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Application of truncated plurigaussian method for the reactive transport modeling of a contaminated aquifer

机译:截短的多头斯法在受污染含水层的反应运输建模中的应用

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Characterizing the spatial distribution of major lithofacies and their connectivity is a key aspect in the process of modeling contaminant transport in aquifers and also in characterizing the potential exposure pathways of contamination in the conceptual model of risk analysis. In heterogeneous aquifers, assignment of lithofacies-specific hydraulic and hydrochemical properties such as porosity, permeability, and sorption coefficient requires the knowledge of the layout of the lithofacies themselves. Plurigaussian simulation is a procedure derived from the truncated Gaussian model, used to simulate random sets, and, in particular, complex geological characteristics, expressed as categorical variables. Moreover, it allows to obtain geological representations conditioned to the input information. In this paper Truncated Plurigaussian simulation has been applied to reproduce the lithofacies geometry of a site whose level of contamination has already been studied. The study area, which belongs to a wide industrial district, presents a condition of contamination of soil and groundwater of difficult interpretation. In this context, the exact definition of the hydrogeological model allows to better interpret the complex phenomena of delay and reactive transport that can affect the remediation interventions.
机译:特征在于主要岩纤维的空间分布及其连通性是在风险分析概念模型中的污染潜在曝光途径的构建过程中的一种关键方面。在异质含水层中,锂缺失的液压和水化学性质如孔隙率,渗透性和吸附系数的分配需要了解岩石缩陷的布局。 plurigaussian仿真是一种源自截断的高斯模型的过程,用于模拟随机集,特别是复杂的地质特征,表示为分类变量。此外,它允许获得调节到输入信息的地质表示。在本文中,已经应用了截短的多头斯西仿真来再现污染水平的网站的岩石缩略图几何形状。属于宽工业区的研究区呈现了难以解释的土壤和地下水的条件。在这种情况下,水文地质模型的确切定义允许更好地解释可能影响修复干预的延迟和反应运输的复杂现象。

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