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An adaptive framework to differentiate receiving water quality impacts on a multi-scale level

机译:一个适应性框架,可以在多尺度上区分接收水质的影响

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摘要

The paradigm shift in recent years towards sustainable and coherent water resources management on a river basin scale has changed the subject of investigations to a multi-scale problem representing a great challenge for all actors participating in the management process. In this regard, planning engineers often face an inherent conflict to provide reliable decision support for complex questions with a minimum of effort. This trend inevitably increases the risk to base decisions upon uncertain and unverified conclusions. This paper proposes an adaptive framework for integral planning that combines several concepts (flow balancing, water quality monitoring, process modelling, multiobjective assessment) to systematically evaluate management strategies for water quality improvement. As key element, an S/P matrix is introduced to structure the differentiation of relevant 'pressures' in affected regions, i.e. 'spatial units', which helps in handling complexity. The framework is applied to a small, but typical, catchment in Flanders, Belgium. The application to the real-life case shows: (1) the proposed approach is adaptive, covers problems of different spatial and temporal scale, efficiently reduces complexity and finally leads to a transparent solution; and (2) water quality and emission-based performance evaluation must be done jointly as an emission-based performance improvement does not necessarily lead to an improved water quality status, and an assessment solely focusing on water quality criteria may mask non-compliance with emission-based standards. Recommendations derived from the theoretical analysis have been put into practice.
机译:近年来,向流域范围内的可持续和协调的水资源管理模式转变已将调查的主题改变为多尺度问题,这对参与管理过程的所有行为者都构成了巨大挑战。在这方面,计划工程师通常会面临固有的冲突,以最小的努力为复杂的问题提供可靠的决策支持。这种趋势不可避免地增加了根据不确定和未经验证的结论做出决策的风险。本文提出了一个自适应的整体规划框架,该框架结合了几个概念(流量平衡,水质监测,过程建模,多目标评估),以系统地评估改善水质的管理策略。作为关键要素,引入了S / P矩阵以构造受影响区域中相关“压力”(即“空间单位”)的差异,这有助于处理复杂性。该框架适用于比利时法兰德斯的一个小规模但典型的集水区。在现实生活中的应用表明:(1)所提出的方法是自适应的,涵盖了不同时空尺度的问题,有效地降低了复杂性,最终导致了透明的解决方案; (2)水质和基于排放的绩效评估必须同时进行,因为基于排放的绩效改善并不一定会导致水质状况的改善,而仅关注水质标准的评估可能会掩盖不符合排放标准基于标准。从理论分析得出的建议已付诸实践。

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