely linked to surface deformation. At the Hellisheidi geothermal power plant in south-west Iceland we observe up to 2 cm of surface displacements during 2011-2012, indicating expansion of the crust. The displacements occurred at the same time as a strong increase in seismicity was detected and coincide with the initial phase of geothermal wastewater reinjection at Hellisheidi. Reinjection started on September 1, 2011 with a flow rate of around 500 kg/s. Micro-seismicity increased immediately in the area north of the injection sites, with the largest seismic events in the sequence being two M4 earthquakes on October 15, 2011. Semi-continuous GPS sites installed on October 15 and 17, and on November 2, 2011 reveal a transient signal which indicates that most of the deformation occurred in the first months after the start of the injection. The surface deformation is evident in ascending TerraSAR-X data covering June 2011 to May 2012 as well. We use an inverse modeling approach and simulate both the InSAR and GPS data to find the most plausible cause of the deformation signal, investigating how surface deformation, seismicity and fluid injection may be connected to each other. We argue that fluid injection caused an increase in pore pressure which resulted in increased seismicity and fault slip. Both pore pressure increase and fault slip contribute to the surface deformation. (C) 2018 The Authors. Published by Elsevier B.V.
机译:诱发地震通常与流体注入有关,但很少与表面变形有关。在冰岛西南部的Hellisheidi地热发电厂,我们观察到2011-2012年间地表位移高达2 cm,表明地壳膨胀。位移发生在检测到地震活动强烈增加的同时,并且与Hellisheidi地热废水回注的初始阶段一致。回注于2011年9月1日开始,流速约为500 kg / s。注入点以北地区的微地震立即增加,顺序最大的地震事件是2011年10月15日发生两次M4地震。半连续GPS站点分别于10月15日和17日以及2011年11月2日安装揭示了一个瞬态信号,该信号表明大多数变形发生在注射开始后的头几个月。从2011年6月至2012年5月的TerraSAR-X数据上升,表面变形也很明显。我们使用逆建模方法,对InSAR和GPS数据进行仿真,以找出造成形变信号的最可能原因,从而研究表面形变,地震活动性和流体注入之间如何相互联系。我们认为流体注入导致孔隙压力增加,从而导致地震活动性和断层滑动增加。孔隙压力的增加和断层滑动都有助于表面变形。 (C)2018作者。由Elsevier B.V.发布

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