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Shear wave imaging from traffic noise using seismic interferometry by cross-coherence

机译:交叉相干地震干涉法对交通噪声进行剪切波成像

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We apply the cross-coherence method to the seismic interferometry of traffic noise, which originates from roads and railways, to retrieve both body waves and surface-waves. Our preferred algorithm in the presence of highly variable and strong additive random noise uses cross-coherence, which uses normalization by the spectral amplitude of each of the traces, rather than crosscorrelation or deconvolution. This normalization suppresses the influence of additive noise and overcomes problems resulting from amplitude variations among input traces. By using only the phase information and ignoring amplitude information, the method effectively removes the source signature from the extracted response and yields a stable structural reconstruction even in the presence of strong noise. This algorithm is particularly effective where the relative amplitude among the original traces is highly variable from trace to trace. We use the extracted, reflected shear waves from the traffic noise data to construct a stacked and migrated image, and we use the extracted surfacewaves (Love waves) to estimate the shear velocity as a function of depth. This profile agrees well with the interval velocity obtained from the normal moveout of the reflected shear waves constructed by seismic interferometry. These results are useful in a wide range of situations applicable to both geophysics and civil engineering.
机译:我们将交叉相干方法应用于交通噪声的地震干涉法中,该噪声源自公路和铁路,以同时获取体波和面波。在存在高度可变和强加性随机噪声的情况下,我们的首选算法使用互相干,该互相干通过每个迹线的频谱幅度进行归一化,而不是互相关或去卷积。这种归一化抑制了附加噪声的影响,并克服了由于输入迹线之间的幅度变化而引起的问题。通过仅使用相位信息而忽略幅度信息,该方法有效地从提取的响应中删除了源签名,即使在存在强噪声的情况下,也能产生稳定的结构重建。当原始迹线之间的相对幅度在迹线之间变化很大时,此算法特别有效。我们使用从交通噪声数据中提取的反射剪切波来构建堆叠和迁移的图像,并使用提取的表面波(Love波)来估计剪切速度与深度的关系。该轮廓与通过地震干涉法构造的反射剪切波的法向运动所获得的间隔速度非常吻合。这些结果在适用于地球物理学和土木工程的各种情况下都是有用的。

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