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The combination of principal component analysis and geostatistics as a technique in assessment of groundwater hydrochemistry in arid environment

机译:主成分分析与地统计学相结合的干旱环境地下水水化学评价技术

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摘要

Central Saudi Arabia is one of the most arid regions of the world with very little precipitation and extreme climatic conditions. In the absence of available surface water supplies, the non-renewable groundwater resources stored in the Palaeozoic and Mesozoic sedimentary formations form the most important source for irrigation and domestic water requirements. The present study deals with 97 groundwater samples collected from Saq aquifer, which is the major aquifer in the region. The study involves the use of principal component analysis (PCA) and variogram analysis for groundwater quality mapping. PCA helped in establishing a series of factorial variables that summarize all the hydrochemical information. Efforts have been made to identify the spatial development of the principal process acting on groundwater quality by mapping it using factorial variables and ordinary kriging techniques. Two principal components (PCs) were extracted revealing that the chemical characteristics of groundwater in the region were acquired through rock-water interactions and anthropogenic influences. Finally, by applying kriging interpolation technique on the factor distribution values for the two PCs in the area under investigation, the factor distribution maps were prepared. The results concluded that both natural and anthropogenic processes contribute to the groundwater quality, but anthropogenic impacts are more important and may result in further deterioration of groundwater quality if relevant protection methodologies are not adopted.
机译:沙特中部是世界上最干旱的地区之一,降水很少,气候条件极端恶劣。在没有可用地表水供应的情况下,存储在古生代和中生代沉积层中的不可再生地下水资源是灌溉和生活用水的最重要来源。本研究处理了从Saq含水层收集的97个地下水样品,该地区是该地区的主要含水层。这项研究涉及将主成分分析(PCA)和变异函数分析用于地下水质量制图。 PCA帮助建立了一系列因子变量,以汇总所有水化学信息。通过使用因子变量和普通克里金法对主要过程进行映射,已做出努力来确定影响地下水质量的主要过程的空间发展。提取了两个主要成分(PC),表明该区域地下水的化学特征是通过岩水相互作用和人为影响获得的。最后,通过对调查区域内两台PC的因子分布值应用克里格插值技术,绘制了因子分布图。结果得出结论,自然过程和人为过程都对地下水质量有影响,但是人为影响更为重要,如果不采用相关保护方法,可能会导致地下水质量进一步恶化。

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