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首页> 外文期刊>Environmental earth sciences >Hydrogeological vulnerability and pollution risk mapping of the Saq and overlying aquifers using the DRASTIC model and GIS techniques, NW Saudi Arabia
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Hydrogeological vulnerability and pollution risk mapping of the Saq and overlying aquifers using the DRASTIC model and GIS techniques, NW Saudi Arabia

机译:沙特阿拉伯西北部使用DRASTIC模型和GIS技术绘制的Saq和上覆含水层的水文地质脆弱性和污染风险图

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摘要

Saq and overlying aquifers serve as important sources of water supply for agricultural and domestic usage in Saudi Arabia. Due to urbanization and growth in the agricultural sector, groundwater resources are over-exploited and are prone to quality deterioration. The aquifer vulnerability technique helps delineate areas according to the susceptibility to groundwater contamination. Various parameters pertaining to the surface and subsurface environment were synthesized to represent the data variation in the 3D horizon. Estimates of the parameters, such as recharge, soil media, and vadose zone, were obtained based on modified criteria to account for data variability. Statistical analysis indicates that the input parameters are independent and contribute individually to the vulnerability index. For vulnerability assessment, the DRASTIC model was considered due to the large number of data input parameters. Based on the vulnerability index, the study area is classified into low to very high vulnerability classes. To assess the human interaction on the groundwater environment, the land-use pattern was included as an additional input layer. Sensitivity analyses helped to compute the influence of the input layers on the vulnerability index and the model calibration through revised weights. The model validity tests were performed by comparing the NO3, SO4 and Cl concentration with the different vulnerability zones. The aquifer vulnerability maps developed in the present study may serve as an important tool for effective groundwater resource management.
机译:沙克地区及其上层含水层是沙特阿拉伯农业和家庭用水的重要水源。由于城市化和农业部门的增长,地下水资源被过度开发,质量容易下降。含水层脆弱性技术有助于根据对地下水污染的敏感性来划定区域。合成了与表面和地下环境有关的各种参数,以表示3D视界中的数据变化。根据修改后的标准来估算参数(例如补给,土壤介质和渗流区),以解决数据可变性问题。统计分析表明,输入参数是独立的,并且分别对漏洞指数有所贡献。对于漏洞评估,考虑使用DRASTIC模型,因为有大量的数据输入参数。根据漏洞指数,研究区域分为低至非常高的漏洞类别。为了评估人类在地下水环境中的相互作用,土地利用模式被作为附加的输入层。敏感性分析有助于通过修改权重来计算输入层对脆弱性指数和模型校准的影响。通过将NO3,SO4和Cl浓度与不同脆弱性区域进行比较,进行了模型有效性测试。本研究中开发的含水层脆弱性图可作为有效管理地下水资源的重要工具。

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