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    杨帆,黄玄,范子武,等. 城市河网工程群多目标联合调度优化模型[J]. 中国防汛抗旱,2024,34(9):38−46. DOI: 10.16867/j.issn.1673-9264.2024290
    引用本文: 杨帆,黄玄,范子武,等. 城市河网工程群多目标联合调度优化模型[J]. 中国防汛抗旱,2024,34(9):38−46. DOI: 10.16867/j.issn.1673-9264.2024290
    YANG Fan,HUANG Xuan,FAN Ziwu,et al.Multi-objective joint optimal regulation model of water works group in urban river network areas[J].China Flood & Drought Management,2024,34(9):38−46. DOI: 10.16867/j.issn.1673-9264.2024290
    Citation: YANG Fan,HUANG Xuan,FAN Ziwu,et al.Multi-objective joint optimal regulation model of water works group in urban river network areas[J].China Flood & Drought Management,2024,34(9):38−46. DOI: 10.16867/j.issn.1673-9264.2024290

    城市河网工程群多目标联合调度优化模型

    Multi-objective joint optimal regulation model of water works group in urban river network areas

    • 摘要: 城市河网工程群联合调度优化是一项复杂的系统工程,涉及多种闸、泵、堰等水利工程,是多时段、多对象、多约束、多目标非线性优化问题。基于此,提出了面向河网水环境改善目标的水工程群多目标联合调度优化模型,综合运用了“水量水质模型—优化调度模型—优化求解算法—方案优选方法”耦合方式,构建面向河网水环境改善的工程群多目标联合调度优化模型,并采用EM-MOPSO算法的优化模型求解、基于AHP-TOPSIS的联合调度方案优选,以实现对河网水工程群联合调度的优化与决策支持,选择了长三角地区某城市河网开展了优化模型关键技术的数值试验与案例分析。结果表明:相较于水工程常规调度方式,本优化模型可以减少河网生态引水量23.9%~28.5%、提升河网水体水质达标度11.8%~90.4%,优化模型能够支撑平原城市河网地区取得显著的防洪除涝、水资源调配、水环境改善等多方面的综合效益。

       

      Abstract: The joint scheduling optimization of water works group in urban river network areas is a complex system, involving numerous water projects such as floodgates, pumps, and weirs. It is a complex nonlinear optimization problem with multiple time periods, objects, constraints, and objectives. This article proposes a multi-objective joint scheduling optimization model for water works groups aimed at improving the water environment of river networks. The coupling method of "water quantity and quality model-optimal scheduling model-optimal solving algorithm-scenario optimization method" is comprehensively used to construct a multi-objective joint scheduling optimization model for water works groups aimed at improving the water environment of river networks. The EM-MOPSO algorithm is used to solve the optimization model, and the AHP-TOPSIS based joint scheduling scheme optimization to achieve optimization and decision support for the joint scheduling of water works group in river network areas. Numerical experiments and case analysis of key optimization model technologies are carried out in a river network of a city in the Yangtze River Delta region. The results show that compared with the conventional scheduling method of water engineering, this optimization model can reduce the ecological water diversion of the river network by 23.9%~28.5% and improve the water quality compliance of the river network by 11.8%~90.4%. The optimization model can support significant comprehensive benefits such as flood control, water resource allocation, and water environment improvement in plain urban river network areas.

       

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