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首页> 外文期刊>South African Journal of Geology: Being the Transaction of the Geological Society of South African: Syndie die Verhandelinge van die Geologiese Vereniging van Suid-Afrika >Comparison of electrical conductivity structures and 2D magnetic modelling along two profiles crossing the Beattie Magnetic Anomaly, South Africa
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Comparison of electrical conductivity structures and 2D magnetic modelling along two profiles crossing the Beattie Magnetic Anomaly, South Africa

机译:沿跨越Beattie磁异常的两个剖面的电导率结构和2D磁性建模的比较

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摘要

Two of the Earth's largest geophysical anomalies, the Beattie Magnetic Anomaly (BMA) and the Southern Cape Conductive Belt (SCCB) extend across the southern African continent for more than 1000 km in an east-west direction. Based on previous electrical and magnetometer array measurements it is believed that both anomalies have a common crustal source with a width of 50 km represented by serpentinized palaeo-oceanic crust. New two-dimensional (2D) electrical conductivity models along a profile from Prince Albert to Fraserburg outline a narrow (2 km wide), southward-clipping zone of high electrical conductivity in the upper crust below the centre of the Beattie Magnetic Anomaly (BMA). Two-dimensional modeling studies of aero-magnetic data show that simple models that can explain the magnetic signature of the BMA, are not consistent with a narrow conductivity anomaly. Thus a common source for the two anomalies is unlikely. A second magnetotelluric (MT) experiment across the BMA, conducted along a 75 km profile centred on Jansenville, 350 km east of the first profile, resolves a sub-vertical and narrow conductivity anomaly below the centre of the BMA. At this location the conductor is reaching deeper to lower crustal levels and is inclined towards the north.
机译:Beattie磁异常(BMA)和Southern Cape导电带(SCCB)是地球上最大的两个地球物理异常,在东西方向上延伸了整个南部非洲大陆1000多公里。根据先前的电学和磁力计阵列测量结果,可以认为这两个异常都有一个共同的地壳源,其宽度为50 km,由蛇纹化的古洋壳构成。从阿尔伯特亲王到弗雷泽堡的剖面,新的二维(2D)电导率模型在Beattie磁异常(BMA)中心下方的上地壳中勾勒出一个高电导率的狭窄区域(宽2公里),向南弯曲。航空磁数据的二维建模研究表明,可以解释BMA磁学特征的简单模型与狭窄的电导率异常不一致。因此,这两个异常的共同来源是不可能的。沿着BMA进行的第二次大地电磁(MT)实验,以75 km剖面为中心,位于第一个剖面以东350公里处的Jansenville,解决了BMA中心以下的亚垂直且狭窄的电导率异常。在此位置,导体将到达更深的地壳,并向北倾斜。

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