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Multi-objective optimization of stormwater pipe networks and on-line stormwater treatment devices in an ultra-urban setting

机译:超城市环境下雨水管网和在线雨水处理设备的多目标优化

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In a highly urbanized area, land availability is limited for the installation of space consuming stormwater systems for best management practices (BMPs), leading to the consideration of underground stormwater treatment devices connected to the stormwater pipe system. The configuration of a stormwater pipe network determines the hydrological and pollutant transport characteristics of the stormwater discharged through the pipe network, and thus should be an important design consideration for effective management of stormwater quantity and quality. This article presents a multi-objective optimization approach for designing a stormwater pipe network with on-line stormwater treatment devices to achieve an optimal trade-off between the total installation cost and the annual removal efficiency of total suspended solids (TSS). The Non-dominated Sorted Genetic Algorithm-II (NSGA-II) was adapted to solve the multi-objective optimization problem. The study site used to demonstrate the developed approach was a commercial area that has an existing pipe network with eight outfalls into an adjacent stream in Yongin City, South Korea. The stormwater management model (SWMM) was calibrated based on the data obtained from a subcatchment within the study area and was further used to simulate the flow rates and TSS discharge rates through a given pipe network for the entire study area. In the simulation, an underground stormwater treatment device was assumed to be installed at each outfall and sized proportional to the average flow rate at the outfall. The total installation cost for the pipes and underground devices was estimated based on empirical formulas using the flow rates and TSS discharge rates simulated by the SWMM. In the demonstration example, the installation cost could be reduced by up to 9% while the annual TSS removal efficiency could be increased by 4% compared to the original pipe network configuration. The annual TSS removal efficiency was relatively insensitive to the total installation cost in the Pareto-optimal solutions of the pipe network design. The results suggested that the installation cost of the pipes and stormwater treatment devices can be substantially reduced without significantly compromising the pollutant removal efficiency when the pipe network is optimally designed.
机译:在高度城市化的地区,土地面积有限,无法安装用于最佳管理实践(BMP)的空间消耗大的雨水系统,因此需要考虑与雨水管道系统相连的地下雨水处理设备。雨水管网的配置决定了通过管网排放的雨水的水文和污染物输送特性,因此,应成为有效管理雨水数量和质量的重要设计考虑因素。本文提出了一种多目标优化方法,用于设计带有在线雨水处理设备的雨水管网,以在总安装成本与总悬浮物(TSS)的年去除效率之间实现最佳平衡。采用非支配排序遗传算法-II(NSGA-II)解决了多目标优化问题。用于证明已开发方法的研究地点是一个商业区域,该区域具有现有的管网,并在韩国龙仁市的相邻溪流中有八个排水管。雨水管理模型(SWMM)基于从研究区域内子汇水面积获得的数据进行了校准,并进一步用于模拟整个研究区域中通过给定管网的流量和TSS排放率。在模拟中,假定在每个排污口都安装了地下雨水处理设备,其尺寸与排污口的平均流量成比例。管道和地下设备的总安装成本是根据经验公式使用SWMMM模拟的流量和TSS排放速率估算的。在演示示例中,与原始管网配置相比,安装成本可以降低多达9%,而每年的TSS去除效率可以提高4%。在管道网络设计的帕累托最优解决方案中,每年的TSS去除效率相对于总安装成本不敏感。结果表明,当优化设计管网时,可以显着降低管道和雨水处理设备的安装成本,而不会显着影响污染物的去除效率。

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