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首页> 外文期刊>Journal of Water Resources Planning and Management >Coordinated Decentralization-Based Optimization of Disinfectant Dosing in Large-Scale Water Distribution Networks
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Coordinated Decentralization-Based Optimization of Disinfectant Dosing in Large-Scale Water Distribution Networks

机译:大型给水管网中基于协同分散的消毒剂量优化

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Disinfectants are typically used in water distribution networks (WDNs) to maintain the microbiological quality of potable water throughout the network. Disinfectant residual levels in such large distribution networks need to be maintained within the prescribed bounds to address two major problems: (1)preventing microbial regrowth, and (2)minimizing harmful disinfection by-product (DBP) formation resulting from high levels of the disinfectant itself. These requirements pose a two-point constrained control problem of disinfectant residual levels. Another important aspect of consideration is that such WDNs exhibit spatial and temporal variations in water quality at different points in the network. Therefore, conventional systems engineering tools such as modeling, optimization, and control need to be adapted to accommodate these variations for water quality management in distribution networks. In this paper, we propose a novel zone control based approach to address the two-point quality control problem. Further, to combat the spatial complexity, we combine the zone control approach with a decentralized optimization strategy, namely, the model coordination method, which has been widely proposed to solve large-scale optimization problems. The resulting novel formulation is proposed here to address the aforementioned problems in operational optimization of booster chlorination water distribution systems by using a realistic multispecies model developed from a previous study. We demonstrate the efficacy of this approach on a real-scale distribution network of Cherry Hill Brushy Plains (CH/BP) (EPANET Example network 2).
机译:消毒剂通常用于水分配网络(WDN)中,以维持整个网络中饮用水的微生物质量。在如此大的分销网络中,消毒剂的残留水平需要保持在规定的范围内,以解决两个主要问题:(1)防止微生物再生,以及(2)减少由于消毒剂含量高而导致的有害消毒副产物(DBP)的形成本身。这些要求构成了消毒剂残留量的两点约束控制问题。需要考虑的另一个重要方面是,此类WDN在网络的不同点处显示出水质的时空变化。因此,需要对诸如建模,优化和控制之类的常规系统工程工具进行调整,以适应配电网络中水质管理的这些变化。在本文中,我们提出了一种新颖的基于区域控制的方法来解决两点质量控制问题。此外,为了解决空间复杂性问题,我们将区域控制方法与分散的优化策略(即模型协调方法)相结合,该方法已被广泛提出来解决大规模优化问题。本文提出了一种新颖的配方,通过使用从以前的研究中开发出来的现实的多物种模型来解决增压氯化水分配系统运行优化中的上述问题。我们在Cherry Hill Brushy Plains(CH / BP)(EPANET示例网络2)的实际规模分销网络上证明了该方法的有效性。

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