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An Integrated Approach to Simulate and Validate Orebody Realizations with Complex Trends: A Case Study in Heavy Mineral Sands

机译:一种模拟和验证复杂趋势矿体实现的综合方法:以重矿物砂为例

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摘要

Characterization of spatial variability in earth science commonly requires random fields which are stationary within delineated domains. This contribution presents an alternative approach for simulating attributes in combination with a non-stationary first-order moment. A new procedure is presented to unambiguously decompose the observed behaviour into a deterministic trend and a stochastic residual, while explicitly controlling the modelled uncertainty. The practicality of the approach resides in a straightforward and objective inference of the variogram model and neighborhood parameters. This method does not require a prior removal of the trend. The inference principle is based on minimizing the deviation between empirical and theoretical errors calculated for increasingly distant neighborhood shells. Further, the inference is integrated into a systematic simulation framework and accompanying validation guidelines are formulated. The effort results in a characterization of the resource uncertainty of an existing heavy mineral sand deposit.
机译:在地球科学中,表征空间变异性通常需要随机场,这些场在所描绘的域内是固定的。此贡献提供了一种与非平稳一阶矩组合来模拟属性的替代方法。提出了一种新的程序,可以将观察到的行为明确地分解为确定性趋势和随机残差,同时明确控制建模的不确定性。该方法的实用性在于对变异函数模型和邻域参数的直接和客观的推断。此方法不需要事先删除趋势。推理原理基于最小化为越来越远的邻里壳而计算的经验误差与理论误差之间的偏差。此外,将推论整合到系统的仿真框架中,并制定相应的验证准则。这项工作导致了现有重矿物砂矿床资源不确定性的表征。

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