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Seismic Imaging and Seismicity Analysis in Beijing-Tianjin-Tangshan Region

机译:京津唐地区地震成像与地震分析

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摘要

In this study a new tomographic method is applied to over 43,400 high-quality absolute direct P arrival times and 200,660 relative P arrival times to determine detailed 3D crustal velocity structures as well as the absolute and relative hypocenter parameters of 2809 seismic events under the Beijing-Tianjin-Tangshan region. The inferred velocity model of the upper crust correlates well with the surface geological and topographic features in the BTT region. In the North China Basin, the depression and uplift areas are imaged as slow and fast velocities, respectively. After relocation, the double-difference tomography method provides a sharp picture of the seismicity in the BTT region, which is concentrated along with the major faults. A broad low-velocity anomaly exists in Tangshan and surrounding area from 20 km down to 30 km depth. Our results suggest that the top boundary of low-velocity anomalies is at about 25.4 km depth. The event relocations inverted from double-difference tomography are dusted tightly along the Tangshan-Dacheng Fault and form three clusters on the vertical slice. The maximum focal depth after relocation is about 25 km depth in the Tangshan area.
机译:在这项研究中,将一种新的层析成像方法应用于43,400多个高质量的绝对直接P到达时间和200,660个相对P到达时间,以确定详细的3D地壳速度结构以及北京-北京期间2809次地震事件的绝对和相对震源参数。天津-唐山地区。推断的上地壳速度模型与BTT区域的表面地质和地形特征密切相关。在华北盆地,凹陷和隆起区分别以慢速和快速成像。搬迁后,双差断层扫描方法提供了BTT地区地震活动的清晰图像,该图像集中于主要断层。唐山及周边地区从20 km到30 km深度存在广泛的低速异常。我们的结果表明,低速异常的顶部边界在大约25.4 km深度处。从双差断层扫描反转的事件重定位沿唐山-大成断裂带被紧密地粉尘化,并在垂直切片上形成三个簇。唐山地区搬迁后的最大焦深约为25 km。

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