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比较拓扑、经验和基于优化的方法在供水管网质量检测点定位中的应用。

Comparison of topological, empirical and optimization-based approaches for locating quality detection points in water distribution networks.

机构信息

Dipartimento di Ingegneria, Università degli Studi della Campania "L. Vanvitelli", Aversa, Italy.

Istituto Studi Complessi, CNR, Rome, Italy.

出版信息

Environ Sci Pollut Res Int. 2021 Jul;28(26):33844-33853. doi: 10.1007/s11356-020-10519-3. Epub 2020 Aug 26.

Abstract

The positioning of quality detection points as well as the frequency of sampling is a crucial aspect for the implementation of Water Safety Plans (WSPs), which have been proposed worldwide to ensure water quality and to minimize the risk from contamination in water distribution networks (WDNs). In this regard, some international legislations and best practices about quality of drinking water suggest very fine sampling frequencies, but they do not specify where the detection points should be located in a WDN. In this paper, three different approaches, based on empiricism, optimization and topology, respectively, were applied to locate detection quality points in a WDN. The comparison highlighted that empirical approach commonly adopted by water utility practitioners is unsatisfactory. The optimization-based approach, although performing significantly better, is difficult to apply, since it requires a calibrated hydraulic model. The topological approach, based on the use of the betweenness centrality and not requiring any hydraulic information and simulation, proves to be effective, and it can be easily adopted by water utilities to identify the location for quality detection points, due to its simplicity compared with the optimization-based approach.

摘要

水质检测点的定位和采样频率是实施《水安全计划》(WSP)的关键环节,该计划已在全球范围内提出,旨在确保水质并最大程度地降低供水管网(WDN)中污染的风险。在这方面,一些国际法规和最佳饮用水质量实践建议非常频繁的采样频率,但它们并未指定在 WDN 中应在何处设置检测点。在本文中,分别应用了基于经验、优化和拓扑的三种不同方法来定位 WDN 中的检测质量点。比较结果表明,供水管理人员常用的经验方法并不令人满意。基于优化的方法虽然性能显著提高,但难以应用,因为它需要校准的水力模型。基于介数中心性的拓扑方法不需要任何水力信息和模拟,证明是有效的,并且由于与基于优化的方法相比,其简单性,它可以被供水管理部门轻松采用,以确定水质检测点的位置。

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