Pump schedules optimisation with pressure aspects in complex large-scale water distribution systems

Q2 Engineering
P. Skworcow, Daniel Paluszczyszyn, B. Ulanicki
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引用次数: 23

Abstract

Abstract. This paper considers optimisation of pump and valve schedules in complex large-scale water distribution networks (WDN), taking into account pressure aspects such as minimum service pressure and pressure-dependent leakage. An optimisation model is automatically generated in the GAMS language from a hydraulic model in the EPANET format and from additional files describing operational constraints, electricity tariffs and pump station configurations. The paper describes in details how each hydraulic component is modelled. To reduce the size of the optimisation problem the full hydraulic model is simplified using module reduction algorithm, while retaining the nonlinear characteristics of the model. Subsequently, a nonlinear programming solver CONOPT is used to solve the optimisation model, which is in the form of Nonlinear Programming with Discontinuous Derivatives (DNLP). The results produced by CONOPT are processed further by heuristic algorithms to generate integer solution. The proposed approached was tested on a large-scale WDN model provided in the EPANET format. The considered WDN included complex structures and interactions between pump stations. Solving of several scenarios considering different horizons, time steps, operational constraints, demand levels and topological changes demonstrated ability of the approach to automatically generate and solve optimisation problems for a variety of requirements.
复杂的大型配水系统中压力方面的泵调度优化
摘要考虑最小使用压力和压力相关泄漏等压力因素,本文研究了复杂大型配水网络(WDN)中泵阀调度的优化问题。通过EPANET格式的水力模型和描述操作约束、电价和泵站配置的附加文件,可以用GAMS语言自动生成优化模型。本文详细介绍了如何对每个液压元件进行建模。为了减小优化问题的规模,采用模块约简算法对全水工模型进行了简化,同时保留了模型的非线性特性。然后,利用非线性规划求解器CONOPT求解优化模型,该优化模型以不连续导数非线性规划(DNLP)的形式进行求解。采用启发式算法对CONOPT生成的结果进行进一步处理,生成整数解。在以EPANET格式提供的大规模WDN模型上对该方法进行了测试。考虑的WDN包括复杂的结构和泵站之间的相互作用。考虑到不同的视界、时间步骤、操作约束、需求水平和拓扑变化,解决了几个场景,证明了该方法能够自动生成和解决各种需求的优化问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Drinking Water Engineering and Science
Drinking Water Engineering and Science Environmental Science-Water Science and Technology
CiteScore
3.90
自引率
0.00%
发文量
3
审稿时长
40 weeks
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