Water quality reliability based on an improved entropy in a water distribution system

Yumin Wang, Jianguo Zhu, G. Zhu
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Abstract

In this paper, information entropy was proposed to measure water quality reliability in a water distribution system (WDS), which had been applied to evaluate hydraulic reliability in the WDS. In the water quality reliability evaluation, residual chlorine is a representative of water quality, and a first-order decay model was usually adopted. The water quality reliability (R) based on water quality entropy (WQE) and improved water quality reliability (Rd) based on improved water quality entropy (IWQE) were proposed and compared for three networks. The method was developed based on the EPANET toolkit and MATLAB environment. The results indicated that flow entropy (FE) is strongly related to WQE, and improved flow entropy (IFE) is also strongly related to IWQE. In addition, Rd can reflect the effect of pipe velocity, whereas R can only reflect the effects of pipe flow and the WDS layout. The novelty of this paper is to develop the entropy with consideration of the pipe velocity to measure water quality liability as a surrogate index, which can reduce the calculation load and can be applied to a nonlinear system. The proposed water quality reliability evaluation method based on information entropy can help design, analyze, and improve the water quality in the WDS.
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基于改进熵的配水系统水质可靠性
本文提出了用信息熵度量配水系统水质可靠性的方法,并将其应用于配水系统的水力可靠性评价。在水质可靠性评价中,余氯是水质的代表,通常采用一阶衰减模型。提出了基于水质熵(WQE)的水质可靠度(R)和基于改进水质熵(IWQE)的改进水质可靠度(Rd),并对三个网络进行了比较。该方法是基于EPANET工具箱和MATLAB环境开发的。结果表明,流量熵(flow entropy, FE)与WQE密切相关,改进流量熵(improved flow entropy, IFE)也与IWQE密切相关。此外,Rd可以反映管道速度的影响,而R只能反映管道流量和WDS布置的影响。本文的新颖之处在于将考虑管道流速的熵作为衡量水质倾向性的替代指标,减少了计算量,可应用于非线性系统。提出的基于信息熵的水质可靠性评价方法有助于水源地水质的设计、分析和改善。
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