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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Two-station continuous wavelet transform cross-coherence analysis for surface-wave tomography using active-source seismic data
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Two-station continuous wavelet transform cross-coherence analysis for surface-wave tomography using active-source seismic data

机译:使用主动源地震数据的表面波断层扫描的双站连续小波变换交叉相干性分析

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摘要

Surface-wave tomography has great potential to improve the lateral resolution of near-surface characterization compared to 2D surface-wave analysis with multichannel analysis of surface waves (MASW). Surface-wave tomography has been widely applied to obtain high-resolution maps of phase or group velocity from dispersion curves between pairs of stations in seismological studies. However, very few studies have done surface-wave tomography with active-source (exploration) seismic data, probably because extracting surface-wave dispersion curves between two stations is difficult due to the complex wave propagation in heterogeneous near-surface structures. Here, we describe a method to estimate reliable phase-velocity dispersion curves between two stations from exploration seismic data. In our approach, we compute cross coherences between pairs of stations to extract phase information, stacking the cross coherences from different shot gathers to improve the signal-to-noise ratio. To further distinguish surface-wave signals from noise in the time domain, we perform a time-frequency analysis using the continuous wavelet transform (CWT) on the stacked cross coherences. We used modeling of the wavelet transform between station pairs to extract phase-velocity dispersion curves from the stacked cross coherences. We apply this two-station CWT cross-coherence method to synthetic and field data sets. Both applications demonstrate that our method can extract stable phase-velocity dispersion curves between two stations better than two-station or multistation analysis without time-domain filtering. In phase-velocity distributions constructed by surface-wave tomography from the dispersion curves between two stations, the horizontal resolution is improved over MASW-based analyses. Improvement of the horizontal resolution is also achieved in S-wave velocity structures derived by inversion of the phase-velocity distributions. Our method is effective in estimating reliable phase-velocity dispersion curves and may contribute to constructing high-resolution S-wave velocity models located with a laterally heterogeneous structure, by subsequent surface-wave tomography and S-wave velocity inversion.
机译:与具有多通道分析(MasW)的多通道分析相比,表面波断层扫描具有巨大的潜力,提高近表面表征的横向分辨率。已经广泛应用了表面波层析造影以获得从地震研究成对站之间的色散曲线获得高分辨率映射或群体速度。然而,很少有研究具有具有主动源(勘探)地震数据的表面波断层扫描,可能是因为由于异构近表面结构中的复杂波传播,两个站之间的表面波色散曲线难以困难。这里,我们描述了一种估计来自勘探地震数据的两个站之间的可靠的相位速度色散曲线的方法。在我们的方法中,我们在对站的成对站之间计算交叉相干,以提取相位信息,从不同的镜头中堆叠交叉一致性以提高信噪比。为了进一步区分从时域中的噪声的表面波信号,我们使用堆叠的交叉相合上的连续小波变换(CWT)执行时频分析。我们使用了站对之间的小波变换的建模,以从堆叠的交叉相处提取相位速度色散曲线。我们将这两个站CWT交叉相干方法应用于合成和现场数据集。这两个应用都表明,我们的方法可以在两个站之间提取稳定的相位速度色散曲线,而不是在没有时域滤波的情况下更好地提取两个站点或多级分析。在由两个站之间的色散曲线构造的由表面波层析术构造的相位速度分布中,水平分辨率得到了基于MASW的分析。在通过相位速度分布的反转来源的S波速度结构中还可以实现水平分辨率的改进。我们的方法在估计可靠的相位速度色散曲线方面是有效的,并且可以通过随后的表面波断层扫描和S波速度反转构建位于横向异质结构的高分辨率S波速度模型。

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