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The contribution of cluster and discriminant analysis to the classification of complex aquifer systems

机译:聚类和判别分析对复杂含水层系统分类的贡献

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摘要

This paper presents an innovated method for the discrimination of groundwater samples in common groups representing the hydrogeological units from where they have been pumped. This method proved very efficient even in areas with complex hydrogeological regimes. The proposed method requires chemical analyses of water samples only for major ions, meaning that it is applicable to most of cases worldwide. Another benefit of the method is that it gives a further insight of the aquifer hydrogeochemistry as it provides the ions that are responsible for the discrimination of the group. The procedure begins with cluster analysis of the dataset in order to classify the samples in the corresponding hydrogeological unit. The feasibility of the method is proven from the fact that the samples of volcanic origin were separated into two different clusters, namely the lava units and the pyroclastic-ignimbritic aquifer. The second step is the discriminant analysis of the data which provides the functions that distinguish the groups from each other and the most significant variables that define the hydrochemical composition of the aquifer. The whole procedure was highly successful as the 94.7 % of the samples were classified to the correct aquifer system. Finally, the resulted functions can be safely used to categorize samples of either unknown or doubtful origin improving thus the quality and the size of existing hydrochemical databases.
机译:本文提出了一种创新的方法来区分代表水泵所在水文地质单位的普通群体中的地下水样品。即使在水文地质条件复杂的地区,该方法也被证明非常有效。所提出的方法仅需对主要离子进行水样化学分析,这意味着该方法适用于全球大多数情况。该方法的另一个好处是,它提供了负责区分基团的离子,因此可以进一步了解含水层的水文地球化学。该程序从对数据集进行聚类分析开始,以便对相应水文地质单位中的样本进行分类。该方法的可行性从以下事实中得到证明:火山成因样品被分为两个不同的簇,即熔岩单元和火成屑-火成岩含水层。第二步是对数据进行判别分析,以提供区分各组的功能以及定义含水层水化学成分的最重要变量。整个过程非常成功,因为将94.7%的样品分类为正确的含水层系统。最后,所得函数可以安全地用于对来源不明或可疑的样本进行分类,从而改善现有水化学数据库的质量和规模。

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