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首页> 外文期刊>Journal of Volcanology and Geothermal Research2012V243-244NOCT,15 >Seismicity of the Hengill area, SW Iceland: Details revealed by catalog relocation and collapsing
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Seismicity of the Hengill area, SW Iceland: Details revealed by catalog relocation and collapsing

机译:SW冰岛的Hengill地区的地震性:目录搬迁和崩溃揭示的详细信息

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The spatial distribution of seismicity in the Hengill region, SW Iceland, is analyzed by relocation and collapsing. The Hengill region is a diffuse triple junction with volcano-tectonic activity associated with rifting, tectonic activity on a transecting transform and induced seismicity due to drilling and injection of fluid into geothermal fields. The Icelandic Meteorological Office has compiled 114,000 events over a 20-year period within an area of approximately 600 km(2). The events in their catalog are relocated by application of empirical travel-time tables using a non-linear location strategy. The relocations are then redone applying a Bayesian inversion using the catalog event density as a prior. Finally, they are collapsed using the same catalog density as an attractor. We show that this catalog processing reproduces details of the spatial pattern of seismicity that independently emerges from relative relocations of a small subset of the catalog events (swarm activity). In particular, the predominant faulting orientations are reproduced in different parts of the region and the depth distribution of events resembles that obtained by dense deployments in the area. Its depth extent varies between 5 and 7 km in the northern part of the region, where volcanic processes dominate, and between 7 and 8 km in the southern part, where tectonic deformation is predominant. Induced seismicity is shallower than adjacent natural seismicity. An intriguing lineation emerges in the lateral distribution of inferred depth to the brittle-ductile transition in the northern volcanic part of the region, which is parallel to the strike of the fissure swarms in the area. Associating this transition with an isotherm (650 degrees C), the Hengill volcanic system and its fissure swarm appear to be considerably cooler than the Hromundartindur system. This may relate to a recent intrusion into the latter or more efficient cooling in the Hengill fissure swarm due to deeper penetrating permeability. In both cases this has potential consequences for geothermal exploitation in the area. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过搬迁和崩溃,分析了SW冰岛的Hengill Region地震性的空间分布。 Hengill区域是弥漫性三交界处,其具有与蒸馏,构造活性相关的压缩变换的构造活性,并且由于钻孔和注入地热场而引起的抗震性。冰岛气象办公室已在大约600公里的面积内汇编了114,000次,在20年期间,约600公里(2)。他们目录中的事件通过使用非线性位置策略应用经验行进时间表来重新定位。然后,重新定位重做使用目录事件密度作为先前应用贝叶斯反演。最后,它们使用与吸引子相同的目录密度折叠。我们表明,该目录处理再现地震性的空间模式的细节,其独立地从目录事件(群活动)的小子集的相对迁移中出现。特别地,在区域的不同部分中再现主要断层取向,并且事件的深度分布类似于该区域中的密集部署获得的。其深度范围在该地区的北部5到7公里之间,其中火山过程占主导地位,南部7到8公里,其中构造变形是主要的。诱导的地震性比邻近的自然地震性浅。在该地区的北部火山部分的脆性延性过渡的推断深度的横向分布中出现了一种有趣的基础eation,这与该地区的裂缝群的撞击平行。将这种过渡与等温(650摄氏度)相关联,Hengill火山系统及其裂缝群似乎比HROMUNDARTINDUR系统更加冷却。这可能与最近的侵扰到后者或更有效的冷却,因为渗透渗透性更深。在这两种情况下,这对该地区的地热剥削具有潜在的影响。 (c)2019 Elsevier B.v.保留所有权利。

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