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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >p wave azimuthal and radial anisotropy of the Hokkaido subduction zone
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p wave azimuthal and radial anisotropy of the Hokkaido subduction zone

机译:北海道俯冲带的p波方位角和径向各向异性

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摘要

We present the first three-dimensional P wave radial anisotropy tomography of the Hokkaido subduction zone, as well as P wave azimuthal anisotropy and S wave tomography, which are determined by inverting 298,430 P wave and 233,934 S wave arrival times from 14,245 local earthquakes recorded by 344 seismic stations. Our results reveal significant velocity heterogeneity, seismic anisotropy, and upwelling flows beneath the study region. In the mantle wedge, prominent low-velocity (low-V) anomalies exhibit trench-normal fast-velocity directions (FVDs) and a negative radial anisotropy (i.e., vertical velocity horizontal velocity), which may reflect upwelling mantle flows. Fan-shaped FVDs are found at depths of 65-90 km, and a detailed 3-D mantle flow pattern is revealed, which may be caused by a combination of oblique subduction of the Pacific plate and collision of the Kuril arc with the Honshu arc beneath southern Hokkaido. The radial anisotropy changes at similar to 100km depth, which may reflect variations in temperature and fluid conditions there. The subducting Pacific slab exhibits a positive radial anisotropy (i.e., horizontal velocity vertical velocity), which may reflect the original fossil anisotropy when the Pacific plate formed at the mid-ocean ridge.
机译:我们介绍了北海道俯冲带的首个三维P波径向各向异性层析成像以及P波方位各向异性和S波层析成像,这是通过将298,430 P波和233,934 S波的到达时间反演而得来的,该时间是根据记录的14245次地震来确定的344个地震台。我们的研究结果揭示了研究区域下方明显的速度非均质性,地震各向异性和上升流。在地幔楔中,明显的低速(low-V)异常表现出沟槽法向快速方向(FVDs)和负的径向各向异性(即垂直速度水平速度),这可能反映了上升的地幔流。在65-90 km的深度处发现了扇形FVD,并揭示了详细的3-D地幔流型,这可能是由于太平洋板块的俯冲俯冲和千岛弧与本州弧的碰撞共同造成的。在北海道南部。径向各向异性的变化类似于100 km的深度,这可能反映了那里温度和流体条件的变化。俯冲的太平洋板块表现出正的径向各向异性(即水平速度垂直速度),这可能反映了当太平洋板块在大洋中脊形成时原始的化石各向异性。

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