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Application of Dynamic Simulations for Assessment of Urban Wastewater Systems Operation

机译:动态模拟在城市污水系统运行评价中的应用

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Abstract The paper presents the results of a study aimed at the use of simple mathematical models of a sewer network, wastewater treatment plant (WWTP) and receiving water to control the discharge of diluted wastewater from combined sewer overflow system in order to protect water resources. The greatest burden on the receiving water usually occurs at the time of combined sewer system overflow, when diluted municipal wastewater is also discharged into the receiving water. Literature usually presents impact assessment results of either wastewater treatment plants or sewer system on the receiving water. In our work, we assess the impact of the integrated municipal wastewater system on the receiving water. The models for the sewer system, wastewater treatment plant, and receiving water under consideration were developed. Mathematical modelling of the subsystems of urban wastewater system was carried out using simulator SIMBA 6. Simulations were performed using real experimental data. Information about the sewer system overflow during the year (total amount of overflow, pollutant load of COD during overflow) was obtained by using dynamic simulations. The simulation results aimed at the impact assessment of the sewer system overflow and WWTP on the receiving water quality showed that the values of the monitored parameters in the river could exceed several times the environmental quality standards for receiving water.
机译:摘要本文提出了一项研究结果,该研究旨在利用简单的污水处理网络,废水处理厂(WWTP)和接收水的数学模型,以控制组合下水道溢流系统中稀释废水的排放,从而保护水资源。给水的最大负担通常发生在下水道系统联合溢流时,当稀释的市政废水也排放到给水中时。文献通常介绍废水处理厂或下水道系统对接收水的影响评估结果。在我们的工作中,我们评估了综合市政废水系统对接收水的影响。开发了用于下水道系统,废水处理厂和接受水的模型。使用模拟器SIMBA 6对城市废水系统的子系统进行了数学建模。使用真实的实验数据进行了模拟。通过使用动态模拟获得有关一年中下水道系统溢出的信息(溢出总量,溢出期间化学需氧量的污染物负荷)。针对污水系统溢流和污水处理厂对接收水质量的影响评估的仿真结果表明,河流中监测参数的值可能超过接收水环境质量标准的几倍。

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