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Site amplifications and the effect on local magnitude determination at stations of the surface-downhole network in Taiwan

机译:台湾地表-井下网络站点的站点放大及其对局部震级确定的影响

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This study analyzed site effects including PGA and empirical transfer functions at 15 selected surface-downhole stations by using ground motion recordings of earthquakes with M-L > 4 during 2012 and 2013 in Taiwan. In addition, we used all strong motion recordings of four large earthquakes (M-L > 6) to generate intensity distribution maps and assess the differences in magnitude at the surface and downhole. The site amplification factors of the PGA were calculated using the ratio between the surface and downhole recordings. The mean PGA amplification factors ranged from 2 to an exaggerated value of 20 at different stations. In addition, the power law relationships between the PGAs at the surface and downhole were evaluated to understand how amplification varies as PGA increases. Strong ground motions with and without site effects throughout Taiwan could be observed by comparing intensity distribution maps generated using the surface and downhole accelerations from four large earthquakes with magnitudes > 6. Empirical transfer functions derived using the single-station and two-station methods at the same stations showed comparable dominant frequencies and amplification factors; however, the empirical transfer function derived using the two-station method showed clearer resonance peaks, not only at fundamental frequencies but also at higher mode resonance frequencies. The HHSR and the HVSR were highly similar, particularly at medium frequencies. This finding indicates that the HVSR can be used instead of the HHSR when only the surface recording is available. Moreover, the local magnitudes calculated using surface recordings were higher than those calculated using downhole recordings. The differences are attributed to the amplification caused by the sedimentary layers and resultant in 0.36, 0.46 and 0.49 on average for events with M-L of > 6, 5-6, and 4-5. Furthermore, HHSRs at 5-10 Hz and 1.1-1.7 Hz were strongly correlated with PGA amplifications and M-L differences, respectively.
机译:本研究通过使用2012年和2013年台湾M-L> 4地震的地面运动记录,分析了15个选定的地面井下站的现场影响,包括PGA和经验传递函数。此外,我们使用了四次大地震(M-L> 6)的所有强运动记录来生成强度分布图,并评估了地表和井下震级的差异。使用地面和井下记录之间的比率来计算PGA的位点放大因子。在不同站点,平均PGA放大因子的范围从2到20的夸大值。此外,对地面和井下PGA之间的幂律关系进行了评估,以了解随着PGA的增加,放大率如何变化。可以通过比较使用四个强度大于6的大地震的地表和井下加速度生成的强度分布图来观察整个台湾有无场地影响的强烈地面运动。在该位置使用单站和两站方法得出的经验传递函数同一台站显示出相当的主频和放大因子;然而,使用两站法得出的经验传递函数不仅在基本频率而且在较高模式的共振频率下也显示出更清晰的共振峰。 HHSR和HVSR非常相似,尤其是在中等频率下。该发现表明,仅表面记录可用时,可以使用HVSR代替HHSR。此外,使用地面记录计算的局部震级高于使用井下记录计算的局部震级。差异归因于沉积层引起的放大作用,对于M-L> 6、5-6和4-5的事件,平均结果为0.36、0.46和0.49。此外,5-10 Hz和1.1-1.7 Hz的HHSR分别与PGA扩增和M-L差异密切相关。

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