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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Seismic anisotropy beneath the Indian continent from splitting of direct S waves
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Seismic anisotropy beneath the Indian continent from splitting of direct S waves

机译:直接S波分裂导致印度大陆下方的地震各向异性。

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In this study, we investigate the shear wave splitting beneath 39 broadband seismic stations located over various tectonic units of the Indian shield using direct S waves from deep to intermediate depth earthquakes. The delay times between fast and slow axes of anisotropy do not reveal anomalous values that reflect contributions from midmantle or the mantle transition zone. The fast polarization azimuths are generally consistent with the results from SKS splitting that indicate a predominance of plate motion related strain in the Indian continent. Splitting results at station HYB, which was hitherto considered isotropic, indicate significant anisotropy, with a NE oriented fast axis. Although a general trend of SH leading SV is indicated by most of the measurements, invoking radial anisotropy to explain this phenomenon appears farfetched since the near vertical incidence of the S waves in the usable distance range of 40°-80° makes them more sensitive to azimuthal anisotropy underneath the station. Forward modeling of the dependence of the splitting parameters on incoming polarization assuming horizontal axis of symmetry brings out two layers of anisotropy beneath the Indian shield with fast axis azimuths oriented N15°E in the bottom layer and N60°E in the top layer. While stronger anisotropy (6t 1 s) in the bottom layer is related to asthenospheric flow, a weaker one (6t 0.4 s) in the upper layer could represent anisotropy frozen in the lithosphere.
机译:在这项研究中,我们使用从深地震到中深度地震的直接S波,对位于印度盾构各个构造单元上的39个宽带地震台站下方的剪切波分裂进行了研究。各向异性的快轴和慢轴之间的延迟时间未显示出反映中地幔或地幔过渡带贡献的反常值。快速极化方位角通常与SKS分裂的结果一致,这表明印度大陆板块运动相关应变占主导地位。迄今被认为是各向同性的HYB站的分裂结果表明,各向异性明显,NE指向快轴。尽管大多数测量结果都表明了SH超前SV的总体趋势,但利用径向各向异性来解释这一现象似乎是遥不可及的,因为在40°-80°的可用距离范围内,S波几乎垂直入射,这使它们更易受到影响。测站下面的方位各向异性。假设水平对称轴,对分裂参数对入射极化的依赖性进行正演,可以得出印度盾构下两层各向异性,其中快轴方位角的最底层为N15°E,最上层为N60°E。底层的各向异性强(6t 1 s)与软流圈流量有关,而顶层的弱各向异性(6t 0.4 s)则可能表示岩石圈中冻结的各向异性。

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