Mathematical modeling of sewers under surcharge for real time control of combined sewer overflows

Sophie Duchesne, Alain Mailhot, Emeric Dequidt, Jean-Pierre Villeneuve
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引用次数: 64

Abstract

The efficiency of real time control (RTC) to decrease storm overflows from combined sewers to receiving waters was demonstrated in several case studies. Global predictive control (GPC), an effective strategy to perform real time management of sewers, requires simulation models to anticipate the future state of the system (flow rates and water levels). To compute these predictions, a hydraulic model using an implicit discretization scheme to solve simplified continuity and momentum equations was developed. The performance of the model is evaluated by comparison with the USEPA EXTRAN model results. This comparison shows that the model gives results similar to those of the EXTRAN model, with the advantage of producing faster and more stable results regardless of space and time steps used. Additional validation with the SUPERLINK model is also presented.

污水附加费下合流溢流实时控制的数学建模
几个案例研究证明了实时控制(RTC)在减少暴雨溢流从联合下水道到接收水方面的效率。全局预测控制(GPC)是一种对下水道进行实时管理的有效策略,它需要仿真模型来预测系统的未来状态(流量和水位)。为了计算这些预测,建立了一个采用隐式离散化方案求解简化的连续性和动量方程的水力模型。通过与USEPA EXTRAN模型结果的比较,对模型的性能进行了评价。这个比较表明,该模型给出的结果与EXTRAN模型相似,并且无论使用的空间和时间步长如何,都能产生更快、更稳定的结果。本文还对SUPERLINK模型进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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