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Mapping the lithosphere-asthenosphere boundary through changes in surface-wave anisotropy

机译:通过表面波各向异性的变化绘制岩石圈-软流圈边界图

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The alignment of olivine crystals is considered as the dominant source of seismic anisotropy in the subcrustal lithosphere and asthenosphere. Different components of large-scale anisotropy can be traced in depth distributions of the radial and azimuthal anisotropy of surface waves. We propose a global model of the lithosphere-asthenosphere boundary (LAB) as a transition between a 'frozen-in' anisotropy in the lithosphere to anisotropy in the sublithospheric mantle related to the present-day flow. Due to different orientations of velocity maxima in the anisotropic subcrustal lithosphere and the asthenosphere, the velocity contrast related to the LAB can increase in particular directions. Because of their long wavelengths and horizontal propagation, surface waves suffer from poor lateral. resolution. However, surface waves with various wavelengths allow us to map gross features of the LAB with a good vertical resolution. We estimate depths to the LAB to be between 200 and 250 km for the Precambrian shields and platforms, around 100 km for the Phanerozoic continental regions and 40-70 km beneath oceans from the world-wide depth distribution of the radial and azimuthal anisotropy of surface waves. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 61]
机译:橄榄石晶体的排列被认为是地壳下岩石圈和软流圈中地震各向异性的主要来源。大规模各向异性的不同成分可以在表面波的径向各向异性和方位各向异性的深度分布中找到。我们提出了岩石圈-软流圈边界(LAB)的全局模型,该模型是岩石圈的“冻结”各向异性到与当前流量有关的岩石圈以下地幔各向异性的过渡。由于各向异性亚壳下岩石圈和软流圈中速度最大值的方向不同,与LAB有关的速度对比度可以在特定方向上增加。由于表面波的长波长和水平传播,它们的横向噪声很差。解析度。但是,具有各种波长的表面波使我们能够以良好的垂直分辨率绘制LAB的总体特征。从全球径向和方位各向异性的深度分布来看,我们估计前寒武纪盾构和平台到LAB的深度在200至250 km之间,生代大陆区域大约为100 km,海洋以下大约40-70 km波浪。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:61]

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