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Hydraulic optimisation of multiple flow control locations for the design of local real time control systems

机译:用于局部实时控制系统设计的多流量控制位置的液压优化

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Local real-time control (RTC) represents a potentially cost-effective solution for stormwater management in urban drainage systems. Existing methodologies to select the location of flow control devices (FCDs) are limited to single gate systems and are based on analysis of activated storage volume capacity, without considering hydrodynamic processes or rainfall characteristics. In this paper, a new genetic algorithm (GA)-based methodology is developed to determine the optimal location of multiple FCDs in urban drainage networks, when assessing RTC performance through hydraulic analysis. The methodology is tested on a case study network, where a high number of possible FCD location arrangements are tested and compared, and the RTC effectiveness in reducing combined sewer overflows has been evaluated over a range of design storm events. Results demonstrate the capability of the proposed method in selecting robust FCD placement strategies, for example when designing local RTC systems to meet specific performance criteria.
机译:本地实时控制(RTC)代表城市排水系统中的雨水管理潜在的经济有效解决方案。选择流量控制装置(FCD)的位置的现有方法仅限于单栅系统,并且基于激活存储容量的分析,而不考虑流体动力过程或降雨特性。本文在通过液压分析评估RTC性能时,开发了一种新的基于遗传算法(GA)基础的方法,以确定城市排水网络中多FCD的最佳位置。该方法在案例研究网络上测试,其中测试和比较了大量可能的FCD位置布置,并且在一系列设计风暴事件中评估了减少组合下水道溢出的RTC效能。结果展示了所提出的方法在选择鲁棒FCD放置策略方面的能力,例如在设计局部RTC系统以满足特定的性能标准时。

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