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Surface-Wave Attenuation From Seismic Ambient Noise: Numerical Validation and Application

机译:地震环境噪声的表面波衰减:数值验证和应用

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摘要

We evaluate, by numerical tests, whether surface-wave attenuation can be determined from ambient-noise data. We generate synthetic recordings of numerically simulated ambient seismic noise in several experimental setups, characterized by different source distributions and different values of attenuation coefficient. We use them to verify that the source spectrum can be reconstructed from ambient recordings (provided that the density of sources and the attenuation coefficient are known) and that true attenuation can be retrieved from normalized cross correlations of synthetic signals. We then apply the so validated method to real continuous recordings from 33 broadband receivers distributed within the Colorado Plateau and Great Basin. A preliminary analysis of the signal-to-noise ratio as a function of azimuth reveals a SW-NE preferential directionality of the noise sources within the secondary microseism band (6-8 s), consistent with previous studies. By nonlinear inversion of noise data we find the attenuation coefficient in the area of interest to range from similar to 1 x 10(-5) m(-1) at 0.3 Hz to similar to 4.5 x 10(-7) m(-1) at 0.065 Hz, and confirm the statistical robustness of this estimate by means of a bootstrap analysis. The result is compatible with previous observations based on both earthquake-generated and ambient Rayleigh waves. In this regard, the method proves to be promising in accurately quantifying surface-wave attenuation at relatively high frequencies.
机译:通过数值试验,我们评估了能否从环境噪声数据中确定表面波衰减。我们在几个实验装置中生成了数值模拟环境地震噪声的合成记录,其特点是不同的震源分布和不同的衰减系数值。我们使用它们来验证源频谱可以从环境记录中重建(前提是源密度和衰减系数已知),真实衰减可以从合成信号的归一化互相关中恢复。然后,我们将经过验证的方法应用于分布在科罗拉多高原和大盆地的33个宽带接收器的真实连续记录。对信噪比随方位角变化的初步分析表明,二次微震带(6-8s)内噪声源具有西南-东北方向的优先方向性,这与之前的研究一致。通过对噪声数据进行非线性反演,我们发现感兴趣区域的衰减系数范围从0.3 Hz时的1 x 10(-5)m(-1)到0.065 Hz时的4.5 x 10(-7)m(-1),并通过自举分析确认该估计的统计稳健性。该结果与之前基于地震产生的瑞利波和环境瑞利波的观测结果一致。在这方面,该方法被证明在相对较高频率下准确量化表面波衰减方面是有希望的。

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