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Integrated modelling: Comparison of state variables, processes and parameters in sewer and wastewater treatment plant models

机译:集成建模:下水道和废水处理厂模型中状态变量,过程和参数的比较

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摘要

All the parts of an urban drainage system, i.e., the sewer system, the wastewater treatment plant (WWTP) and the river, should be integrated into one single model to assess the performance of the overall system and for the development of design and control strategies assisting in its sustainable and cost effective management. Existing models for the individual components of the system have to be merged in order to develop the integrated tool. One of the problems arising from this methodology is the incompatibility of state variables, processes and parameters used in the different modelling approaches. Optimisation of an urban drainage system, and of the wastewater treatment process in particular, requires a good knowledge of the wastewater composition. As important transformations take place between the emission from the household and the arrival at the treatment facility, sewer models should include these transformations in the sewer system. At present, however, research is still needed in order to increase our knowledge of these in-sewer processes. A comparison of the state variables, processes and parameters has been carried out in both sewer models (SMs) and activated sludge models (ASMs). An ASM approach is used for the description of reactions in sewer models. However, a difference is found in the expression for organic material (expressed in terms of BOD) and heterotrophic biomass is absent as a state variable, resulting in differences in processes and parameters. Reconciliation of both the models seems worthwhile and a preliminary solution is suggested in this paper.
机译:城市排水系统的所有部分(即下水道系统,废水处理厂(WWTP)和河流)应集成到一个模型中,以评估整个系统的性能以及制定设计和控制策略协助其进行可持续且具有成本效益的管理。为了开发集成工具,必须合并系统各个组件的现有模型。这种方法引起的问题之一是在不同建模方法中使用的状态变量,过程和参数不兼容。优化城市排水系统,尤其是废水处理过程,需要对废水成分有充分的了解。由于在家庭排放物和到达处理设施之间发生了重要的转变,下水道模型应将这些转变包括在下水道系统中。但是,目前仍需要进行研究,以增加我们对这些下水道过程的了解。在下水道模型(SMs)和活性污泥模型(ASMs)中都对状态变量,过程和参数进行了比较。 ASM方法用于描述下水道模型中的反应。但是,发现有机物质的表达有所不同(以BOD表示),并且不存在异养生物质作为状态变量,从而导致了过程和参数的差异。两种模型的调和似乎都值得,本文提出了初步的解决方案。

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