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首页> 外文期刊>Hydrogeology journal >Groundwater flow and hydrogeochemical evolution in the Jianghan Plain, central China
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Groundwater flow and hydrogeochemical evolution in the Jianghan Plain, central China

机译:中国中部江汉平原地下水流动和水文地球化学演变

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Hydrogeochemical analysis and multivariate statistics were applied to identify flow patterns and major processes controlling the hydrogeochemistry of groundwater in the Jianghan Plain, which is located in central Yangtze River Basin (central China) and characterized by intensive surface-water/groundwater interaction. Although HCO3-Ca-(Mg) type water predominated in the study area, the 457 (21 surface water and 436 groundwater) samples were effectively classified into five clusters by hierarchical cluster analysis. The hydrochemical variations among these clusters were governed by three factors from factor analysis. Major components (e.g., Ca, Mg and HCO3) in surface water and groundwater originated from carbonate and silicate weathering (factor 1). Redox conditions (factor 2) influenced the geogenic Fe and As contamination in shallow confined groundwater. Anthropogenic activities (factor 3) primarily caused high levels of Cl and SO4 in surface water and phreatic groundwater. Furthermore, the factor score 1 of samples in the shallow confined aquifer gradually increased along the flow paths. This study demonstrates that enhanced information on hydrochemistry in complex groundwater flow systems, by multivariate statistical methods, improves the understanding of groundwater flow and hydrogeochemical evolution due to natural and anthropogenic impacts.
机译:适用于水文地质分析和多元统计,识别控制江汉平原地下水水文地球化学系统的流动模式和主要过程,位于长江中部(中国中部),其特点是深入的表面水/地下水相互作用。虽然研究区域中主要的HCO3-CA-(MG)型水势,但通过等级聚类分析将457(21个地表水和436个地下水)样品有效地分为五种簇。这些集群中的水化学变化受因素分析的三个因素的管辖。地表水和地下水中的主要成分(例如,Ca,Mg和HCO3)起源于碳酸盐和硅酸盐风化(因子1)。氧化还原条件(因子2)影响了浅层狭窄地下水中的生物肥和污染。人为的活性(因子3)主要在地表水和潜水地下水中引起高水平的Cl和SO4。此外,浅层限制含水层中的样品的因子得分1沿流动路径逐渐增加。本研究表明,通过多变量统计方法,通过多变量统计方法增强了对复杂地下水流动系统中的水化学的信息,提高了由于天然和人为的影响因地下水流动和水文地代理的理解。

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