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首页> 外文期刊>Bulletin of the Seismological Society of America >Applicability of Theoretical Horizontal-to-Vertical Ratio of Microtremors Based on the Diffuse Field Concept to Previously Observed Data
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Applicability of Theoretical Horizontal-to-Vertical Ratio of Microtremors Based on the Diffuse Field Concept to Previously Observed Data

机译:基于弥散场概念的微震理论纵横比对先前观测数据的适用性

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摘要

Horizontal-to-vertical spectral ratios of microtremors (MHVRs) have been interpreted as representing either the Rayleigh-wave ellipticity or the amplitude ratio of the sum of Rayleigh and Love waves in a horizontally layered structure. However, based on the recently established diffuse field concept, the theoretical form of MHVR has been proposed to be the square root of the ratio between the imaginary part of the horizontal Green's function on the surface and that of the vertical one. The theory assumes that the energy of a wavefield inside the earth will be equipartitioned among the various states in 3D space. In the case of microtremors, this may occur for randomly applied point-force loadings on the surface after sufficient lapse time to allow multiple scattering. Recent works on diffuse fields suggest that equipartition may arise in several ways, but understanding the emergence of equipartition in realistic settings requires further scrutiny. In the meantime, the resulting formula is quite simple, and its meaning has theoretical support from deterministic exact solutions. As references, we use observed microtremor data from several sites that were reported previously and validate the diffuse field method (DFM) as an alternative method to explain observed MHVR. We use only sites with reliable velocity structures to compare different methods quantitatively. As a result, we found that the DFM solutions with the corresponding 1D layered structures well explain the observed MHVRs for most of the sites. Thus, we believe that MHVR can be used to invert a 1D velocity structure by using DFM as a theoretical tool.
机译:微震(MHVR)的水平与垂直光谱之比已被解释为代表水平层状结构中的瑞利波椭圆率或瑞利波与洛夫波之和的振幅比。然而,基于最近建立的扩散场概念,已提出MHVR的理论形式是表面上水平格林函数的虚部与垂直格林函数的虚部之比的平方根。该理论假设地球内部波场的能量将在3D空间中的各个状态之间平均分配。对于微震,在经过足够的时间以允许多次散射之后,表面上随机施加的点力载荷可能会发生这种情况。关于扩散场的最新研究表明,均分可能会以几种方式出现,但要了解现实环境中均分的出现,还需要进一步研究。同时,所得公式非常简单,其含义得到了确定性精确解的理论支持。作为参考,我们使用了先前报告的多个站点的观测到的微震数据,并验证了扩散场法(DFM)作为解释观测到的MHVR的替代方法。我们仅使用速度结构可靠的站点来定量比较不同的方法。结果,我们发现具有相应一维分层结构的DFM解决方案很好地解释了大多数站点观察到的MHVR。因此,我们相信通过使用DFM作为理论工具,MHVR可以用于反转一维速度结构。

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