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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Ore-structure relationships at Sishen Mine, Northern Cape, Republic of South Africa, based on fully-constrained implicit 3D modelling
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Ore-structure relationships at Sishen Mine, Northern Cape, Republic of South Africa, based on fully-constrained implicit 3D modelling

机译:南非共和国北开普岛的厄伦矿的矿石结构关系,基于完全约束的隐式3D建模

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A fully-constrained, implicit, 3D geological model of Sishen Mine reveals the original, pre-mining geometry of ore bodies, host rocks to mineralization and major structures. There are several overlapping controls, at a variety of scales, on the position, depth and geometry of laminated and conglomeratic ore. Most of these controls are structural or may be reconciled with the kinematic history of this part of the Maremane Dome. A series of near-horizontal sections, through the entire 3D model, demonstrates the manner in which these controls overlap and interact. First-order or large-scale controls comprise broad domes, which show preservation of laminated ore around their rims, outside of which conglomeratic ore occurs. Second-order controls comprise grabens and half-grabens, which are often bounded by strike persistent normal faults, which show fault drag on their western flanks due to inversion, along with preservation of BIF-related supergene ore and conglomeratic ore. A type example is the thick, deep, linear ore to the west of the Sloep Fault. Third-order controls on the preservation of mineralization comprise downthrown blocks to the north of reactivated E-W, SE/ESE-or NE/ENE-trending conjugate faults. Upthrow to the south could be attributed to the 1.15-1.0 Ga NNW-directed Lomanian (NamaquaNatal) Orogeny. Palaeosinkholes comprise fourth-order controls, which are superimposed on higher order controls. Palaeosinkholes, which form the bulk of current mining, comprise deep, conical depressions with anomalous thicknesses of chert, chert breccia and haematite. Due to their limited size, the steepness of all units and the often chaotic nature of detached and slumped blocks in their centres, these volumes reflect longstanding models on palaeosinkhole development and very local ore control. (C) 2017 Elsevier B.V. All rights reserved.
机译:苏珊矿的完全受约束,隐含的3D地质模型揭示了矿石的原始,预先采矿几何形状,岩石岩石与矿化和主要结构。各种鳞片有几种重叠控制,层压和集角矿石的位置,深度和几何形状。这些控制中的大多数是结构的,或者可以与Maremane Dome的这部分的运动历史进行结构。通过整个3D模型,一系列近水平部分展示了这些控制重叠和相互作用的方式。一阶或大规模控制包括宽圆顶,其显示在其边缘周围的层压矿石的保存,其中发生了砾岩矿石的外部。二阶控制包括Grabens和Half-Grabens,它们通常被撞击持续正常断层束缚,其由于倒置而显示出在其西方侧翼上的故障阻力,以及保存的BIF相关的超烯矿石和砾岩矿石。一个类型的例子是SLOEP故障西部厚,深,线性的矿石。对矿化保存的三阶控制包括落后于重新激活的E-W,SE / ESE或NE / ENE / ENE趋势缀合物断层的阶梯。向南方推动可能归因于1.15-1.0 GA NNW定向的罗马尼亚(Namaquanatal)OrentoNy。 Palaeosinkholes包括四阶控制,它们叠加在更高阶控制上。帕拉韦斯克洞,形成大量电流开采,包括具有异常厚度的Chert,Chert Breccia和Hematite的深锥形凹陷。由于其有限的尺寸,所有单位的陡峭和他们中心的独立式和瘫痪的块的混乱性质,这些卷反映了古猪孔发育和非常局部矿石控制的长期模型。 (c)2017 Elsevier B.v.保留所有权利。

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