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Automated Core Logging Technology for Geotechnical Assessment: A Study on Core from the Cadia East Porphyry Deposit

机译:用于岩土性评估的自动核心测井技术:CADIA East Porphyry矿床核心研究

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摘要

The Cadia East porphyry deposit, located approximately 20 km south of Orange, New South Wales, Australia, contains a significant resource of copper and gold. This resource is hosted within the Forest Reefs Volcanics and is spatially and temporally associated with the Cadia Intrusive Complex. To extract ore, the underground mine currently uses the block cave mining method. The Cadia East geotechnical model provides data inputs into a range of numerical and empirical analysis methods that make up the foundation for mine design. These data provide input into the construction of stress models, caveability models, ground support design, and fragmentation analysis. This geotechnical model encompasses two commonly used rock classification systems that quantify ground conditions: (1) rock mass rating (RMR) and (2) rock tunneling quality index (Q index). The RMR and Q index are calculated from estimates of rock quality designation (RQD), number of fracture sets, fracture roughness, fracture alteration, and fracture spacing. Geologists and geotechnical engineers collect information used to produce these estimates by manually logging sections of drill core, a time-consuming task that can result in inconsistent data.
机译:澳大利亚新南威尔士州以南南部约20公里的Cadia East Porphyry Sopen含有大量铜和金币资源。该资源托管在森林珊瑚礁火山岩中,并且在空间和时间上与CADIA侵入性复杂相关。为了提取矿石,地下矿时目前使用块洞穴挖掘方法。 CADIA East岩土技术模型将数据输入提供成一系列数值和经验分析方法,构成矿井设计的基础。这些数据提供了应力模型,空纳率模型,地面支持设计和碎片分析的建设。这种岩土工程包括两个常用的岩石分类系统,该系统量化了地面条件:(1)岩体质量额定值(RMR)和(2)岩石隧道质量指数(Q指数)。 RMR和Q指数由岩石质量指定(RQD),骨折组数,断裂粗糙度,断裂变化和断裂间距的估计计算。地质学家和岩土工程师通过手动记录钻机核心的部分来收集用于生产这些估计的信息,这可能导致数据不一致的耗时的任务。

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