首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >InSAR observations of aseismic slip associated with an earthquake swarm in the Columbia River flood basalts
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InSAR observations of aseismic slip associated with an earthquake swarm in the Columbia River flood basalts

机译:InSAR观测到与哥伦比亚河洪水玄武岩中的地震群有关的地震滑动

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In 2009 a swarm of small shallow earthquakes occurred within the basalt flows of the Columbia River Basalt Group (CRBG). The swarm occurred within a dense seismic network in the U.S. Department of Energy’s Hanford Site. Data from the seismic network along with interferometric synthetic aperture radar (InSAR) data from the European Space Agency’s (ESA) ENVISAT satellite provide insight into the nature of the swarm. By modeling the InSAR deformation data we constructed a model that consists of a shallow thrust fault and a near horizontal fault. We suggest that the near horizontal lying fault is a bedding-plane fault located between basalt flows. The geodetic moment of the modeled fault system is about eight times the cumulative seismic moment of the swarm. Precise location estimates of the swarm earthquakes indicate that the area of highest slip on the thrust fault, ~70 mm of slip less than ~0.5 km depth, was not located within the swarm cluster. Most of the slip on the faults appears to have progressed aseismically and we suggest that interbed sediments play a central role in the slip process.
机译:2009年,哥伦比亚河玄武岩群(CRBG)的玄武岩流中发生了一群小型浅层地震。该群发生在美国能源部汉福德基地密集的地震网络内。来自地震网络的数据,以及来自欧洲航天局(ESA)ENVISAT卫星的干涉合成孔径雷达(InSAR)数据,可以让人们深入了解群的性质。通过对InSAR变形数据建模,我们构建了一个由浅推力断层和近水平断层组成的模型。我们认为近水平断层是玄武岩流之间的层理面断层。建模断层系统的大地矩大约是群的累积地震矩的八倍。群体地震的精确定位估计表明,在冲断层上最大的滑动区域,即滑动深度小于〜0.5 km的〜70 mm滑动区域,并未位于该集群中。断层上的大部分滑动似乎是抗震性的,我们认为夹层沉积物在滑动过程中起着核心作用。

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