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首页> 外文期刊>Bulletin of the Seismological Society of America >Effects of Love waves on microtremor H/V ratio
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Effects of Love waves on microtremor H/V ratio

机译:爱波对微震H / V比的影响

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The horizontal-to-vertical (H/V) method has the potential to significantly contribute to site effects evaluation, in particular in urban areas. Within the European project, site effects assessment using ambient excitations (SESAME), we investigated the nature of ambient seismic noise in order to assess the reliability of this method. Through ID seismic noise modeling, we simulated ambient noise for a set of various horizontally stratified structures by computing efficiently the displacement and stress of dynamic Green's functions for a viscoelastic-layered half-space. We performed array analysis using the conventional semblance-based frequence-wavenumber method and the three-component modified spatial autocorrelation method on both vertical and horizontal components and estimated the contribution of different seismic waves (body/surface waves, Rayleigh/Love waves) at the H/V peak frequency. We show that the very common assumption that almost all the ambient noise energy would be carried by fundamental-mode Rayleigh waves is not justified. The relative proportion of different wave types depends on site conditions, and especially on the impedance contrast. For the ID horizontally layered structures presented here, the H/V peak frequency always provides a good estimate of the fundamental resonance frequency whatever the FIN peak origin (Rayleigh wave ellipticity, Airy phase of Love waves, S-wave resonance). We also infer that the relative proportion of Love waves in ambient noise controls the amplitude of the H/V peak.
机译:水平到垂直(H / V)方法有可能极大地促进场地效果评估,尤其是在城市地区。在欧洲项目中,使用环境激励(SESAME)进行场地影响评估,我们调查了环境地震噪声的性质,以评估该方法的可靠性。通过ID地震噪声建模,我们通过有效地计算粘弹性层半空间的动态格林函数的位移和应力,来模拟一组各种水平分层结构的环境噪声。我们使用传统的基于相似度的频率-波数方法和三分量改进的空间自相关方法对垂直和水平分量进行了阵列分析,并估计了不同地震波(体/面波,瑞利/洛夫波)的贡献。 H / V峰值频率。我们表明,几乎所有环境噪声能量都将由基本模式瑞利波携带的非常普遍的假设是没有道理的。不同波类型的相对比例取决于现场条件,尤其取决于阻抗对比。对于此处介绍的ID水平分层结构,无论FIN峰的起点如何(Rayleigh波椭圆率,Love波的Airy相位,S波谐振),H / V峰值频率始终可以很好地估计基本谐振频率。我们还可以推断出,爱波在环境噪声中的相对比例控制着H / V峰值的幅度。

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