Defining optimal drill-hole spacing: A novel integrated analysis from exploration to ore control

IF 0.9 4区 材料科学 Q3 Materials Science
B.C. Afonseca, V. Miguel-Silva
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引用次数: 0

Abstract

Drill-hole spacing analysis (DHSA) and optimization are becoming commonplace for uncertainty assessment and management in the mining industry. However, there is no standardized DHSA workflow, and the outputs of certain methodologies are not interchangeable. We group available simulation-based DHSA methods according to their accounted uncertainty into (i) raw uncertainty, assessed by drawing realizations from synthetic data-sets with the drilling spacings to be tested; and (ii) model uncertainty, in which these synthetic data-sets are used to assess the variation between the estimated model and the (unknown) actual value. DHSA workflows available in the literature ignore the differences between both types of uncertainty. Commonly, the DHSA algorithm is chosen without a detailed analysis of its uncertainty output, which may lead to misleading results and suboptimal decisions. While available solutions are based only on assessing raw or model uncertainty, the proposed approach simultaneously analyses both and their relationship for models at different stages of the mine. The integrated analysis results deliver more information to support decision-making than available methods. Principles, practical considerations, and discussions of the advantages of the proposed integrated analysis are presented. The approach is applied to a real gold deposit to illustrate its use.
确定最佳钻孔间距:从勘探到控矿的一种新的综合分析
钻孔间距分析(DHSA)和优化在采矿业的不确定性评估和管理中越来越普遍。然而,没有标准化的DHSA工作流程,某些方法的输出是不可互换的。我们根据可用的基于模拟的DHSA方法的不确定性将其分为(i)原始不确定性,通过从具有待测试钻孔间距的合成数据集中提取实现来评估;以及(ii)模型不确定性,其中这些合成数据集用于评估估计模型和(未知)实际值之间的变化。文献中可用的DHSA工作流程忽略了两种类型的不确定性之间的差异。通常,选择DHSA算法时没有对其不确定性输出进行详细分析,这可能导致误导性结果和次优决策。虽然可用的解决方案仅基于评估原始或模型的不确定性,但所提出的方法同时分析了矿山不同阶段模型的不确定度及其关系。综合分析结果提供了比现有方法更多的信息来支持决策。介绍了所提出的综合分析的原则、实际考虑和优点讨论。将该方法应用于一个真实的金矿床,以说明其用途。
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来源期刊
CiteScore
1.50
自引率
11.10%
发文量
61
审稿时长
4-8 weeks
期刊介绍: The Journal serves as a medium for the publication of high quality scientific papers. This requires that the papers that are submitted for publication are properly and fairly refereed and edited. This process will maintain the high quality of the presentation of the paper and ensure that the technical content is in line with the accepted norms of scientific integrity.
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