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Influence of continental margin on regional seismic wavefield

机译:大陆边缘对区域地震波场的影响

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Regional seismic analysis is an only way to investigate the source properties of small or moderate-sized seismic events that occur in physically unaccessible regions such as oceanic regions and politically-prohibited regions. The ground motions by earthquakes need to be understood for better mitigation of seismic hazards particularly in continental margins that often incorporate high seismicity. It has not been fully understood how seismic waves interact with complex crustal structures in continental margins. Responses of regional waves to complex crustal structures need to be quantified. Analysis of regional waveforms from controlled sources is desirable for investigation of influence of crustal structures. The influence of continental margin around the Korean Peninsula is investigated in terms of spectral contents, horizontal-to-vertical (H/V) spectral ratios and quality factors using regional waveforms for the 2009 North Korean underground nuclear explosion test that was well recorded by stations in the southern Korean Peninsula. Regional waveforms and spectral amplitudes vary significantly by path. Spectral contents of regional phases are different among stations in common great-circle directions. All regional phases modulate highly in continental margins. Path-dependent seismic attenuation is strong in low frequencies (<= 3 Hz), and weak in high frequencies (>3 Hz). Continental margins cause directional energy partition of regional waves depending on the path. Regional waves attenuate highly in passage across continental margin, and then regrow on continental paths. The growth rate is stronger than inherent attenuation rate, causing seismic amplification. The shapes of H/V ratios are similar among various regional phases at common stations. On the other hand, the H/V ratios for common phases vary by station in the same azimuths. Characteristic differences in H/V ratios between two horizontal components suggest directional partition of seismic energy by crustal structures in the paths. (C) 2013 Elsevier B.V. All rights reserved.
机译:区域地震分析是调查在物理上无法访问的区域(如海洋区域和政治禁区)发生的中小型地震事件的震源特性的唯一方法。为了更好地减轻地震危险,需要了解地震的地震动,尤其是在经常合并有高地震活动性的大陆边缘。尚未充分了解地震波如何与大陆边缘的复杂地壳结构相互作用。区域波对复杂地壳结构的响应需要量化。对于研究地壳结构的影响,需要分析来自受控源的区域波形。使用由各站很好记录的2009年朝鲜地下核爆炸试验的区域波形,根据光谱内容,水平-垂直(H / V)光谱比和品质因数研究了朝鲜半岛周围的大陆边缘的影响。在朝鲜半岛南部。区域波形和频谱幅度因路径而异。各站在共同的大圆方向上区域相的频谱内容是不同的。所有区域阶段在大陆边缘高度调节。与路径有关的地震衰减在低频(<= 3 Hz)中较强,而在高频(> 3 Hz)中较弱。大陆边缘会根据路径导致区域波的定向能量分配。区域波在穿过大陆边缘的过程中会高度衰减,然后在大陆路径上重新生长。增长速度强于固有衰减速度,导致地震放大。 H / V比的形状在公共站点的各个区域阶段之间相似。另一方面,相同相位的H / V比随站的方位角而变化。两个水平分量之间的H / V比的特征差异表明,地震能量通过路径中的地壳结构进行定向分配。 (C)2013 Elsevier B.V.保留所有权利。

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