Geological modeling of rock type domains in the Balya (Turkey) lead-zinc deposit using plurigaussian simulation

T. Y. Yunsel, A. Ersoy
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引用次数: 11

Abstract

Mineral resource evaluation requires defining geological rock-type domains. The traditional simulation methods have serious limitations for applications to large numbers of domains, which have complex contact relations. Plurigaussian simulation is an effective method which can be applied, in a simple way, to any number of domains, using both local and global geological information to infer the distributions of rock types. This work not only presents the application of the plurigaussian simulation method to the Balya lead-zinc deposit, but also assesses the spatially varying rock type proportions, and accounts for uncertainties between them. These parameters are extremely important for mining deposits, since the mineralizations of interest generally occur only in certain rock types. Furthermore, being able to model the different geological rock types is vital to good mine operations, production planning, and management. The results indicate that the plurigaussian method correctly reproduces the different orientations of the individual rock types, as seen in drill holes, and the proportion of each rock type, even if this varies in space.
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土耳其Balya铅锌矿岩型域多高斯模拟地质建模
矿产资源评价需要确定地质岩石类型域。传统的仿真方法对于具有复杂接触关系的大量领域的应用存在严重的局限性。多元高斯模拟是一种有效的方法,它可以简单地应用于任意数量的域,利用局部和全局的地质信息来推断岩石类型的分布。本文不仅介绍了多元高斯模拟方法在巴利亚铅锌矿床上的应用,还对岩石类型比例的空间变化进行了评价,并对它们之间的不确定性进行了解释。这些参数对矿藏极为重要,因为感兴趣的矿化通常只发生在某些岩石类型中。此外,能够对不同的地质岩石类型进行建模对于良好的矿山操作、生产计划和管理至关重要。结果表明,多元高斯方法正确地再现了钻孔中单个岩石类型的不同方向,以及每种岩石类型的比例,即使这种比例在空间上是不同的。
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Central European Journal of Geosciences
Central European Journal of Geosciences GEOSCIENCES, MULTIDISCIPLINARY-
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