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Spatial Modeling of Geometallurgical Properties: Techniques and a Case Study

机译:地冶金学特征的空间建模:技术与案例研究

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摘要

High-resolution spatial numerical models of metallurgical properties constrained by geological controls and more extensively by measured grade and geomechanical properties constitute an important part of geometallurgy. Geostatistical and other numerical techniques are adapted and developed to construct these high-resolution models accounting for all available data. Important issues that must be addressed include unequal sampling of the metallurgical properties versus grade assays, measurements at different scale, and complex nonlinear averaging of many metallurgical parameters. This paper establishes techniques to address each of these issues with the required implementation details and also demonstrates geometallurgical mineral deposit characterization for a copper-molybdenum deposit in South America. High-resolution models of grades and comminution indices are constructed, checked, and are rigorously validated. The workflow demonstrated in this case study is applicable to many other deposit types.
机译:冶金性能的高分辨率空间数值模型受到地质控制的约束,更广泛地受实测品位和地质力学特性的约束,构成了地质冶金的重要组成部分。地统计学和其他数值技术经过改编和发展,以构建考虑所有可用数据的高分辨率模型。必须解决的重要问题包括:冶金性能与品位分析的不平等采样,不同规模的测量以及许多冶金参数的复杂非线性平均。本文建立了解决这些问题的技术,并提供了所需的实施细节,并演示了南美铜钼矿床的冶金冶金矿床特征。构建,检查并严格验证了等级和粉碎指数的高分辨率模型。本案例研究中演示的工作流程适用于许多其他存款类型。

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