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Surface wave analysis: improving the accuracy of the shear-wave velocity profile through the efficient joint acquisition and Full Velocity Spectrum (FVS) analysis of Rayleigh and Love waves

机译:表面波分析:通过高效的联合采集和全速度谱(FVS)分析来提高剪力波速度谱的准确性,瑞利和爱情波

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摘要

Surface wave propagation can be exploited to investigate subsurface conditions in terms of shear wave velocities in a number of possible applications (geotechnical site characterisation, seismic-risk assessment, crustal studies and non-destructive testing). Nowadays, one of the most common methods adopted to analyse the dispersion of surface waves is based on the determination of the Rayleigh wave frequency-dependent phase velocities obtained from multichannel active data. The obtained values represent the dispersion curve, which is inverted to determine the vertical shear-wave velocity (V-S) profile. After briefly recalling some fundamental facts and problems regarding surface wave propagation and analysis, we present the Full Velocity Spectrum (FVS) approach which here is used to jointly invert the velocity spectra of the Rayleigh and Love waves acquired by means of a set of horizontal geophones only (Rayleigh waves are in fact analysed while considering their radial component). It is shown that for non-trivial data sets for which modal dispersion curves cannot be soundly extracted, the joint FVS approach may represent an efficient way to properly analyse the data, thus eventually obtaining a robust V-S profile free from significant ambiguities that would otherwise inevitably affect the results obtained by following the ordinary approach based on the modal dispersion curve(s) of just one component.
机译:可以利用表面波传播来研究许多可能的应用中的剪切波速度的地下条件(地理位置表征,地震风险评估,地壳研究和非破坏性测试)。如今,采用用于分析表面波的分散的最常见方法之一是基于从多通道活动数据获得的瑞利波频率相关相速度的确定。所获得的值表示分散曲线,其反转以确定垂直剪切波速度(V-S)轮廓。在简要回顾一些关于表面波传播和分析的一些基本事实和问题之后,我们介绍了这里的全速谱(FVS)方法,该方法用于共同反转通过一组水平地理位音获取的瑞利和爱波的速度谱仅限(瑞利波实际上在考虑其径向部件时分析)。结果表明,对于无法妥善提取模态色散曲线的非普通数据集,联合FVS方法可以代表正确分析数据的有效方法,从而最终获得稳健的VS配置文件,否则不可避免的显着歧义影响通过基于仅一个组分的模态色散曲线的普通方法获得的结果。

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