Seggelke K, Rosenwinkel K H, Vanrolleghem P A, Krebs P
University of Hanover, Germany.
Water Sci Technol. 2005;52(5):195-203.
In recent years numerical modelling became a standard procedure to optimise urban wastewater systems design and operation by integration. For dynamic control of the wastewater teatment plant (WWTP) inflow, a model-based predictive concept is introduced aiming at improving the receiving water quality. An on-line simulator running parallel to the real WWTP operation reflects the actual state of operation and provides this model information to a prognosis tool which determines the best option for the WWTP inflow. The investigations showed that it is possible to reduce the NH4-N peak concentrations in the receiving water by dynamic WWTP inflow control based on predictive scenario analysis.
近年来,数值模拟已成为通过集成来优化城市污水系统设计和运行的标准程序。为了对污水处理厂(WWTP)的进水进行动态控制,引入了一种基于模型的预测概念,旨在改善受纳水体水质。一个与实际污水处理厂运行并行运行的在线模拟器反映了实际运行状态,并将此模型信息提供给一个预测工具,该工具确定污水处理厂进水的最佳方案。调查表明,基于预测情景分析的动态污水处理厂进水控制可以降低受纳水体中NH4-N的峰值浓度。