首页> 外文期刊>Journal of structural geology >Structural controls on nickel sulphide ore shoots in Archaean komatiite, Kambalda, WA: the volcanic trough controversy revisited
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Structural controls on nickel sulphide ore shoots in Archaean komatiite, Kambalda, WA: the volcanic trough controversy revisited

机译:华盛顿州坎巴尔达的古生铁钾铁矿中硫化镍矿新芽的结构控制:再次探讨了火山槽的争议

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Structural evaluation of the extensive exploration database for the Kambalda-Tramways area (Archaean Yilgarn Craton, Western Australia) is addressing the long outstanding issue of whether the trough structure embayments that partly confine the nickel sulphide (NiS) ore shoots are volcanic or tectonic in origin. The trough structures are complex linear domains associated with talc-carbonate alteration overprinting thickened komatiite overlying footwall basalt. Two end-member trough structure types are recognised: (1) re-entrant trough structures, and (2) open trough structures. The re-entrant trough structures are narrower at the top than at the base, strongly asymmetric in cross-section, restricted in distribution to Kambalda Dome, and transgress and truncate ore. The open trough structures are wider at the top than at the base, weakly asymmetric in cross-section, prevalent outside Kambalda Dome, and are mineralised along their lateral margins. In addition to trough-associated ore, other NiS ore shoots overlie near-planar komatiite-basalt contacts and are overlain by serpentinite with relict igneous textures. All these features indicate the possibility that the trough structures reflect structural folding, thickening and alteration at rock contacts marking different competency during regional fold-thrusting. Consequently, NiS exploration strategies should consider structural and metamorphic features, as well as volcanologic and stratigraphic features. Recognition of folding and thrusting patterns related to major competency contrasts in favourable komatiite-basalt stratigraphy near the crest of regional anticlines and domes would aid exploration success.
机译:对Kambalda-Tramways地区(西澳大利亚Archaean Yilgarn Craton)广泛的勘探数据库进行结构评估,解决了一个长期存在的悬而未决的问题,即部分限制了硫化镍(NiS)矿芽的槽结构构造是火山成因还是构造成因。槽结构是复杂的线性区域,与滑石-碳酸盐蚀变作用叠加,叠加了覆盖在下盘玄武岩上的增厚的科马特岩。可以识别两种端部成员的槽形结构类型:(1)凹入式槽形结构,以及(2)开放式槽形结构。凹入槽的顶部顶部比底部狭窄,横截面强烈不对称,分布在坎巴尔达穹顶(Kambalda Dome)中,限制了矿石的侵入和截断。开放的槽状结构顶部比底部宽,横截面微弱不对称,在坎巴尔达巨蛋外普遍存在,并沿其侧缘矿化。除了槽相关的矿石外,其他NiS矿石新芽也覆盖了近平面的科马铁矿-玄武岩接触层,并被蛇纹岩覆盖,具有遗留火成岩质地。所有这些特征表明,在区域褶皱推力过程中,槽形结构反映了岩石接触时结构的折叠,增厚和变化,标志着不同的能力。因此,NiS勘探策略应考虑结构和变质特征以及火山岩和地层特征。在区域背斜和穹顶附近的有利的科马提岩-玄武岩地层中,识别与主要能力对比相关的褶皱和逆冲模式将有助于勘探成功。

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