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Calibration of Design Models for Leakage Management of Water Distribution Networks

机译:水分配网络泄漏管理设计模型的校准

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Water losses in urban water distribution networks (WDN) accelerate the deterioration of such infrastructures. The enhanced hydraulic modelling provides a phenomenological representation of WDN hydraulics, including the modelling of leakages as function of pipe average pressure and deterioration. The methodological use of such models on real WDN was demonstrated to support the planning of leakage management actions. Nonetheless, many water utilities are still in the process of designing flow/pressure monitoring, thus data available are not enough to perform detailed calibration of such models. This work presents a physically based approach for the calibration of WDN hydraulic models aimed at supporting leakage management plans since early stages. The proposed procedure leverages the key role of mass balance in enhanced hydraulic models and the technical insight on pipe deterioration mechanisms for various quantity and quality of available data. Two calibration studies of real WDNs demonstrate the feasibility of the approach and show that the distribution of leakages in the WDN does not much influence the pressure values, which confirms the need for flow measurements at monitoring districts for leakage and asset management.
机译:城市配水网络(WDN)中的水损加速了这种基础设施的恶化。增强型液压建模提供了WDN液压的现象学代表性,包括泄漏的建模作为管道平均压力和劣化的功能。现实WDN在真实WDN上的这种模型的方法使用,以支持泄漏管理行动的规划。尽管如此,许多水实用程序仍处于设计流量/压力监测的过程中,因此可用的数据不足以执行这种模型的详细校准。这项工作提出了一种物理上基于WDN液压模型的方法,旨在支持早期阶段以来支持泄漏管理计划。所提出的程序利用质量平衡在增强的液压模型中的关键作用以及对可用数据各种数量和质量的管道劣化机制的技术见解。真实WDN的两项校准研究证明了方法的可行性,并表明WDN泄漏分布不会影响压力值,这证实了在监测区域进行流量测量以进行泄漏和资产管理。

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