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Horizontal-to-vertical spectral ratio of S-waves and SH-wave transfer functions at the vertical seismic and strong-motion arrays in the Central United States

机译:S-Waves和SH波传输功能在美国中部垂直地震和强运动阵列的S-Waves和SH波传输功能的横向垂直光谱比

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Spectral analyses were performed on S-waves of earthquake recordings from two vertical seismic and strong-motion arrays in the central United States to obtain horizontal-to-vertical spectral ratios (HVSR) and transfer functions. Spectral analyses were also performed on ambient noises to obtain HVSRs at both sites. Theoretical SH-wave transfer functions were obtained using Thomson-Haskell propagation matrices and soil profiles at both sites. The results demonstrate that the S-wave HVSR is similar to the observed and theoretical SH-wave transfer functions in terms of peak frequencies up to the fifth mode. In other words, the S-wave HVSR could be used as an empirical SH-wave transfer function and provide in situ constraints on the shear-wave velocity structure of soils at these sites. The results also demonstrate that the ambient-noise HVSR is different from the S-wave HVSR and SH-wave transfer functions of the soils. Thus, the ambient-noise HVSR is not applicable for characterizing earthquake ground-motion site-effect, as well as determining the shear-wave velocity structure. (C) 2018 Elsevier B.V. All rights reserved.
机译:在来自美国中部两种垂直地震和强运动阵列的地震记录的S波上进行光谱分析,以获得水平到垂直的谱比(HVSR)和传递函数。还对环境噪声进行光谱分析,以在两个站点获得HVSR。在两个站点的托姆森 - Haskell传播矩阵和土壤分布获得理论SH波转移函数。结果表明,在第五模式的峰值频率方面,S波HVSR类似于观察到的和理论的SH波传递函数。换句话说,S波HVSR可以用作经验SH波传递函数,并在这些位点的土壤的剪切波速度结构上提供原位约束。结果还表明环境噪声HVSR与土壤的S波HVSR和SH波转移功能不同。因此,环境噪声HVSR不适用于表征地震地面运动站点效应,以及确定剪切波速度结构。 (c)2018 Elsevier B.v.保留所有权利。

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