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On the correlation of seismic microtremors

机译:地震微震的相关性

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We present results of the analysis of microtremor measurements using a small array. Our analysis is based on the computation of cross-correlation functions between stations in both frequency and time domains. We obtain similar results in both domains and link those results to the application of Aki's spatial autocorrelation method of using a single station pair and to recent studies that have shown that the Green's function between two stations can be retrieved from the temporal cross correlation of seismic noise. We show that the same simple subsoil structure allows interpretation of our correlation results in time and frequency. We observe both Love and Rayleigh waves; however, Love waves dominate the records in our lower-frequency range (between 3.6 and 6 Hz), while Rayleigh waves are prevalent in the records in our higher-frequency band (from 6 to 20 Hz). Frequency domain cross correlation yields better results in the lower-frequency range, while time domain cross correlation shows very clear results in the higher-frequency band. Thus both analyses are complementary. Our results show that ambient vibration recorded at the free surface includes different types of waves but that the correlation between any two stations is governed by the more stable propagation mode between them, surface waves in the case of a layered medium. Our results shed some light on the nature of microtremors and on the reasons why the spatial autocorrelation method or the horizontal-to-vertical spectral ratios are useful in geophysical and site response studies.
机译:我们介绍使用小阵列的微震测量分析的结果。我们的分析基于频域和时域中站点之间互相关函数的计算。我们在两个领域都获得了相似的结果,并将这些结果与使用单个站对的Aki空间自相关方法的应用以及最新研究表明,可以从地震噪声的时间互相关中检索到两个站之间的格林函数有关。 。我们表明,相同的简单地基结构可以在时间和频率上解释我们的相关结果。我们观察到爱波和瑞利波。然而,洛夫波在我们低频范围(3.6至6 Hz之间)中占主导地位,而瑞利波在我们更高频带(6至20 Hz)中则占主导地位。频域互相关在较低频率范围内产生更好的结果,而时域互相关在较高频带上显示非常清晰的结果。因此,这两种分析是互补的。我们的结果表明,在自由表面记录的环境振动包括不同类型的波,但是任何两个测站之间的相关性受它们之间更稳定的传播模式(在层状介质的情况下为表面波)控制。我们的研究结果揭示了微震的性质以及空间自相关方法或水平与垂直光谱之比在地球物理和现场响应研究中有用的原因。

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