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    黄书海,刘来,董飞,等. 天津市中心城区面源污染及河道水动力水质模拟研究[J]. 中国防汛抗旱,2025,35(2):30−35. DOI: 10.16867/j.issn.1673-9264.2025044
    引用本文: 黄书海,刘来,董飞,等. 天津市中心城区面源污染及河道水动力水质模拟研究[J]. 中国防汛抗旱,2025,35(2):30−35. DOI: 10.16867/j.issn.1673-9264.2025044
    HUANG Shuhai,LIU Lai,DONG Fei,et al.Study on non-point source pollution and river hydrodynamic water quality modelling in central urban area of Tianjin City[J].China Flood & Drought Management,2025,35(2):30−35. DOI: 10.16867/j.issn.1673-9264.2025044
    Citation: HUANG Shuhai,LIU Lai,DONG Fei,et al.Study on non-point source pollution and river hydrodynamic water quality modelling in central urban area of Tianjin City[J].China Flood & Drought Management,2025,35(2):30−35. DOI: 10.16867/j.issn.1673-9264.2025044

    天津市中心城区面源污染及河道水动力水质模拟研究

    Study on non-point source pollution and river hydrodynamic water quality modelling in central urban area of Tianjin City

    • 摘要: 随着城市化进程的加快,天津市城区河道的水环境问题日益突出。为保障城市水环境安全,提高水资源利用效率,需要对天津市城区河网水动力水质特性进行深入分析。通过对研究区域进行实地调查,收集河道、管网、泵站等基础数据,在此基础上建立面源污染模型和河网水动力水质模型。该模型可模拟不同降雨情景下泵站排水情况及不同河道断面的水动力水质过程,揭示了降雨过程造成的城区面源污染和对河道水质的影响,为后续通过引调水改善河道水质提供技术支撑。

       

      Abstract: With the acceleration of urbanization, the water environment problems of urban rivers in Tianjin City have become increasingly prominent. In order to ensure the safety of urban water environment and improve the utilization efficiency of water resources, it is necessary to analyze the hydrodynamic and water quality characteristics of river networks in Tianjin urban areas. Through field investigation in the study area, basic data such as rivers, pipe networks, and pumping stations were collected; on this basis, a non-point source pollution model and a river network hydrodynamic and water quality model are established. The model can simulate the drainage of pumping stations under different rainfall scenarios and the hydrodynamic and water quality processes of different river sections. It reveals the urban non-point source pollution caused by rainfall process and its impact on riverine water quality, and provides technical support for the subsequent improvement of riverine water quality through water diversion in the future.

       

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