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An integrated approach to water distribution network monitoring and performance prediction using geographical information systems

机译:利用地理信息系统的水分配网络监测和性能预测的综合方法

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The deterioration of water distribution systems and the subsequent need for major rehabilitation has provided researchers with a challenge: to seek new techniques to facilitate decision-making and assist network planners. Consequently, a range of methods have been developed, concerning several key performance indicators. Those with the greatest potential tend to promote a pro-active approach to pipeline rehabilitation, by predicting future performance of individual or groups of pipes. Such an approach is essential if cost-effective solutions are to be found. Prediction models are based on indicators that are perceived to be the most appropriate for measuring and comparing an aspect of performance. The level of "appropriateness" is influenced not only by the availability of data and the ease at which it can be recorded, but also its accuracy and unambiguity. Consequently, indicators such as burst rates are widely used to assess structural performance. Ideally though, a more direct measure of the condition of a pipe could be used, such as its remaining wall thickness. This has previously been largely disregarded, due to the lack of appropriate (non-destructive) measurement technology. However, technological advances are being made to enable the inline monitoring of pipes and determination of deficiencies (particularly corrosion pits in cast iron pipes). This paper illustrates how online condition monitoring of distribution pipelines can be combined with existing prediction models, to facilitate the decision-making process. Integration is achieved through the use of a Geographical Information System (GIS), which greatly enhances representation of spatial and temporal information.
机译:水分配系统的恶化和随后的主要康复需求已经为研究人员提供了挑战:寻求新技术,以促进决策和协助网络规划者。因此,已经开发了一系列方法,涉及几个关键性能指标。具有最大潜力的人倾向于通过预测个人或管道群体的未来表现来促进管道康复的积极积极方法。如果要找到成本有效的解决方案,这种方法是必不可少的。预测模型基于被认为是最合适的测量和比较性能的指标。 “适当性”的水平不仅受到数据的可用性和可以记录的容易性的影响,而且影响其准确性和不曼比。因此,诸如突发率的指标被广泛用于评估结构性能。但是,理想情况下,可以使用更直接的管道状况,例如其剩余的壁厚。由于缺乏适当的(非破坏性)测量技术,这一直在很大程度上被忽视了。然而,正在进行技术进步以使管道的内联监测和缺陷的测定(特别是铸铁管中的腐蚀坑)。本文说明了分配管道的在线状况监测如何与现有的预测模型相结合,以促进决策过程。通过使用地理信息系统(GIS)实现集成,这大大增强了空间和时间信息的表示。

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