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Modelling in-sewer changes in wastewater quality under aerobic conditions

机译:模拟有氧条件下污水中污水质量的变化

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In the present paper a model for the simulation of in-sewer transformation processes occurring during the transport of wastewater under aerobic conditions is presented. The basic approach is to use a detailed description of the transport processes to separate the effect of advection-dispersion in the variations of concentration (of a certain pollutant in a certain pipe length) from those due to transformation processes. The focus is on dry weather flow and free surface flows. Processes such as reaeration, heterotrophic growth and decay, hydrolysis, ammonification and biofilm consumption of substrate and oxygen are considered. Transformation processes are modelled using a similar approach to that of the IAWQ Activated sludge model n deg 1. Results of tracer experiments are presented showing the relevance of dispersion in pipe flow. The results of sensitivity analysis on the model parameters are presented. The model results are especially sensitive to variations in yield and maximum growth rate for heterotrophs. Thus, these parameters should be determined experimentally for a given system. Less precise estimates for the other parameters have less impact on the model results. This aspect is especially relevant due to the lack of established methods for the estimation of these parameters for sewer systems modelling.
机译:在本文中,提出了一个模型,用于模拟在好氧条件下废水运输过程中发生的下水道转换过程。基本方法是对传输过程进行详细描述,以将对流扩散对浓度变化(在一定管长内的某些污染物)的影响与由于转化过程引起的变化分开。重点是干燥天气流和自由表面流。考虑了诸如底物和氧气的再生,异养生长和衰变,水解,氨化以及生物膜消耗等过程。使用与IAWQ活性污泥模型n度1类似的方法对转化过程进行建模。示踪剂实验的结果显示了分散在管道流中的相关性。给出了模型参数敏感性分析的结果。模型结果对异养生物的产量和最大生长率变化特别敏感。因此,对于给定的系统,这些参数应通过实验确定。其他参数的精度较低的估计对模型结果的影响较小。由于缺乏为下水道系统建模估算这些参数的既定方法,这一方面尤其重要。

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