首页> 外文期刊>Bulletin of the Seismological Society of America >REFLECTION AND TRANSMISSION OF SURFACE WAVES AT A VERTICAL DISCONTINUITY AND IMAGING OF LATERAL HETEROGENEITY USING REFLECTED FUNDAMENTAL RAYLEIGH WAVES
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REFLECTION AND TRANSMISSION OF SURFACE WAVES AT A VERTICAL DISCONTINUITY AND IMAGING OF LATERAL HETEROGENEITY USING REFLECTED FUNDAMENTAL RAYLEIGH WAVES

机译:垂直间断的表面波的反射和透射,以及使用反射的基波瑞利波成像的横向非均质性

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摘要

We present a technique for the determination of approximate reflection and transmission coefficients of surface-wave modes for a vertical plane discontinuity that is simple to use, It is applied to different models of lateral heterogeneity. Furthermore, a method for the localization of lateral heterogeneity using the coda of the fundamental Rayleigh mode is proposed. In particular, the frequency content of surface waves enables the investigation of the lower crust and the uppermost mantle, Lateral changes of the S-wave velocity, density, and P-wave velocity lead to the formation of the coda of the fundamental Rayleigh mode that contains delayed surface waves that reach the recording station indirectly. The complicated structure of the coda makes it impossible to identify reflected surface waves visually using a small number of recordings only, Coda waveforms of a large number of source-station pairs are inverted simultaneously for experimental reflection coefficients. The method is successfully tested using an ultrasonic model experiment, Finally, it is applied to Central Europe and especially to the Tornquist zone (TZ), mainly using records of the German Regional Seismological Network (GRSN). The resulting reflection coefficients depend on frequency and give an image of the location of re flectors. [References: 30]
机译:我们提出了一种易于使用的确定垂直平面不连续性的表面波模式的近似反射和透射系数的技术,该技术适用于不同的横向非均质性模型。此外,提出了一种利用基本瑞利模式的尾迹定位横向异质性的方法。特别是,表面波的频率含量使得能够研究下地壳和最上层的地幔。S波速度,密度和P波速度的横向变化导致形成基本瑞利模式的尾波,包含延迟的表面波,这些表面波间接到达记录站。尾声的复杂结构使得仅使用少量记录就无法在视觉上识别反射的表面波,同时将大量源站对的尾声波形同时反转以获取实验反射系数。该方法已通过超声波模型实验成功进行了测试,最后,该方法主要通过德国区域地震台网(GRSN)的记录应用于中欧,尤其是Tornquist区(TZ)。所得的反射系数取决于频率,并给出反射镜位置的图像。 [参考:30]

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