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A decision tree tool supporting the assessment of groundwater vulnerability

机译:支持评估地下水脆弱性的决策树工具

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摘要

The Water Framework Directive and Groundwater Directive aim at preserving and improving the groundwater status. Groundwater bodies are classified as being or not being at risk of failing to meet these objectives. Those at risk are subject to more precise risk assessment where the concept of vulnerability is considered in the pathway part of the source-pathway-receptor scheme. However, no further details on implementation strategies are provided. In order to support groundwater managers and decision-makers in implementation of programs protecting groundwater, a systematic operational approach based on a decision tree is proposed, which leads the user through the stages of vulnerability assessment. First, a problem has to be formulated related to a threatening of the quantitative and/or qualitative status of a groundwater body. Next, the stated problem needs to be related to the intrinsic or specific vulnerability. Methods used for the intrinsic vulnerability assessment belong to two categories: subjective rating and objective methods. Method selection depends primarily on: data availability, knowledge and available resources. A key issue is the lag time associated with transport between a source/event of contamination and the water body. This lag time is primarily controlled by the temporal scale of water flow. It provides information about flow processes and at the same time also about timescales required for the implementation of strategies. Effects of any measures taken cannot be observed immediately but at the earliest after these estimated lag times emphasizing the need to also proactively safeguard groundwater resources and preserve their good status.
机译:《水框架指令》和《地下水指令》旨在维护和改善地下水状况。地下水体被分类为有或没有达到这些目标的风险。那些处于危险之中的人将接受更精确的风险评估,在源-途径-受体方案的途径部分中考虑脆弱性的概念。但是,未提供有关实施策略的更多详细信息。为了支持地下水管理者和决策者实施保护地下水的计划,提出了一种基于决策树的系统性操作方法,该方法可指导用户完成脆弱性评估的各个阶段。首先,必须提出与威胁地下水体的定量和/或定性状态有关的问题。接下来,所述问题需要与固有漏洞或特定漏洞相关。用于内部脆弱性评估的方法分为两类:主观评分和客观方法。方法的选择主要取决于:数据的可用性,知识和可用资源。一个关键问题是与污染源/事件和水体之间的运输相关的滞后时间。滞后时间主要由水流的时间尺度控制。它提供有关流程的信息,同时还提供实施策略所需的时间尺度。不能立即观察到采取任何措施的效果,而是要在这些估计的滞后时间之后最早观察到,这强调了也必须积极保护地下水资源并保持其良好状态的必要性。

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