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Statistical categorization geochemical modeling of groundwater in Ain Azel plain (Algeria)

机译:艾因阿泽尔平原(阿尔及利亚)地下水的统计分类地球化学模拟

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摘要

Water analysis data of 54 groundwater samples from 18 uniformly distributed wells were collected during three campaigns (June. September and December 2004). Q-mode hierarchical cluster analysis (HCA) was employed for partitioning the water samples into hydrochemical facies. Interpretation of analytical data showed that the abundance of major ions was identified as follows: Ca ≥ Mg > Na > K and HCO_3 ≥ Cl > SO_4. Three major water facies are suggested by the HCA analysis. The samples from the area were classified as recharge area waters (Ca-Mg-HCO_3 water), transition area waters (Mg-Ca-HCO_3-Cl water), and discharge area waters (Mg-Ca-Cl-HCO_3 water). Inverse geochemical modeling suggests that relatively few phases are required to derive the water chemistry in the area. In a broad sense, the reactions responsible for the hydrochemical evolution in the area fall into two categories: (1) evaporite weathering reactions and (2) precipitation of carbonate minerals.
机译:在三个活动中(2004年6月,9月和2004年12月)收集了来自18个均匀分布的井的54个地下水样品的水分析数据。 Q型层次聚类分析(HCA)用于将水样划分为水化学相。分析数据的解释表明,鉴定出的主要离子丰度如下:Ca≥Mg> Na> K和HCO_3≥Cl> SO_4。 HCA分析提出了三个主要的水相。来自该地区的样品分为补给区水(Ca-Mg-HCO_3水),过渡区水(Mg-Ca-HCO_3-Cl水)和出水区水(Mg-Ca-Cl-HCO_3水)。地球化学反演表明,该地区的水化学推导需要相对较少的阶段。从广义上讲,负责该地区水化学演化的反应分为两类:(1)蒸发岩风化反应和(2)碳酸盐矿物的沉淀。

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