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首页> 外文期刊>Journal of Contaminant Hydrology >Assessment and validation of groundwater vulnerability to nitrate in porous aquifers based on a DRASTIC method modified by projection pursuit dynamic clustering model
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Assessment and validation of groundwater vulnerability to nitrate in porous aquifers based on a DRASTIC method modified by projection pursuit dynamic clustering model

机译:基于投影寻踪动态聚类模型修正的DRASTIC方法评估地下水对多孔含水层中硝酸盐的脆弱性

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The groundwater vulnerability assessment has been identified as an important tool of groundwater pollution prevention. In this study, the DRASTIC method was modified to estimate the groundwater vulnerability of porous aquifers to nitrate. The parameter system was optimized by replacing the original parameters of aquifer media, soil media, impact of the vadose zone and hydraulic conductivity with quantitative parameters of aquifer thickness, nitrate attenuation intensity, hydraulic resistance and groundwater velocity and adding pollutant input intensity to develop the DRANTHVP method. In addition, the rating scale of the DRASTIC method was revised, and the weight and influence degree of each parameter were determined using the projection pursuit dynamic clustering (PPDC) model. The DRANTHVP method was applied to the plain area of western Jilin Province, and the vulnerability index map of groundwater to nitrate pollution was established. The DRANTHVP method improved the correlation coefficient between vulnerability index and nitrate concentration to 0.720, which was more than three times that of the original DRASTIC method. And the high variance of the (ANOVA) F statistic indicated that there was less overlap between the nitrate values in different vulnerability classes. Furthermore, the DRANTHVP method produced a more uniform distribution of vulnerability classes. In short, the DRANTHVP method using the PPDC model was suitable to assess the groundwater vulnerability of porous aquifers to nitrate in the study area. Hence, the mapping of groundwater vulnerability to nitrate can provide a scientific and reasonable basis for the formulation of groundwater resource protection plan.
机译:地下水脆弱性评估已被确定为预防地下水污染的重要工具。在这项研究中,对DRASTIC方法进行了修改,以估计多孔含水层对硝酸盐的地下水脆弱性。通过用含水层厚度,硝酸盐衰减强度,水力阻力和地下水速度的定量参数替换含水层介质,土壤介质,渗流带和水力传导率的原始参数,并添加污染物输入强度以开发DRANTHVP,对参数系统进行了优化。方法。此外,修订了DRASTIC方法的等级量表,并使用投影追踪动态聚类(PPDC)模型确定每个参数的权重和影响程度。将DRANTHVP方法应用于吉林省西部平原地区,建立了地下水对硝酸盐污染的脆弱性指数图。 DRANTHVP方法将脆弱性指数与硝酸盐浓度之间的相关系数提高到0.720,是原始DRASTIC方法的三倍以上。 (ANOVA)F统计量的高方差表明,在不同脆弱性类别中,硝酸盐值之间的重叠较少。此外,DRANTHVP方法产生了更脆弱的漏洞类别分布。简而言之,使用PPDC模型的DRANTHVP方法适合评估研究区域中多孔含水层对硝酸盐的地下水脆弱性。因此,绘制地下水对硝酸盐的脆弱性图可以为制定地下水资源保护计划提供科学合理的依据。

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