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Crustal anisotropy of Taihang Mountain Range using azimuthal variation of receiver functions

机译:利用接收函数方位角变化的太行山地壳各向异性。

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摘要

We discussed the possibility of studying crust anisotropy by analyzing azimuthal variation of the receiver functions and presented a technique for computing the transmission response of a flat-layered medium with arbitrarily ori- ented hexagonally symmetric anisotropy using the reflectivity algorithm. Using this method we investigated the crust anisotropy of Taihang Mountain Range (TMR). Our result shows that there is significant anisotropy with a slow symmetry axis in the upper crust and a fast symmetry axis in the lower crust. The anisotropy magnitude of about 8%~15% is found in the upper crust and a smaller magnitude of about 3%~5% in the lower crust. Orienta- tion of the symmetry axes and the depth of anisotropy appearance as deduced from the seismic records of four individual seismic stations are different from each other. The crust anisotropy beneath the four stations may be associated with the local crustal fabrics in a small area.
机译:我们讨论了通过分析接收器函数的方位角变化来研究地壳各向异性的可能性,并提出了一种使用反射率算法计算具有任意方向的六边形对称各向异性的平面介质的传输响应的技术。使用这种方法,我们研究了太行山脉(TMR)的地壳各向异性。我们的结果表明,各向异性明显,上地壳的对称轴慢,下地壳的对称轴快。上地壳的各向异性程度约为8%〜15%,下地壳的各向异性程度约为3%〜5%。从四个独立地震台站的地震记录推导出的对称轴的方向和各向异性出现的深度互不相同。这四个站下的地壳各向异性可能与小区域的局部地壳结构有关。

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