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The application of the activated sludge model no.1 to a river environment

机译:1号活性污泥模型在河流环境中的应用

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The current tendency towards an integrated approach for water quality management gives rise to a demand for consistent methods for linking dynamic wastewater treatment models with river water quality models. Linking such models is difficult because of the mutual structural differences with regard to variable and parameter definitions as well as process descriptions. This paper proposes to use the same modelling approach for the simulation of activated sludge treatment and natural self-purification in rivers. Since the standard Activated Sludge Model No.1 (ASM1) (Henze et al., 1987) is found to be far more conceptual and consistent than traditional river water quality models, the suitability of the ASM1 modelling approach has been assessed. The traditional ASM1 matrix has been adapted and extended to a river environment and has subsequently served as the basis of an ASM1-type water quality model for the River Dender in Flanders. Sensitivity analyses on this model showed that the most sensitive parameters in the ASM1 formulation of biological decay are the ones determining hydrolysis. The model efficiently calculates BOD concentrations but the predicted DO concentrations are not very accurate, mainly because of the remaining uncertainty about the many ASM1-parameters in river conditions. This indicates the need for determining new typical value ranges for these parameters in a river environment.
机译:当前对水质管理采取综合方法的趋势引起了对将动态废水处理模型与河水水质模型联系起来的一致方法的需求。由于在变量和参数定义以及过程描述方面的相互结构差异,链接此类模型非常困难。本文建议使用相同的建模方法来模拟河流中的活性污泥处理和自然自净。由于发现标准的1号活性污泥模型(ASM1)(Henze et al。,1987)比传统的河流水质模型更具概念性和一致性,因此已对ASM1建模方法的适用性进行了评估。传统的ASM1矩阵已经适应并扩展到河流环境,随后成为佛兰德河河道ASM1型水质模型的基础。该模型的敏感性分析表明,ASM1生物衰变配方中最敏感的参数是决定水解的参数。该模型可以有效地计算BOD浓度,但预测的DO浓度不是很准确,这主要是因为在河流条件下,许多ASM1参数仍然存在不确定性。这表明需要为河流环境中的这些参数确定新的典型值范围。

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