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首页> 外文期刊>Geophysical Research Letters >A 3-D spectral-element and frequency-wave number hybrid method for high-resolution seismic array imaging
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A 3-D spectral-element and frequency-wave number hybrid method for high-resolution seismic array imaging

机译:高分辨率地震阵列成像的3-D谱元与波数混合方法

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摘要

We present a three-dimensional (3-D) hybrid method that interfaces the spectral-element method (SEM) with the frequency-wave number (FK) technique to model the propagation of teleseismic plane waves beneath seismic arrays. The accuracy of the resulting 3-D SEM-FK hybrid method is benchmarked against semianalytical FK solutions for 1-D models. The accuracy of 2.5-D modeling based on 2-D SEM-FK hybrid method is also investigated through comparisons to this 3-D hybrid method. Synthetic examples for structural models of the Alaska subduction zone and the central Tibet crust show that this method is capable of accurately capturing interactions between incident plane waves and local heterogeneities. This hybrid method presents an essential tool for the receiver function and scattering imaging community to verify and further improve their techniques. These numerical examples also show the promising future of the 3-D SEM-FK hybrid method in high-resolution regional seismic imaging based on waveform inversions of converted/scattered waves recorded by seismic array.
机译:我们提出了一种三维(3-D)混合方法,该方法将频谱元素方法(SEM)与频率波数(FK)技术对接,以建模地震阵列下远震平面波的传播。生成的3-D SEM-FK混合方法的精度以一维模型的半分析FK解决方案为基准。通过与这种3-D混合方法进行比较,还研究了基于2-D SEM-FK混合方法的2.5-D建模的准确性。阿拉斯加俯冲带和西藏中部地壳结构模型的综合实例表明,该方法能够准确捕获入射平面波与局部异质性之间的相互作用。这种混合方法为接收器功能和散射成像社区提供了一种必不可少的工具,以验证并进一步改进其技术。这些数值示例还显示了基于地震阵列记录的转换/散射波的波形反演的高分辨率区域地震成像中3-D SEM-FK混合方法的前景广阔。

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