首页> 外文学位 >The practical application of Vectar Processed densities in proving the lateral continuity of coal Zones and Samples in the Ellisras Basin, South Africa in support of effective Mineral Resource adjudication.
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The practical application of Vectar Processed densities in proving the lateral continuity of coal Zones and Samples in the Ellisras Basin, South Africa in support of effective Mineral Resource adjudication.

机译:Vectar处理的密度在证明南非Ellisras盆地煤层和样品的横向连续性方面的实际应用,以支持有效的矿产资源裁决。

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摘要

The Ellisras Basin, with huge coal resources, is fault-bounded along its southern and northern margins and is a graben-type deposit. The study area is situated in the south-western part of the Limpopo Province of the Republic of South Africa and is geologically located in the Ellisras Basin. In this area the basin is influenced by three major fault zones, the Eenzaamheid Fault delineating its southern limit, the Zoetfontein Fault near its northern limit and the Daarby Fault, with a down-throw of approximately 350 m towards the north-east. Sedimentological facies changes also influence the continuity of the coal zones, with deterioration in coal development.;The use of slimline geophysical methods to log lithologies is a technique which has been used extensively in the mining industry over a number of years. At the Project area the correlation between the measured densities derived from the traditional method of air and water measurement and those derived from Vectar processed derived densities from geophysical logging is better than 95%. As a method of "fingerprinting" the various coal zones and samples it was decided to calculate the distribution of relative densities in the chosen geological intersection. The data was then used to portray geophysically derived relative density cumulative distribution line diagrams (GDCDD) of the various lithotypes on either a sampleby- sample or zone-by-zone basis.;Using the classification method proposed, the various coal seams and zones can be correlated to a high degree and discrepancies easily identified. The lateral correlation between lithologies can be accurately described and substantiated, and this would convince a Competent Person that the method proposed is invaluable in classifying coal resources in the coal basins.;The exploration project was a collaboration between two of the large role players in the South African coal mining industry Sasol and Exxaro, for the purpose of identifying whether the coal in the Ellisras Basin could be used for gasification purposes in the Sasol process, and that enough resources exist on the farms on which the two companies have the exploration rights.. The prospecting method used at the Project area, situated 50 kilometer west of the town of Lephalale in the Limpopo Province of South Africa, comprises the drilling of cored exploration boreholes on a random spacing of +/- 1 000 m x 1 000 m, together with infill percussion drilling.
机译:埃利斯拉斯盆地拥有丰富的煤炭资源,其南部和北部边缘是断层带,是and陷型矿床。研究区域位于南非共和国林波波省西南部,地质位置位于埃利斯拉斯盆地。在该地区,该盆地受到三个主要断层带的影响:划定其南端的埃恩扎姆海德断层,位于其北端附近的佐特方丹断层和达尔比断层,向东北倾倒约350 m。沉积相的变化也影响着煤区的连续性,使煤的发育恶化。;使用细线地球物理方法测井岩性是一种在采矿业已被广泛使用的技术。在项目区域,由传统的空气和水测量方法得出的测量密度与由Vectar处理过的地球物理测井得出的密度之间的相关性优于95%。作为“指纹图谱”各种煤层和样品的一种方法,决定计算所选地质交叉口中相对密度的分布。然后将这些数据用于在逐个样本或逐个区域的基础上描绘各种岩石类型的地球物理推导的相对密度累积分布线图(GDCDD);使用建议的分类方法,可以对各个煤层和区域进行分类高度相关,容易发现差异。可以正确描述和证实岩性之间的横向相关性,这会使有能力的人相信所提出的方法对于煤盆地中煤炭资源的分类具有不可估量的价值。勘探项目是两个主要角色之间的合作。南非煤炭开采业Sasol和Exxaro,目的是确定Ellisras盆地中的煤炭是否可以在Sasol过程中用于气化目的,以及两家公司拥有勘探权的农场上是否有足够的资源。 。位于南非林波波省Lephalale镇以西50公里的项目区域所使用的探矿方法包括一起钻探有芯勘探井,钻孔间距随机为+/- 1000 mx 1000 m填充敲击钻孔。

著录项

  • 作者

    Sullivan, John Hendrey.;

  • 作者单位

    University of Pretoria (South Africa).;

  • 授予单位 University of Pretoria (South Africa).;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 297 p.
  • 总页数 297
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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