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Ambient noise cross-correlation observations of fundamental and higher-mode Rayleigh wave propagation governed by basement resonance

机译:基本谐振治理的基本噪声横相关观察的环境噪声横相关观察

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摘要

Measurement of basement seismic resonance frequencies can elucidate shallow velocity structure, an important factor in earthquake hazard estimation. Ambient noise cross correlation, which is well-suited to studying shallow earth structure, is commonly used to analyze fundamental-mode Rayleigh waves and, increasingly, Love waves. Here we show via multicomponent ambient noise cross correlation that the basement resonance frequency in the Canterbury region of New Zealand can be straightforwardly determined based on the horizontal to vertical amplitude ratio (H/V ratio) of the first higher-mode Rayleigh waves. At periods of 1–3 s, the first higher-mode is evident on the radial-radial cross-correlation functions but almost absent in the vertical-vertical cross-correlation functions, implying longitudinal motion and a high H/V ratio. A one-dimensional regional velocity model incorporating a ~ 1.5 km-thick sedimentary layer fits both the observed H/V ratio and Rayleigh wave group velocity. Similar analysis may enable resonance characteristics of other sedimentary basins to be determined.
机译:地下地震共振频率的测量可以阐明浅层速度结构,这是估计地震危险性的重要因素。环境噪声互相关非常适合研究浅层地球结构,通常用于分析基模瑞利波以及越来越多的洛夫波。在这里,我们显示出通过多分量环境噪声互相关,可以基于第一个高模瑞利波的水平与垂直振幅比(H / V比)直接确定新西兰坎特伯雷地区的基底共振频率。在1到3 s的周期内,第一个较高模在径向-径向互相关函数中很明显,但在垂直-垂直互相关函数中几乎不存在,这意味着纵向运动和高H / V比。包含约1.5 km厚沉积层的一维区域速度模型既符合观测的H / V比率,也符合瑞利波群速度。相似的分析可以确定其他沉积盆地的共振特征。

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