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A review on the analysis of the crustal and upper mantle structure using receiver functions

机译:利用接收函数分析地壳和上地幔结构。

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The discontinuities in the earth such as Moho, lithosphere-asthenosphere boundary (LAB), 410 and 660 km discontinuities, are characterized with an abrupt jump in velocities of P and S waves. The depths of these discontinuities are an important parameter to investigate tectonic evolution in the lithosphere. Receiver functions technique with teleseismic events is very suitable for studying the crust and upper mantle structure beneath stations, thus becoming one of the standard tools for such study. The principle of receiver functions is to separate the converted Ps or Sp phases generated at the discontinuities beneath stations in the case that the direct P or S is a delta function. In this paper, the methods of receiver function analysis are collected from literatures. We introduce the coordinate transform technique for the separation of Ps or Sp waves, the deconvolution algorithm to extract P and S receiver functions, the waveform fitting method to invert for S-wave velocity structure, the stacking technique to improve signals, and the migration from time series to depth domain. With some illustrative examples, the care that should be taken in study of the crustal and upper mantle structure using receiver functions are summarized. (C) 2015 Published by Elsevier Ltd.
机译:地球的不连续性(例如莫霍面,岩石圈-软流圈边界(LAB),410和660 km的不连续性)的特征是P波和S波的速度突然跳跃。这些不连续的深度是研究岩石圈构造演化的重要参数。带有地震事件的接收机功能技术非常适合研究台下的地壳和上地幔结构,因此成为进行此类研究的标准工具之一。接收器功能的原理是在直接P或S为增量函数的情况下,分离在站下方的不连续处生成的转换后的Ps或Sp相。本文从文献中收集了接收机功能分析的方法。我们介绍了用于分离Ps或Sp波的坐标变换技术,用于提取P和S接收器函数的反卷积算法,用于反转S波速度结构的波形拟合方法,用于改善信号的堆叠技术以及从时间序列到深度域。通过一些说明性示例,总结了在使用接收器功能研究地壳和上地幔结构时应注意的事项。 (C)2015年由Elsevier Ltd.出版

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