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An operational methodology for determining relevant DRASTIC factors and their relative weights in the assessment of aquifer vulnerability to contamination

机译:用于确定污染评估含水层脆弱性的相关激烈因子及其相对重量的操作方法

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摘要

The DRASTIC index used to assess the vulnerability of aquifers to contamination, has been subject to various adjustments to improve its reliability. These adjustments include adding and/or eliminating certain aquifer factors and modifying the factor weights. Nonetheless, there is no consensus about which factors, or their respective weights, are most important for assessing aquifer vulnerability. In the present study, we propose an operational methodology that: (1) identifies the relevant factors for assessing aquifer vulnerability to contamination; and (2) determines the relative importance of the selected factors. We applied this approach to a large data set of granular aquifers from a region in Canada, which includes information for DRASTIC factors, combined with groundwater quality and land-use data. We found that for our study region, topography (terrain-slope) is an irrelevant factor for assessing the vulnerability of aquifers to contamination. On the other hand, the relevant factors ranked according to their relative importance (from highest to lowest), are (1) water table depth; (2) hydraulic conductivity; (3) characteristics of vadose zone materials; and (4) recharge. Our approach can serve as an initial step for identifying the relevant aquifer factors when assessing aquifer vulnerability and determining the relative importance of the relevant factors to validate weights attributed to these factors. Our methodology can help adapt index-based methods of aquifer vulnerability assessment to a range of study regions.
机译:用于评估含水层脆弱污染的脆弱性的激烈指数一直受到各种调整,以提高其可靠性。这些调整包括添加和/或消除某些含水层因素并修改因子权重。尽管如此,对哪些因素或其各自的重量没有共识,对于评估含水层脆弱性最为重要。在本研究中,我们提出了一种操作方法,即:(1)确定用于评估污染含水层脆弱性的相关因素; (2)确定所选因素的相对重要性。我们将这种方法应用于从加拿大的一个地区的大型数据集的粒状含水层,其中包括用于激烈因素的信息,与地下水质量和土地利用数据相结合。我们发现,对于我们的学习区域来说,地形(地形斜率)是评估含水层污染的脆弱性的无关因素。另一方面,相关因素根据其相对重要性(从最高到最低)排名,是(1)水桌深; (2)液压导电; (3)Vadose区材料的特征; (4)充值。我们的方法可以作为识别在评估含水层脆弱性并确定相关因素的相对重要性,以确定相关因素的验证归因于这些因素的权重的初步步骤。我们的方法可以帮助将基于索引的含水层脆弱性评估的方法进行适应一系列的研究区域。

著录项

  • 来源
    《Environmental earth sciences》 |2021年第7期|281.1-281.19|共19页
  • 作者单位

    Univ Quebec Chicoutimi Dept Sci Appl Saguenay PQ G7H 2B1 Canada|Univ Quebec Chicoutimi Ctr Etud Ressources Miner Grp Rech Risque Ressource Eau Saguenay PQ G7H 2B1 Canada;

    Univ Quebec Chicoutimi Dept Sci Appl Saguenay PQ G7H 2B1 Canada|Univ Quebec Chicoutimi Ctr Etud Ressources Miner Grp Rech Risque Ressource Eau Saguenay PQ G7H 2B1 Canada;

    Univ Quebec Chicoutimi Dept Sci Appl Saguenay PQ G7H 2B1 Canada|Univ Quebec Chicoutimi Ctr Etud Ressources Miner Grp Rech Risque Ressource Eau Saguenay PQ G7H 2B1 Canada;

    Free Univ Berlin Inst Geol Sci Hydrogeol Grp D-12249 Berlin Germany;

    Anna Univ Dept Geol Chennai 600025 Tamil Nadu India;

    Univ Quebec Chicoutimi Dept Sci Appl Saguenay PQ G7H 2B1 Canada|Univ Quebec Chicoutimi Ctr Etud Ressources Miner Grp Rech Risque Ressource Eau Saguenay PQ G7H 2B1 Canada;

    AGH Univ Sci & Technol Fac Phys & Appl Comp Sci PL-30059 Krakow Poland;

    Univ Nat Resources & Life Sci Inst Soil Phys & Rural Water Management A-1190 Vienna Austria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogeology; Groundwater; DRASTIC; Water quality index; Land-use; Canada;

    机译:水文地质;地下水;急剧;水质指数;土地使用;加拿大;

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