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Structural Controls of the Wannaway Nickel-Sulfide Deposit, Widgiemooltha, Western Australia

机译:Wannaway硫化镍矿床的结构控制,WidgieMooltha,Wide澳大利亚

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The Wannaway Deposit is a structurally modified komatiite-hosted nickel-sulfide deposit. Until recently, nickel sulfide accumulations surrounding the Widgiemooltha Dome had been studied with a focus on understanding volcanological aspects of komatiite flow regimes and nickel-sulfide accumulation. Although volcanological features can be observed at Wannaway they are overprinted by several generations of structures associated with multi-phase deformation of the Dome. On the mine scale, two significant deformational events can be distinguished that control ore distribution. The first deformational event is represented by the formation of a layer parallel foliation within the footwall metabasalt and boudinaging of the ore into two distinct orebodies (mega boudins) during a north-south compressional event. Evidence of a second compressional event (east-northeast-south-southwest) is defined by reverse > dextral thrust-folding of the ore zone. The latter deformational event focussed the sulfide ore into thrust front positions where folded ore sequences are mined with stope widths up to nine metres wide. Later stage compressional and extensional deformation phases are observed but have minor, localised effects on the geometry of the ore zone. Four orders of control on the geometry and distribution of ore are interpreted through a combination of primary and secondary features observed at Wannaway. Extending the structural aspects of the secondary overprint features into areas of potential mineralisation has not only defined targets for extensions to the Wannaway Deposit, but has also aided to delineate high grade mineralisation and aid mining decisions. Obtaining an understanding of the volcanological conditions of formation, and more importantly, the structural evolution of the Wannaway region has been an integral part in optimising production.
机译:Wannaway沉积物是一种结构改性的Komatiite宿主核 - 硫化物沉积物。直到最近,已经研究了围绕WidgieMooltha圆顶的硫化镍累积,并专注于了解科马蒂特流动制度和硫化镍积累的火山学方面。尽管在Wannaway中可以观察到火山学特征,但它们叠印了几代结构与圆顶的多相变形相关。在矿山量表上,可以区分两个重要的变形事件,控制矿石分布。第一变形事件通过在北方南方压缩事件中形成脚渣元质量和矿石中的层平行叶和矿石中的两种不同的矿物(Mega Boudins)。第二次压缩事件(东北南 - 西南)的证据是通过反向>矿石区的右侧推力折叠而定义的。后一种变形事件将硫化物矿体聚焦到推力前位置,其中折叠的矿石序列与宽度宽度宽到九米的距离。观察到后阶段的压缩和延伸变形相,但对矿区的几何形状具有较小的局部影响。通过在Wannaway在Wannaway观察到的主要和次要特征的组合来解释四种对矿石的四个控制命令。将次要叠印特征的结构方面延伸到潜在的矿化区域中,该方面并不仅为韦诺押金的扩展目标定义,但也有助于描绘高级矿化和援助采矿决策。获得对形成的波动条件的理解,更重要的是,Wannaway地区的结构演变是优化生产的一部分。

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