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The difference between horizontal-to-vertical spectra ratio and empirical transfer function as revealed by vertical arrays

机译:垂直阵列揭示的水平与垂直光谱之比与经验传递函数之间的差异

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摘要

The horizontal-to-vertical spectral ratio (HVSR) and empirical transfer function analyses were performed on the S-wave recordings from two vertical borehole strong motion arrays: the Garner Valley Downhole Array in southern California, and the KiK-net Ichinoseki-Nishi Vertical Array in West Ichinoseki, Japan. The results show that the discrepancy between the HVSR and the transfer function is mainly caused by the significant site response of the vertical component, thus, vertical incident P-waves are proposed to play an important role in the vertical amplification. The P-wave amplification is frequency-dependent. In the low-frequency range within f0 (the fundamental frequency of the site), the effect of the vertical P-wave amplification is slight, this is why HVSR and transfer function match in this frequency range. In the high-frequency range near 2 f0 or larger, the P-wave amplification is obvious, which maybe explain the discrepancy between the HVSR and the transfer function.
机译:在两个垂直井眼强运动阵列的S波记录中进行了水平-垂直频谱比(HVSR)和经验传递函数分析:加利福尼亚南部的Garner Valley井下阵列和KiK-net Ichinoseki-Nishi垂直井阵列在日本西部一关。结果表明,HVSR与传递函数之间的差异主要是由垂直分量的显着位点响应引起的,因此,提出垂直入射P波在垂直放大中起重要作用。 P波放大与频率有关。在f0(站点的基本频率)以内的低频范围内,垂直P波放大的影响很小,这就是为什么HVSR和传递函数在此频率范围内匹配的原因。在2 f0附近或更大的高频范围内,P波放大明显,这可以解释HVSR与传递函数之间的差异。

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