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Inferring earth structure from combined measurements of rotational and translational ground motions

机译:通过旋转和平移地面运动的组合测量推断地球结构

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摘要

We introduce a novel variant of seismic tomography that is based on colocated measurements of rotational and translational ground motions. Our aim is to assess whether rotations may be incorporated successfully into seismic inverse problems to produce better resolved and more realistic tomographic images. Our methodology is based on the definition of apparent S-wave speed as the ratio of rms velocity and rotation amplitudes. The principal advantages of this definition are that 1 no traveltimes measurements are needed and 2 the apparent S-wave speed is independent of source magnitude and source timing. We derive finite-frequency kernels for apparent S-wave speed by using a combination of the adjoint method and ray approximation. The properties of these kernels as a function of frequency bandwidth can be illustrated along with their usefulness for seismic tomography. In multifrequency synthetic inversions, we consider local crosshole tomography and regional-scale earthquake tomography. Our results indicate that S-wave speed variations can be retrieved accurately from colocated rotation and translation measurements, suggesting that our methodology is a promising extension of conventional seismic tomography. Further, apparent S-wave speed can be used to increase vertical resolution in teleseismic tomography for local structures.
机译:我们介绍了一种新颖的地震层析成像变体,它基于旋转和平移地面运动的并置测量。我们的目的是评估旋转是否可以成功地纳入地震反问题中,以产生更好的分辨率和更真实的层析图像。我们的方法基于视在S波速度的定义,即视均方根速度与旋转振幅之比。此定义的主要优点是:1无需测量传播时间,并且2视在S波速度与源震级和源定时无关。通过结合使用伴随法和射线近似,我们得出了视在S波速度的有限频率内核。可以说明这些内核随频率带宽变化的特性,以及它们对地震层析成像的有用性。在多频合成反演中,我们考虑了局部井孔层析成像和区域规模的地震层析成像。我们的结果表明,S波速度变化可以从共置的旋转和平移测量中准确地获得,这表明我们的方法是传统地震层析成像的有希望的扩展。此外,在局部结构的远震层析成像中,视在S波速度可用于增加垂直分辨率。

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