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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Magnetotelluric investigation of the Vestfold Hills and Rauer Group, East Antarctica
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Magnetotelluric investigation of the Vestfold Hills and Rauer Group, East Antarctica

机译:南极东部Vestfold Hills and Rauer Group的大地电磁调查

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The Vestfold Hills and Rauer Group in East Antarctica have contrasting Archean to Neoproterozoic geological histories and are believed to be juxtaposed along a suture zone that now lies beneath the Sorsdal Glacier. Exact location and age of this suture zone are unknown, as is its relationship to regional deformation associated with the amalgamation of East Gondwana. To image the suture zone, magnetotelluric (MT) data were collected in Prydz Bay, East Antarctica, mainly along a profile crossing the Sorsdal Glacier and regions inland of the Vestfold Hills and Rauer Group islands. Time-frequency analysis of the MT time series yielded three important observations: (1) Wind speeds in excess of similar to 8 m/s reduce coherence between electric and magnetic fields due to charged wind-blown particles of ice and snow. (2) Estimation of the MT transfer function is best between 1000 and 1400 UT when ionospheric Hall currents enhance the magnetic source field. (3) Nonplanar source field effects were minimal but detectable and removed from estimation of the MT transfer function. Inversions of MT data in 2-D and 3-D produce similar resistivity models, where structures in the preferred 3-D resistivity model correlate strongly with regional magnetic data. The electrically conductive Rauer Group is separated from the less conductive Vestfold Hills by a resistive zone under the Sorsdal Glacier, which is interpreted to be caused by oxidation during suturing. Though a suture zone has been imaged, no time constrains on suturing can be made from the MT data.
机译:东极南极的Vestfold Hills和Rauer集团将太古代与新元古代的地质历史形成了鲜明的对比,并被认为是沿着现在位于Sorsdal冰川下方的缝合带并列的。该缝合区的确切位置和年龄以及与东冈瓦纳合并相关的区域变形的关系均未知。为了对缝合带成像,主要在南极东普里兹湾的大地电磁(MT)数据沿横过Sorsdal冰川以及Vestfold Hills和Rauer Group岛内陆地区的剖面收集了数据。 MT时间序列的时频分析得出了三个重要的观察结果:(1)超过8 m / s的风速会减小由于带电的风吹雪和冰粒子而引起的电场和磁场之间的相干性。 (2)当电离层霍尔电流增强磁场时,MT传递函数的估计最好在1000和1400 UT之间。 (3)非平面源场效应最小,但可检测到,并已从MT传递函数的估计中消除。 2-D和3-D中MT数据的反演产生相似的电阻率模型,其中首选3-D电阻率模型中的结构与区域磁数据强烈相关。导电的劳尔族(Rauer Group)与导电性较低的韦斯特富尔希尔斯(Vestfold Hills)在Sorsdal冰川下的一个电阻带隔开,这被认为是缝合过程中的氧化作用所致。尽管已对缝合区进行了成像,但无法根据MT数据进行缝合的时间限制。

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