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Online-simulation of the WWTP to minimise the total emission of WWTP and sewer system

机译:在线模拟污水处理厂以最小化污水处理厂和下水道系统的总排放量

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摘要

In this paper, the application of a WWTP-Online-Simulation with the objective to reduce the total emission into the receiving waters is explained. Apart from an introduction and a short description of the possible reduction potentials, first results of the current research project (financed by the German ministry BMBF) are presented. Results of the pilot plant with different experiments of increased stormwater inflow than usual and different control strategies showed the possibility to treat stormwater up to the quadruple dry-weather flow while still meeting the effluent values. However, this is not always guaranteed, and thus a monitoring system with integrated control strategies which is adapted to the load case "stormwater" with prognosis load cases becomes necessary. In the presented example, the simulation (Activated Sludge Model 2d) achieved an excellent match with the measured effluent values of the aeration tank (NH4-N, NO3-N) over a period of several months. The most important prerequisites for good (online-) simulation results are the exact knowledge of the plant and the plausibility and alternative concepts for the measured values in case of sensor failure. [References: 5]
机译:在本文中,说明了WWTP在线模拟的应用,其目的是减少进入接收水域的总排放量。除了对可能的还原潜力的介绍和简短描述之外,还介绍了当前研究项目(由德国BMBF资助)的初步结果。中试工厂的雨水流入量比平常增加的实验不同,控制策略不同的结果表明,可以处理雨水达到四倍干旱天气流量,同时仍能满足出水量的可能性。然而,这并不总是可以保证的,因此,需要一种具有集成控制策略的监控系统,该监控系统适用于带有预后负荷情况的负荷情况“暴雨”。在本示例中,模拟(活性污泥模型2d)在数月的时间内与曝气池的出水测量值(NH4-N,NO3-N)实现了极好的匹配。良好(在线)仿真结果的最重要前提是对设备的准确了解,以及在传感器出现故障时测量值的合理性和替代性概念。 [参考:5]

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