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From the Core Shed to the Project Bottom Line-Collection and Application of Mineral Exploration Data

机译:从核心流向项目底线收集和应用矿物勘探数据

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Efficient data collection adds value over the life of a mining project, especially when the end purposes of the database are fully considered at the beginning of the exploration stage. The process starts with optimizing entry forms and configuring a database to readily import and organize observations and analytical results. Development of a representative geological model is one of the main goals of the exploration process. This model's foundation is accurate and complete data collection from field observations, converted to a usable digital format. Logging of drill core or chips to generate a sub-surface data set is the emphasis, but the principles are also applicable to mapping. The modeling process starts with an effective database design, including input forms that facilitate both quantitative data collection and geological interpretation. Material types in a deposit are the result of many geological processes acting on a rock mass. Geological modeling, and therefore, data collection, is most efficient with a process-based approach. Initially, the model will depict lithological and other geological contacts and, where mineralized, grade domain boundaries. As a project advances to the development stage, the data set should allow delineation of material types leading to metallurgical, waste rock, and geotechnical characterization. Many observations, commonly overlooked by exploration geologists, can help define material properties required for designing metallurgical process and mine design. A wide array of mining applications should be considered at the beginning of an exploration program to fully define the data elements to be captured, interpreted and modeled. A complete and consistent data set adds value to the project and reduces risk to future development.
机译:有效的数据收集在挖掘项目的寿命中增加了值,特别是当在勘探阶段的开始时完全考虑数据库的结束目的时。该过程从优化输入表单和配置数据库以易于导入和组织观测和分析结果。代表地质模型的发展是勘探过程的主要目标之一。该模型的基础是从现场观察的准确性和完整的数据集合,转换为可用的数字格式。钻机核心或芯片的日志以生成子表面数据集的重点,但原理也适用于映射。建模过程从有效的数据库设计开始,包括输入形式,促进定量数据收集和地质解释。沉积物中的材料类型是许多地质过程作用于岩石的结果。地质建模,因此数据收集,以基于过程的方法最有效。最初,该模型将描绘岩性和其他地质接触,并且在矿化,等级域边界。随着项目进入发展阶段的进步,数据集应允许划定导致冶金,废岩和岩土性表征的材料类型。许多常见于勘探地质学家的观察结果,可以帮助定义设计冶金工艺和矿井设计所需的材料特性。在探索程序的开头时应考虑各种挖掘应用程序,以完全定义要捕获的数据元素,解释和建模。完整且一致的数据集为项目添加了值,并降低了未来发展的风险。

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