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Imaging the shallow crust with local and regional earthquake tomography

机译:用局部和区域地震层析成像成像浅层地壳

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While active-source imaging (seismic reflection, refraction) is typically used to image the shallow crust, these techniques tend to suffer from energy penetration problems in complex tectonic regimes, resulting in poor imaging. Further, active sources (such as air guns or vibroseis) tend to be band limited, resulting in poor signal-to-noise ratio at low frequencies (1-10 Hz). Recent studies suggest that earthquake data may be able to solve these imaging problems. However, conventional earthquake tomography typically aims to image the upper mantle and lithosphere, where typical station spacing (tens of km) and array aperture (hundreds of km) have resulted in the maximum resolution. In this study, we take advantage of the small-scale and 250 m station spacing of the LaBarge Passive Seismic Experiment to determine whether local and regional earthquake tomographies can be used to constrain structure in the top 5 km of the crust. We also study how the inclusion of finite-frequency effects impacts the final images. Our results indicate that local and regional events provide substantial improvements over teleseismic events alone, with approximately 500 m resolution both vertically and laterally in the upper most 5 km. We also find that inclusion of finite-frequency data between 1 and 10 Hz plays a key role in maintaining resolution in the shallowest portion of the model.
机译:尽管通常使用有源源成像(地震反射,折射)来成像浅层地壳,但是这些技术在复杂的构造条件下往往会遇到能量渗透问题,从而导致成像效果不佳。此外,有源源(例如气枪或震动发生器)往往受到频带限制,从而导致在低频(1-10 Hz)下较差的信噪比。最近的研究表明,地震数据可能能够解决这些成像问题。但是,传统的地震层析成像通常旨在对上地幔和岩石圈成像,其中典型的测站间距(数十公里)和阵列孔径(数百公里)导致了最大的分辨率。在这项研究中,我们利用LaBarge被动地震实验的小规模和250 m的站距来确定是否可以使用局部和区域地震层析成像来约束地壳顶部5 km。我们还研究了有限频率效应的影响如何影响最终图像。我们的结果表明,局部和区域性事件比仅地震事件提供了实质性的改进,在最高5 km的垂直和横向分辨率约为500 m。我们还发现,包含1到10 Hz之间的有限频率数据在维持模型最浅部分的分辨率中起着关键作用。

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