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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Reducing subjectivity in multi-commodity mineral prospectivity analyses: Modelling the west Kimberley, Australia
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Reducing subjectivity in multi-commodity mineral prospectivity analyses: Modelling the west Kimberley, Australia

机译:在多商品矿产前景分析中降低主观性:对澳大利亚西金伯利建模

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Predicting realistic targets in underexplored regions proves a challenge for mineral explorers. Knowledge driven prospectivity techniques assist in target prediction, and can significantly reduce the geographic search space to a few locations. The mineral prospectivity of the underexplored west Kimberley region was investigated following interpretation of regional gravity and magnetic data. Emphasis was placed on identifying geological structures that may have importance for the mineral prospectivity of the region. Subsurface structure was constrained through combined gravity and magnetic modelling along three transects. Crustal-scale structures were interpreted and investigated to determine their depth extent. These interpretations and models were linked to tectonic events and mineralization episodes in order to map the distribution of minerally prospective regions using a knowledge-driven mineral systems approach. A suite of evidence layers was created to represent geological components that led to mineralization, and then applied to each mineral system where appropriate. This approach was taken to provide a more objective basis for prospectivity modelling. The mineral systems considered were 1) magmatic Ni-sulphide, 2) carbonate-hosted base metals, 3) orogenic Au, 4) stratiform-hosted base metals and 5) intrusion related base metals (including Sn-W, Fe-oxide-Cu-Au and Cu-Au porphyry deposits). These analyses suggest that a geologically complex belt in the Kimberley Basin at the boundary to the King Leopold Orogen is prospective for magmatic-related hydrothermal mineral systems (including Ni, Au and Cu). The Lennard Shelf is prospective for carbonate-hosted base metals around a feature known as the 67-mile high, and parts of the King Leopold Orogen are prospective for stratiform-hosted base metals. These results show that knowledge-driven mineral system modelling is effective in identifying prospectivity in regional scale studies of underexplored areas, as well as drastically reducing the search space for explorers working in the west Kimberley. 2015 Elsevier B.V. All rights reserved.
机译:预测勘探不足地区的现实目标对矿产勘探者来说是一个挑战。知识驱动的预期技术有助于目标预测,并且可以将地理搜索空间显着减少到几个位置。在解释了区域重力和磁数据之后,对未勘探的西部金伯利地区的矿物前景进行了研究。重点放在确定可能对该地区的矿物前景具有重要意义的地质结构上。通过结合重力和磁模型沿三个样条约束地下结构。解释并研究了地壳尺度的结构,以确定其深度范围。这些解释和模型与构造事件和矿化事件联系在一起,以便使用知识驱动的矿产系统方法绘制矿产潜在地区的分布图。创建了一组证据层来表示导致矿化的地质成分,然后在适当的情况下将其应用于每个矿物系统。采取这种方法是为预期建模提供了更为客观的基础。所考虑的矿物系统为1)岩浆硫化镍,2)碳酸盐基金属,3)造山金,4)层状基金属和5)入侵相关基金属(包括Sn-W,Fe-oxide-Cu) -Au和Cu-Au斑岩矿床)。这些分析表明,金伯利盆地金利奥波德造山带边界上的地质复杂带可能与岩浆有关的热液矿物系统(包括镍,金和铜)具有前景。伦纳德架可能被认为是围绕67英里高的特征的碳酸盐基岩的贱金属,而利奥波德造山带的部分地区也可能是层状基岩的贱金属。这些结果表明,知识驱动的矿物系统建模可以有效地确定未开发区域的区域规模研究中的远景,并且可以大大减少在西金伯利工作的勘探者的搜索空间。 2015 Elsevier B.V.保留所有权利。

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