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Physical design optimization of an urban runoff treatment system using Stormwater Management Model (SWMM)

机译:使用雨水管理模型(SWMM)优化城市径流处理系统的物理设计

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The study presented the application of Stormwater Management Model (SWMM) in determining the optimal physical design properties of an established low impact development (LID) system treating road runoff. The calibration of the model was based on monitored storm events occurring from May 2010 to July 2013. It was found that the total suspended solids was highly correlated with stormwater runoff volume and dominant heavy metal constituents in stormwater runoff, such lead, zinc and copper, with a Pearson correlation coefficient ranging from 0.88 to 0.95 (P < 0.05). Reducing the original ratio of the storage volume to surface area (SV/SA) of the facility and depth by 25% could match the satisfactory performance efficiency achieved in the original design. The smaller SV/SA and depth would mean a less costly system, signifying the importance of optimization in designing LID systems.
机译:该研究介绍了雨水管理模型(SWMM)在确定已建立的处理道路径流的低影响开发(LID)系统的最佳物理设计属性中的应用。该模型的校准基于2010年5月至2013年7月发生的受监视的暴雨事件。发现,总悬浮固体与雨水径流量和雨水径流中主要的重金属成分(如铅,锌和铜)高度相关,皮尔逊相关系数在0.88至0.95之间(P <0.05)。将设备的存储体积与表面积和深度的原始比率降低25%,可以匹配原始设计中令人满意的性能效率。较小的SV / SA和深度将意味着系统成本更低,这表明优化在设计LID系统中的重要性。

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