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Dynamic simulation of water resources in an urban wetland based on coupled water quantity and water quality models

机译:基于水量水质耦合模型的城市湿地水资源动态模拟

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Water quality in wetlands plays a huge role in maintaining the health of the wetland ecosystem. Water quality should be controlled by an appropriate water allocation policy for the protection of the wetlands. In this paper, models of rainfall/runoff, non-point source pollution load, water quantity/quality, and dynamic pollutant-carrying capacity were established to simulate the water quantity/quality of Xixi-wetland river network (in the Taihu basin, China). The simulation results showed a satisfactory agreement with field observations. Furthermore, a 'node-river-node' algorithm that adjusts to the 'Three Steps Method' was adopted to improve the dynamic pollutant-carrying capacity model and simulate the pollutant-carrying capacity in benchmark years. The simulation result shows that the water quality of the river network could reach class III stably all year round if the anthropogenic pollution is reduced to one-third of the current annual amount. Further investigation estimated the minimum amount of water diversion in benchmark years under the reasonable water quantity-regulating rule to keep water quality as class III. With comparison of the designed scale, the water diversion can be reduced by 184 million m(3) for a dry year, 191 million m(3) for a normal year, and 198 million m(3) for a wet year.
机译:湿地的水质在维护湿地生态系统的健康方面发挥着巨大作用。应通过适当的水分配政策来控制水质,以保护湿地。本文建立了降雨/径流,面源污染负荷,水量/水质和动态污染物承载力模型,以模拟西溪湿地河网(太湖流域)的水量/水质。 )。模拟结果表明与现场观察结果令人满意。此外,采用了一种适应“三步法”的“节点—河流—节点”算法,以改进动态污染物承载能力模型并模拟基准年的污染物承载能力。模拟结果表明,如果将人为污染降低到目前年排放量的三分之一,河网的水质将全年稳定达到III级。进一步的调查估计,在合理的水量调节规则下,基准年的最低引水量将水质保持在III级。通过与设计规模的比较,枯水期的引水量可减少1.84亿立方米(3),正常年份的引水量可减少1.91亿立方米(3),而湿润的年份可减少1.98亿立方米(3)。

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