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Storm water management in an urban catchment: effects of source control and real-time management of sewer systems on receiving water quality

机译:城市集水区的雨水管理:源头控制和下水道系统实时管理对接收水质的影响

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For the examination of the effects of different storm water management strategies in an urban catchment area on receiving water quality, an integrated simulation of the sewer system, wastewater treatment plant and receiving water is carried out. In the sewer system real-time control measures are implemented. As examples of source control measures the reduction of wastewater and the reduction of the amount of impervious surfaces producing storm water discharges are examined. The surface runoff calculation and the simulation of the sewer system and the WWTP are based on a MATLAB(R)/SIMULINK(R) simulation environment. The impact of the measures on the receiving water is simulated using AQUASIM. It can be shown that the examined storm water management measures, especially the source control measures, can reduce the combined sewer overflow volume and the pollutant discharge load considerably. All examined measures also have positive effects on the receiving water quality. Moreover, the reduction of impervious surfaces avoids combined sewer overflow activities, and in consequence prevents pollutants from discharging into the receiving water after small rainfall events. However, the receiving water quality improvement may not be seen as important enough to avoid acute receiving water effects in general. [References: 12]
机译:为了检验城市集水区不同雨水管理策略对接收水质量的影响,对下水道系统,废水处理厂和接收水进行了集成模拟。在下水道系统中,实施了实时控制措施。作为水源控制措施的示例,研究了减少废水和减少产生雨水排放的不透水表面的数量。地表径流的计算以及下水道系统和污水处理厂的模拟均基于MATLAB / SIMULINK模拟环境。使用AQUASIM模拟了这些措施对接收水的影响。可以看出,所研究的雨水管理措施,特别是源头控制措施,可以大大减少下水道的综合溢流量和污染物排放负荷。所有检查过的措施也对接收水质产生积极影响。而且,不透水表面的减少避免了下水道的联合活动,从而防止了在小雨天之后污染物排放到接收水中。但是,一般来说,改善接收水的质量可能不足以防止其对接收水的急性影响。 [参考:12]

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