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Design and evaluation of control strategies in urban drainage systems in Kunming city

机译:昆明市城市排水系统控制策略设计与评价

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摘要

Real time control (RTC) of urban drainage systems (UDSs) is an important measure to reduce combined sewer overflow (CSO) and urban flooding, helping achieve the aims of 'Sponge City'. Application of RTC requires three main steps: strategy design, simulation-based evaluation and field test. But many of published RTC studies are system-specific, lacking discussions on how to design a strategy step by step. In addition, the existing studies are prone to use hydrologic model to evaluated strategies, but a more precise and dynamic insight into strategy performance is needed. To fill these knowledge gaps, based on a case UDS in Kunming city, a study on RTC strategy design and simulation-based evaluation is performed. Two off-line volume-based RTC strategy design principles, Maximize WWTP inflow and Make full use of space, are emphasized. Following these principles, a detailed design procedure is shown for the case UDS resulting in three RTC strategies: static, constant and equal filling. The proposed strategies are evaluated based on a hydrodynamic model- Storm Water Management Model (SWMM) - under four typical rainfall events characterized by different return periods (1-year or 0.5 year) and different spatial distributions (uniform or uneven). The equal filling strategy outperforms other two strategies and it can achieve 10% more CSO reduction and 5% more flooding reduction relative to the no-tank case.
机译:城市排水系统(UDS)的实时控制(RTC)是减少下水道溢流(CSO)和城市洪水的重要措施,有助于实现“海绵城市”的目标。 RTC的应用需要三个主要步骤:策略设计,基于仿真的评估和现场测试。但是,许多已发布的RTC研究都是针对特定系统的,缺少关于如何逐步设计策略的讨论。此外,现有研究倾向于使用水文模型来评估策略,但需要对策略绩效有更精确和动态的了解。为了填补这些知识空白,基于昆明市UDS案例,对RTC策略设计和基于仿真的评估进行了研究。强调了两个基于数量的离线RTC策略设计原则,即最大化WWTP流入量和充分利用空间。遵循这些原则,针对UDS案例展示了详细的设计过程,从而得出了三种RTC策略:静态,恒定和均等填充。在水动力模型-雨水管理模型(SWMM)的基础上,对所提出的策略进行了评估-在四个典型的降雨事件中,其特征是不同的回报期(1年或0.5年)和不同的空间分布(均匀或不均匀)。均等填充策略的性能优于其他两种策略,相对于无容器情况,它可以使CSO减少10%以上,洪水减少5%以上。

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