首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Enhanced geological modelling of the Upper Elsburg reefs and VCR to optimize mechanized mine planning at South Deep Gold Mine
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Enhanced geological modelling of the Upper Elsburg reefs and VCR to optimize mechanized mine planning at South Deep Gold Mine

机译:增强了上艾尔斯堡礁和VCR的地质建模,以优化南深金矿的机械化矿山规划

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摘要

South Deep Gold Mine, owned by Gold Fields Ltd., is situated near Westonaria in the Gauteng Province of South Africa and mines the conglomerate bands of the Upper Elsburg reefs (Mondeor Conglomerate Formation) of the Witwatersrand Supergroup and the Ventersdorp Contact Reef (VCR) of the Ventersdorp Supergroup. The stoping and underground developments are mechanized. The Upper Elsburg reefs are mined by a variety of mining methods, including mechanized drift and fill, modified drift and bench, longhole stoping, and low-profile mining. Optimal mine design and scheduling for deep-level mechanized mining are complex, and success is highly dependent on detailed, robust, and accurate geological and geostatistical models.Geological structures significantly influence the sedimentological characteristics, distribution, and preservation of the Upper Elsburg reefs and VCR. Accordingly, particular emphasis is placed on the generation of a mine-scale structural model that accommodates the relationships between the older north-trending fault systems (West Rand and Panvlakte faults) and younger east-trending dextral wrench faults. Results from underground mapping, borehole intersections, and high-resolution three-dimensional seismic data have been integrated to produce coherent three-dimensional geological models.The Upper Elsburg reefs suboutcrop against the VCR and comprise an easterly diverging clastic wedge, thickening from the suboutcrop position, to approximately 130 m at the mine's eastern boundary. The Upper Elsburg reefs are characterized by conglomerate and quartzite bands forming multiple, stacked, upward-fining unconformity-bounded couplets. Palaeocurrent directions are dominantly from west-northwest to east-southeast, indicating that the more proximal deposits are preserved close to the suboutcrop, with distal fades to the east.Sedimentological modelling is applied to individual stratigraphic units and caters for facies definition. This is achieved through channel width (CW) kriging and fitting of type sections to borehole and mapping data. Homogenous geological geozones for each stratigraphic unit are thus defined within individual structural blocks on the basis of those sedimentological parameters that have been found to have a positive spatial correlation to gold concentration. These geozones then serve as constraints to the evaluation of the orebody.This contribution presents a summary of the modelling processes that are currently applied in the development of high-confidence, timeously produced geological models that are essential input for mineral resource estimation and mechanized mine planning and scheduling.
机译:Gold Fields Ltd.拥有的South Deep金矿位于南非豪登省Westonaria附近,在Witwatersrand超级集团和Elter Vendorsdorp接触礁(VCR)的上Elsburg礁(Mondeor砾岩组)的砾岩带上开采Ventersdorp超级集团的成员。停止和地下开发是机械化的。上艾尔斯堡堡礁通过多种采矿方法进行开采,包括机械化的漂流和填土,改良的漂流和台阶,长孔停止和低调采矿。深层机械化开采的最佳矿山设计和调度很复杂,成功与否在很大程度上取决于详细,可靠,准确的地质和地统计学模型。地质结构会极大地影响上艾尔斯堡礁和VCR的沉积学特征,分布和保存。因此,将特别重视矿山规模的结构模型的生成,该模型适应了较旧的北向断裂系统(西兰德和Panvlakte断层)和较年轻的东向右旋扳手断裂之间的关系。地下测绘,井眼交叉点和高分辨率三维地震数据的结果已整合在一起,以产生连贯的三维地质模型。上伏伊尔堡礁的暗露与VCR相对,并包括一个向东发散的碎屑楔,从该露头的位置变厚,到矿山东部边界约130 m。上艾斯堡堡礁的特征是砾岩和石英岩带形成多个堆叠的,向上细化的不整合边界。古洋流方向主要是从西北偏西到东南偏东,这表明更多的近端沉积物保留在近露头附近,向东逐渐消失。沉积学建模适用于单个地层单元并满足相定义。这是通过通道宽度(CW)克里金和将型材装配到钻孔和地图数据中来实现的。因此,根据已发现与金浓度具有正空间相关性的那些沉积学参数,在各个结构块内定义了每个地层单元的均质地质地理区。然后这些地质区成为矿体评估的制约因素。此文稿总结了建模过程的摘要,这些建模过程目前用于开发高可信度,及时生成的地质模型,这些模型对于矿产资源估算和机械化矿山规划至关重要和调度。

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