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Using airborne electromagnetics to solve a structurally complex geological puzzle in the Hamersley Province, Western Australia

机译:使用空中电磁学,解决澳大利亚州哈尔默利省的结构复杂地质难题

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Stratigraphy of the Hamersley Province in Western Australia, featuring alternating units of banded iron formations and shales with contrasting electrical properties in a mostly gently undulating shallow-dipping layered geometry, is particularly favourable to airborne time-domain electromagnetic mapping techniques. Manipulated vertical cross-sections of modelled conductivity obtained from laterally constrained one-dimensional inversion of SkyTEM~(304) data enable the exploration geologist to interpret weathering profiles, shallow-dipping stratigraphy and steep structures, all of which are crucial aspects of bedded iron ore deposits genesis models.The Cobra Project is located 14 km east of the NNW-trending Menindee Fault Zone, which defines the western margin of the Hamersley Province, Western Australia. The region comprises an extensive plateau of Brockman Iron Formation cut by a series of horst and grabens with a regional dextral strike-slip component. The 150° striking horst and grabens and associated 060° striking conjugate faults have approximate frequencies of 400 and 2000 m, respectively, and control the bulk of the iron mineralisation. Syn to late 150° trending dykes in part intrude the faults.In the Cobra region, elucidating the structurally dislocated stratigraphy without closely spaced drilling is very challenging. Geological mapping is hindered by the paucity of mappable stratigraphic markers within the banded iron formations and kinematic indicators. Airborne magnetic and remote sensing data sets highlight the dense lineament network, but provide limited assistance in quantifying relatively small apparent displacements, or distinguishing faults from dykes with reasonable confidence.Interpretation of modelled conductivity cross-sections generated from laterally constrained one-dimensional inversion of airborne electromagnetic method (AEM) data offers invaluable insight where the quality of mapping or drilling is wanting. Subsequent targeted field checking and infill drilling validated the geological model interpreted from the integration of these data sets.The AEM technique alone cannot decipher the complex geological environments often present in the Hamersley Province but can facilitate effective iron ore exploration by focusing precious field time and assisting structural and stratigraphic interpretations in areas with sporadic and shallow geological data.
机译:汉切省西澳大利亚省的地层,具有带状铁形成和Shales的交替单位,具有对比的电气性质,在大多数轻微的波状浅层分层几何形状中特别有利地对空气传播的时域电磁映射技术。操纵从Skytem的横向受约束的一维反转获得的建模电导率的垂直横截面〜(304)数据使勘探地质学家能够解释风化的曲线,浅层地层和陡峭的结构,所有这些都是卧床铁矿石的关键方面存款创世纪模型。COBRA项目位于NNW趋势营造出境区以东14公里,定义了哈里斯利省,西澳大利亚州的西部边缘。该地区包括由一系列HORST和GRABREN的Brockman铁形成的广泛高原,具有区域右侧滑行组分。 150°醒目的Horst和Grabens和相关的060°引人注目的缀合物故障分别具有400和2000米的近似频率,并控制大部分铁矿化。在部分地区侵入了150°趋势堤,在眼镜蛇区域侵入了150°磨损的滴度。在没有紧密间隔的钻孔的情况下,阐明了结构上位于结构上脱臼的地层非常具有挑战性。通过带状铁形成和运动学指标内的可含糊地层标记的缺陷性地质映射受阻。空中磁性和遥感数据集突出了密集的衬线网络,但在量化相对较小的明显位移方面提供有限的帮助,或者具有合理的信心与堤坝的故障区分开。从横向约束的空气传播的一维反转产生的建模导电横截面的解释电磁方法(AEM)数据提供了无价的洞察力,其中映射或钻井的质量是想要的。随后的目标现场检查和漏洞验证了从这些数据集的集成中解释的地质模型。单独的AEM技术不能破译哈默利省通常存在的复杂地质环境,但可以通过聚焦宝贵的现场时间和协助来促进有效的铁矿石探索零星和浅层地质数据的结构和地层解释。

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