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Geotechnical Strata Characterisation Using Geophysical Borehole Logs

机译:地球物理钻孔测井对岩土地层的表征

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Geophysical logging is routinely undertaken as part of most Australian coal mining exploration programs. Typically, the main application is the determination of coal seam depth and the qualitative estimation of coal quality, lithology and rock strength. For rock strength estimation, sonic transit times relate to the elastic properties of the rock and provide a general correlation with uniaxial compressive strength. However, experience has shown that site-specific relationships are necessary to account for different geological environments. In this paper we describe results from a series of recent studies that have provided a more comprehensive method of geotechnical strata characterisation using detailed lithological interpretation and rock property estimation from borehole logs. This has resulted in an improved method of estimating rock strength via the determination of the proportions of quartz and clay plus the porosity. We also propose a rock classification scheme based on geophysical log analysis. This builds on the existing acceptance of the sonic log as an indicator of rock strength and adds scores according to the moisture, cohesion, porosity and quartz content inferred from the geophysical logs. The new scheme can be related to existing mapping based schemes such as CMRR and the Q-system.
机译:作为大多数澳大利亚煤矿开采计划的一部分,常规进行地球物理测井。通常,主要应用是确定煤层深度以及对煤质,岩性和岩石强度进行定性估计。对于岩石强度估算,声波传播时间与岩石的弹性有关,并与单轴抗压强度具有一般的相关性。但是,经验表明,特定地点的关系对于考虑不同的地质环境是必要的。在本文中,我们描述了一系列最新研究的结果,这些研究使用详细的岩性解释和钻孔测井的岩石性质估计,提供了一种更全面的岩土层表征方法。通过确定石英和粘土的比例以及孔隙率,得出了一种改进的估算岩石强度的方法。我们还提出了基于地球物理测井分析的岩石分类方案。这建立在对声波测井仪作为岩石强度指标的现有接受度的基础上,并根据从地球物理测井仪推断出的水分,内聚力,孔隙度和石英含量增加了得分。新方案可以与现有的基于映射的方案(例如CMRR和Q系统)相关。

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