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首页> 外文期刊>Journal of Water Resources Planning and Management >Simulation and Control of Chlorine Levels in Water Distribution Networks
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Simulation and Control of Chlorine Levels in Water Distribution Networks

机译:供水管网中氯含量的模拟与控制

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摘要

Chlorine concentration is an important parameter used to assess the quality of water supplied by a distribution network. While several water quality simulators are readily available (e.g., EPANET software), water quality optimization decision support tools are currently lacking. A new control-oriented calculation model for chlorine concentrations in distribution networks is presented for general water distribution networks operating under periodic demand conditions. The model is based upon the analysis of the characteristic curves of the concentration transport-reaction equation over each pipe in a network. Numerical results are comparable with EPANET results, but unlike other water quality algorithms, the current method requires neither discretizations along the pipes, nor the choice of initial conditions. Moreover, it is a first step toward a method for controlling concentrations, yielding linear relationships between the concentrations at both ends of each pipe by the explicit inclusion of system dynamics. These relationships can be used as constraints in a linear programming optimization model that minimizes deviations from permissible concentration levels.
机译:氯气浓度是用于评估配电网供水质量的重要参数。尽管已经可以使用几种水质模拟器(例如EPANET软件),但是目前缺少水质优化决策支持工具。针对在周期性需求条件下运行的一般配水网络,提出了一种新的面向控制的配水网络中氯浓度计算模型。该模型基于对网络中每条管道上的浓度传输反应方程式的特征曲线的分析。数值结果与EPANET结果相当,但是与其他水质算法不同,当前方法既不需要沿管道离散化,也不需要选择初始条件。此外,这是朝着控制浓度的方法迈出的第一步,该方法通过明确包含系统动力学来在每条管道两端的浓度之间产生线性关系。这些关系可用作线性编程优化模型中的约束,该模型可最大程度地减少与允许浓度水平的偏差。

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