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RAW MATERIALS FOR PORTLAND CEMENT: APPLICATIONS OF CONDITIONAL SIMULATION OF COREGIONALIZATION (GEOSTATISTICS).

机译:波特兰水泥的原材料:共区域化条件模拟的应用(地质统计学)。

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摘要

Modern cement plants commonly rely on homogenization and proportioning facilities to reduce the natural variability of incoming raw materials and to blend different materials into plant feeds satisfying strict chemical specifications. To determine appropriate designs and capacities for such facilities, plant designers must know the statistical behavior of each raw material arriving at the plant. However, if the quarries have not been opened yet, or if historical data on raw-material quality have not been kept, or if the materials to be quarried in the future differ appreciably from those used in the past, then only data extracted from exploratory drilling of the materials in the ground will be available.;Improved methods have been developed for creating statistically and geologically realistic conditional simulations of multivariate, or coregionalized, data such as complete rock analyses. These methods have been used to simulate chemical analyses of two limestone deposits currently being mined for cement manufacture. Simulations of alternative mining and homogenization procedures applied to one of the simulated deposits illustrate how conditional simulations can be employed to select the best mining and homogenization procedures before mining of the deposit has actually begun.;Fortunately, useful information can be obtained by combining conditional simulations of the deposits to be mined with simulations of likely mining procedures. A conditional simulation of a mineral deposit consists of a large set of simulated raw-materials analyses distributed among the nodes of a fine two- or three-dimensional grid covering the region of the deposit that is to be mined. These simulated data should possess all statistical properties, including spatial properties, that are suggested by the available data from the real deposit; furthermore, they should equal the data obtained from the real deposit at actual data locations. The output of a mining simulation applied to a simulated deposit is a time-series simulation of material compositions that mimics the statistical behavior of the real materials to be delivered to the plant in the future.
机译:现代水泥厂通常依靠均质和配料设备来减少进料原料的自然变异性,并将不同的物料掺入满足严格化学规格的植物饲料中。为了确定此类设施的适当设计和容量,工厂设计人员必须了解到达工厂的每种原材料的统计行为。但是,如果尚未打开采石场,或者未保存有关原材料质量的历史数据,或者将来要采石的材料与过去使用的材料有显着差异,则仅从探索性数据库中提取数据将可以在地下进行材料的钻探。已开发出改进的方法来创建统计或地质上现实的条件变量模拟(例如完整的岩石分析)的多变量或共分区数据。这些方法已用于模拟目前正在开采的用于水泥生产的两种石灰岩矿床的化学分析。应用于模拟矿床之一的替代开采和均质化程序的模拟说明了如何在实际开始开采矿藏之前可以采用条件模拟来选择最佳的开采和均质化程序。幸运的是,可以通过结合条件模拟来获得有用的信息模拟可能的采矿程序来开采矿床。矿床的条件模拟由分布在覆盖待开采矿床区域的精细二维或三维网格的节点之间的大量模拟原材料分析组成。这些模拟数据应具有所有统计属性,包括空间属性,这些属性由实际矿床的可用数据建议;此外,它们应等于在实际数据位置处从实际存款获得的数据。应用于模拟矿床的采矿模拟的输出是材料成分的时间序列模拟,该模拟模拟了将来要交付给工厂的真实材料的统计行为。

著录项

  • 作者

    LUSTER, GORDON RAY.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Mining engineering.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 553 p.
  • 总页数 553
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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