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Localized waveform inversion applied to the D' region in teleseismic imaging.

机译:将局部波形反演应用于远震成像中的D''区。

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摘要

A localized waveform inversion technique based on hybrid modeling was developed to investigate the shear wave velocity structure of the lowermost mantle. Utilizing ray theory and the Kirchhoff integral, the source wavefield from the hypocenter and the receiver wavefield recorded at the Earth's surface can be extrapolated to the subsurface near the core-mantle boundary (CMB). Ray theory solutions for a smooth background Earth model are interfaced to a finite difference solution to the wave equation applied in a local heterogeneous region near the CMB. The velocity structure in the finite difference region is updated iteratively by zero-lag cross-correlation of the forward and backward propagated wavefields that represents the direction of minimizing the data misfit. As the finite difference method is only applied in a small region, the hybrid method requires much less computer memory when it is implemented to invert localized structures. This method is applied to study an event recorded by the RISTRA Array and the depth and amplitude of the D" discontinuity is recovered. This demonstrates that the hybrid waveform inversion is feasible in teleseismic imaging.
机译:开发了一种基于混合建模的局部波形反演技术,以研究最下部地幔的剪切波速度结构。利用射线理论和基尔霍夫积分,可以将来自震源的源波场和记录在地球表面的接收器波场外推到靠近芯幔边界(CMB)的地下。平滑背景地球模型的射线理论解决方案与有限差分解决方案接口,该有限差分解决方案适用于CMB附近局部异质区域中的波动方程。通过向前和向后传播的波场的零滞后互相关来迭代更新有限差分区域中的速度结构,该相关性代表了使数据失配最小化的方向。由于有限差分法仅适用于较小的区域,因此当实现反转局部结构的混合方法时,其所需的计算机内存要少得多。该方法被用于研究由RISTRA阵列记录的事件,并且恢复了D“不连续性的深度和幅度。这证明了混合波形反演在远震成像中是可行的。

著录项

  • 作者

    He, Yang.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Geophysics.
  • 学位 M.S.
  • 年度 2009
  • 页码 65 p.
  • 总页数 65
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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