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Electrical anisotropy of South African lithosphere compared with seismic anisotropy from shear-wave splitting analyses

机译:南非岩石圈的电各向异性与剪切波分裂分析得出的地震各向异性的比较

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摘要

Electrical anisotropy in southern Africa, inferred from the analysis of magnetotelluric (MT) data recorded as part of the Southern African NIT Experiment (SAMTEX), is compared with seismic anisotropy inferred from an SKS shear-wave splitting study in the same region. Given the vastly varying penetration depths in the survey area, electrical anisotropy is derived in terms of approximate depth, rather than frequency. Electrical anisotropy directions for crustal depths (< 35 km) show more distinct variability than those for upper mantle depths, and, not surprisingly, appear to be strongly related to large-scale geological structures. Our results for upper lithospheric mantle depths (> 45 km) are not consistent with the fast-axis directions inferred from the SKS analyses. Upper mantle electrical results appear to be mostly a consequence of the geometry of large-scale geological structures and provide evidence that some crustal structures are distinct at depth, while others seem to be confined to the crust. Our results indicate that the causative region for the seismic anisotropy in the lithospheric mantle has either a correspondingly weak electrical anisotropic signature, or is more prominent at greater lithospheric depths than those we investigate here. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过对作为南部非洲NIT实验(SAMTEX)一部分的大地电磁(MT)数据进行分析得出的结论,将南部非洲的电各向异性与根据同一地区的SKS剪切波分裂研究得出的地震各向异性进行了比较。鉴于调查区域的穿透深度变化很大,因此根据近似深度而不是频率来得出电各向异性。地壳深度(<35 km)的电各向异性方向显示出比上地幔深度更明显的变异性,并且毫不奇怪,它与大规模地质结构密切相关。我们对岩石圈上地幔深度(> 45 km)的结果与从SKS分析推论得出的快轴方向不一致。上地幔的电学结果似乎主要是大型地质结构的几何形状的结果,并提供证据表明某些地壳结构在深度上是不同的,而其他地壳结构似乎仅限于地壳。我们的结果表明,岩石圈地幔中地震各向异性的成因区域具有相应的弱电各向异性特征,或者在更大的岩石圈深度处比我们在此研究的那些更为突出。 (c)2006 Elsevier B.V.保留所有权利。

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