首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Crustal variations and terrane boundaries in southern Mexico as imaged by magnetotelluric transfer functions
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Crustal variations and terrane boundaries in southern Mexico as imaged by magnetotelluric transfer functions

机译:大地电磁传递函数成像的墨西哥南部地壳变化和地形边界

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摘要

To investigate the complex crustal structure of southern Mexico magnetotelluric (MT) data were acquired at 75 stations along two north-south profiles, 200-250 km apart, crossing several terrane boundaries whose interpretation has been controversial in the literature. Resulting sounding curves can be grouped, according to their shapes, into 10 different sets. Each of them may represent a crustal unit with a characteristic depth dependent electrical conductivity distribution. Often, the spatial extent of such a crustal unit matches well with a geological terrane. However, we also observed transition zones or sharp contrasts in crustal electrical properties which do not correspond to any defined terrane boundary. Transition zones are associated with low angle crustal structures (regional thrust faults or mylonitic zones) and/or with areas of plutonism, which are adding heterogeneities to the crust. In other cases our data suggest that terrane boundaries proposed on the basis of surface geology are probably shallow structures, which may not continue at depth. The comparison of apparent resistivity profiles with the available geologic information indicates that the MT method is capable of clearly defining zones affected by recent and active volcanism and tectonics as well as the part of the crust with Paleozoic and Precambrian metamorphic rock assemblages. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 45]
机译:为了调查墨西哥南部大地电磁(MT)的复杂地壳结构,沿两个南北剖面(相距200-250公里)跨越了几个地形边界,在75个测站上采集了数据,这些解释在文献中一直存在争议。生成的探测曲线可以根据其形状分为10组。它们中的每一个都可以代表具有特征深度相关的电导率分布的地壳单元。通常,这种地壳单元的空间范围与地质地貌非常吻合。然而,我们还观察到地壳电学性质的过渡带或强烈对比,这与任何定义的地界都不对应。过渡带与低角度地壳结构(区域逆冲断层或Mylonitic地带)和/或与岩屑作用的区域有关,这增加了地壳的非均质性。在其他情况下,我们的数据表明,根据地表地质学提出的地层边界可能是浅层结构,可能不会在深度上延续。将表观电阻率剖面与可用的地质信息进行比较表明,MT方法能够清晰地确定受近期和活动的火山作用和构造以及古生界和前寒武纪变质岩组合的地壳部分影响的区域。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:45]

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