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首页> 外文期刊>South African Journal of Geology: Being the Transaction of the Geological Society of South African: Syndie die Verhandelinge van die Geologiese Vereniging van Suid-Afrika >THE PRACTICAL APPLICATION OF VECTAR PROCESSED DENSITIES IN PROVING THE LATERAL CONTINUITY OF COAL ZONES AND SAMPLES IN THE ELLISRAS BASIN, SOUTH AFRICA
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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

机译:矢量处理密度在提高南非埃利拉斯盆地的煤层和样品横向连续性中的实际应用

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摘要

The Ellisras Basin, with very large coal resources, is fault-bounded along its southern and northern margins and is a graben-type depository. The study area is situated in the south-western part of the Limpopo Province of the Republic of South Africa, where 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 tried and tested in industry over a long time. In the study 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 were then used to portray geophysically derived relative density cumulative distribution line diagrams (GDCDD) of the various lithotypes on either a sample-by-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 described accurately and substantiated, thereby providing a competent evaluator with an invaluable method in classifying coal resources in the Ellisras Basin.
机译:埃利斯拉斯盆地的煤炭资源非常丰富,其南部和北部边界沿断层界,是a陷型储层。研究区域位于南非共和国林波波省的西南部,该盆地受三个主要断层带的影响,其中,Eenzaamheid断层划定了其南部边界,Zoetfontein断层划了其北部边界,以及Daarby断层,向东北倾斜约350 m。沉积相的变化也影响了煤层的连续性,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工业上经过长时间尝试和测试的技术。在研究区域,从传统的空气和水测量方法得出的测量密度与从Vectar处理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”各种煤层和煤样的一种方法,决定计算所选地质交叉口中相对密度的分布。然后,将数据用于逐个样本或逐个区域描绘各种岩石类型的从地球物理上得出的相对密度累积分布线图(GDCDD)。使用所提出的分类方法,可以将各种煤层和煤层高度关联,并容易识别差异。岩性之间的横向相关性可以被准确地描述并得到证实,从而为称职的评估者提供了一种对埃利斯拉斯盆地煤炭资源进行分类的宝贵方法。

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