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Model based hydropower gate operation for mitigation of CSO impacts by means of river base flow increase

机译:基于模型的水力闸门运行,可通过增加河基流量来缓解CSO影响

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In river stretches being subjected to flow regulation, usually for the purpose of energy production (e.g. Hydropwer) or flood protection (river barrage), a special measure can be taken against the effect of combined sewer overflows (CS Os). The basic idea is the temporal increase of the river base flow (during storm weather) as an in-stream measure for mitigation of CSO spilling. The focus is the mitigation of the negative effect of acute pollution of substances. The measure developed can be seen as an application of the classic real time control (RTC) concept onto the river system. Upstream gate operation is to be based on real time monitoring and forecasting of precipitation. The main objective is the development of a model based predictive control system for the,gate operation, by modelling of the, overall wastewater system (incl. the receiving water). The Cain emphasis is put on the operational strategy and the appropriate short-term forecast of spilling events. The potential of the measure is tested for the application of the operational strategy and its ecological and economic feasibility. The implementation of such an in-stream measure into the hydropower's operational scheme is unique. Advantages are (a) the additional in-stream dilution of acute pollutants entering the receiving water and (b) the resulting minimization of the required CSO storage volume.
机译:在受到流量调节的河段中,通常出于能源生产(例如水力发电站)或防洪(河道拦河坝)的目的,可以采取特殊措施来防止下水道联合溢流(CS Os)的影响。基本思想是河流底流量的临时增加(在暴风雨天气期间),作为缓解CSO溢出的河内措施。重点是减轻物质急性污染的负面影响。可以将开发的措施视为经典实时控制(RTC)概念在河流系统上的应用。闸门的上游运行应基于降水的实时监测和预报。主要目标是通过对整个废水系统(包括接收水)进行建模,为闸门运行开发基于模型的预测控制系统。该隐的重点放在泄漏事件的运行策略和适当的短期预报上。测试了该措施的潜力,以用于运营策略的应用及其生态和经济可行性。在水电运营方案中实施这种流内措施的做法是独特的。优点是(a)对进入接收水的急性污染物进行额外的流内稀释,以及(b)将所需的CSO储存量最小化。

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