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Overview of the magnetic signatures of the Palaeoproterozoic Rustenburg Layered Suite, Bushveld Complex, South Africa

机译:南非布什维尔德综合体的古元古代鲁滕堡分层套件的磁性特征概述

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Aeromagnetic data clearly delineate the mafic rocks of the economically significant Bushveld Igneous Complex. This is mainly due to the abundance of magnetite in the Upper Zone of the Rustenburg Layered Suite of the Bushveld, but strongly remanently magnetised rocks in the Main Zone also contribute significantly in places. In addition to delineating the extent of the magnetic rocks in the complex, the magnetic anomalies also provide information about the dip and depth of these units. The presence of varying degrees of remanent magnetisation in most of the magnetic lithologies of the Rustenburg Layered Suite complicates the interpretation of the data. The combination of available regional and high resolution airborne magnetic data with published palaeomagnetic data reveals characteristic magnetic signatures associated with the different magnetic lithologies in the Rustenburg Layered Suite. As expected, the ferrogabbros of the Upper Zone cause the highest amplitude magnetic anomalies, but in places subtle features within the Main Zone can also be detected. A marker with strong remanent magnetisation located in the Main Zone close to the contact with the Upper Zone is responsible for very high amplitude negative anomalies in the southern parts of both the eastern and western lobes of the Bushveld Complex. Prominent anomalies are not necessarily related to a specific lithology, but can result from the interaction between anomalies caused by differently magnetised bodies. The magnetic data provided substantial information at different levels of detail, ranging from contacts between zones, and layering within zones, to magnetite pipes dykes and faults that can have an impact on mine planning. Finally, simple modelling of the magnetic data supports the concept of continuous mafic rocks between the western and eastern lobes.
机译:航空磁数据清楚地描绘出了具有经济意义的布什维尔德火成岩复合体的镁铁质岩石。这主要是由于Bushveld的Rustenburg分层套件上部区域中的磁铁矿丰富,但主要区域中残留的强烈剩磁的岩石在某些地方也有很大贡献。除了描述复合物中磁性岩石的范围外,磁异常还提供有关这些单元的倾角和深度的信息。 Rustenburg分层套件的大多数磁性岩性中存在不同程度的剩余磁化强度,这使数据的解释变得复杂。可用的区域和高分辨率机载磁数据与已发布的古磁数据的结合揭示了Rustenburg分层套件中与不同磁岩性相关的特征性磁特征。不出所料,上部区域的铁硼铁引起最大振幅的磁异常,但是在某些地方,主区域内的细微特征也可以被检测到。位于布什区与上部区域接触的主要区域中具有强剩余磁化强度的标记物是造成高振幅负异常的原因。明显的异常不一定与特定的岩性有关,而可能是由磁化强度不同的异常之间的相互作用引起的。磁数据提供了详细程度不同的大量信息,范围从区域之间的接触以及区域内的分层,到可能影响矿山规划的磁铁矿管堤和断层。最后,磁数据的简单建模支持在西部和东部裂片之间形成连续的镁铁质岩石的概念。

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