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The Study of Processes Affecting Groundwater Hydrochemistry by Multivariate Statistical Analysis (Case Study: Coastal Aquifer of Ghaemshahr, NE-Iran)

机译:多元统计分析影响地下水水化学的过程研究(案例研究:Ghaemshahr,Ne-Iran的沿海含水层)

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To assess the quality of groundwater resources, samples were collected from 22 points for mean annual water years of 2003 and 2015 (mean minimum and maximum water table), and 19 parameters were examined and calculated. One of the objectives of this study was to evaluate the groundwater quality of the Ghaemshahr plain which includes the study of spatial and temporal changes of groundwater quality in different sectors and factors affecting it. In this study, combining statistical methods such as Pearson correlation coefficient, factor analysis, principal component analysis, and combined diagrams with hydrochemical methods are used to assess the chemical quality of groundwater. Samples were categorized by using cluster method and then the same samples were identified. Accordingly, samples were classified in four categories which represent the quality of groundwater in different districts. Factor analysis was used to identify the factors affecting the geochemical processes of the aquifer. Statistical methods showed that they can be used to complete the conventional methods in hydro-geochemistry as well as very precise results can be achieved. Based on the obtained results, saturation index of Ghaemshahr groundwater was super-saturated; and groundwater quality control of Ghaemshahr plain is hold by processes such as dissolution of halide (salt water intrusion of Caspian Sea and brackish fossil aquifers), calcite and dolomite (dissolution of limestone, dolomite, and marl in height), weathering sodium-rich plagioclases (clay minerals), and ion exchange.
机译:为了评估地下水资源的质量,从2003年和2015年的平均每年水中的22分收集样品(平均最小和最大水位),并检查和计算19个参数。本研究的目的之一是评估Ghaemshahr Plain的地下水质量,包括在不同部门和影响它的因素中的地下水质量的空间和时间变化研究。在本研究中,使用诸如Pearson相关系数,因子分析,主成分分析和具有水化学方法的组合图之类的统计方法来评估地下水的化学品质。通过使用聚类方法对样品进行分类,然后鉴定相同的样品。因此,样品分为四个类别,该类别代表了不同地区地下水的质量。因素分析用于识别影响含水层地球化学过程的因素。统计方法表明,它们可用于完成水力地球化学中的常规方法以及可以实现非常精确的结果。基于所得的结果,GhaemshahR地下水的饱和指数超饱和; Ghaemshahr Plain的地下水质量控制是由卤化物溶解(Caspian Hea和Brackish化石含水层的盐侵入),方解石和白云岩(石灰石,白云岩和Marl的溶解度)的过程,风化富含富含硫磺粘酶(粘土矿物质)和离子交换。

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