戴晶晶, 陈红, 彭焱梅, 张亚洲, 武剑, 胡庆芳. 太浦闸水量水质联合调度对金泽水库水质影响[J]. 水利水运工程学报, 2017, (4): 20-27. DOI: 10.16198/j.cnki.1009-640X.2017.04.004
引用本文: 戴晶晶, 陈红, 彭焱梅, 张亚洲, 武剑, 胡庆芳. 太浦闸水量水质联合调度对金泽水库水质影响[J]. 水利水运工程学报, 2017, (4): 20-27. DOI: 10.16198/j.cnki.1009-640X.2017.04.004
DAI Jingjing, CHEN Hong, PENG Yanmei, ZHANG Yazhou, WU Jian, HU Qingfang. Impacts of water quantity and quality joint operation for Taipu sluice on water quality in Jinze reservoir[J]. Hydro-Science and Engineering, 2017, (4): 20-27. DOI: 10.16198/j.cnki.1009-640X.2017.04.004
Citation: DAI Jingjing, CHEN Hong, PENG Yanmei, ZHANG Yazhou, WU Jian, HU Qingfang. Impacts of water quantity and quality joint operation for Taipu sluice on water quality in Jinze reservoir[J]. Hydro-Science and Engineering, 2017, (4): 20-27. DOI: 10.16198/j.cnki.1009-640X.2017.04.004

太浦闸水量水质联合调度对金泽水库水质影响

Impacts of water quantity and quality joint operation for Taipu sluice on water quality in Jinze reservoir

  • 摘要: 金泽水库是上海市黄浦江供水系统的重要组成部分,提高金泽水库水源地水质对保障上海居民饮用水安全具有重要意义。由于金泽水库的清水来源主要是东太湖,故研究了位于东太湖与太浦河之间的太浦闸调度方式对金泽水库水质的影响。分析了太浦河沿线水量水质监测资料,发现金泽水源地流量、水质与太浦闸下泄水量具有明显响应关系,加大太浦闸下泄水量可以减少太浦河两岸支流水量汇入,增加金泽水库水源地太湖清水所占比例,降低水源地关键污染物浓度。在此基础上,考虑金泽水源地水质需求,进一步设计了太浦闸水量水质联合调度方案。通过典型年数值模拟后发现,太浦闸采取水量水质联合调度方式不仅可以改善金泽水源地的水位条件,而且可有效改善该水源地水质,显著降低关键水质指标超过Ⅲ类标准的天数,从而提高金泽水源地取水安全保障程度。

     

    Abstract: Playing an important role in the water supply system of the Huangpu River in Shanghai, the water quality in the Jinze reservoir is significant for the drinking water security of the Shanghai city. Since the water of the Jinze reservoir mostly comes from the Taihu Lake, the water quality in the Jinze water source area is influenced by the operation schemes of the Taipu sluice, which is located at the mainstream of the Taipu River and controls the water from the Taihu Lake. After analyzing the observed hydrological data of the Taipu River, it is found that there exists a sensitive water quantity & quality response relationship between the Jinze water source area and the Taipu sluice. For the Jinze water source area, when the discharge from this sluice increases, water from the Taihu Lake increases, and that from the tributaries of the Taipu River decreases. Thus, the concentration of key water quality indicators at the Jinze water source area is reduced. Furthermore, to improve the water quality at the Jinze water source area, the water quantity and quality joint operation schemes for the Taipu sluice are designed. By simulating the water quantity and quality, the water quality improvements at the Jinze water source area are analyzed. The analysis results show that the water quantity and quality joint operation for the Taipu sluice can effectively improve both the water level and the key water quality indicators of the Jinze water source area.

     

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