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Truncated Plurigaussian Simulations To Characterize Aquifer Heterogeneity

机译:截断的多元高斯模拟表征含水层非均质性

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Integrating geological concepts, such as relative positions and proportions of the different lithofacies, is of highest importance in order to render realistic geological patterns. The truncated plurigaussian simulation method provides a way of using both local and conceptual geological information to infer the distributions of the facies and then those of hydraulic parameters. The method (Le Loc'h and Galli 1994) is based on the idea of truncating at least two underlying multi-Gaussian simulations in order to create maps of categorical variable. In this article, we show how this technique can be used to assess contaminant migration in highly heterogeneous media. We illustrate its application on the biggest contaminated site of Switzerland. It consists of a contaminant plume located in the lower fresh water Molasse on the western Swiss Plateau. The highly heterogeneous character of this formation calls for efficient stochastic methods in order to characterize transport processes.
机译:为了绘制出真实的地质样式,整合诸如不同岩相的相对位置和比例之类的地质概念至关重要。截断的普里高斯模拟方法提供了一种使用局部和概念性地质信息来推断相以及水力参数分布的方法。该方法(Le Loc'h和Galli 1994)基于截断至少两个基础的多高斯模拟以创建分类变量映射的想法。在本文中,我们展示了如何使用此技术评估高度异质性介质中的污染物迁移。我们将举例说明其在瑞士最大的污染场地中的应用。它由位于瑞士西部高原较低的淡水Molasse中的污染物羽流组成。这种构造的高度异质性要求有效的随机方法来表征传输过程。

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