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Assessment of weather-based influent scenarios for a WWTP: Application of a pattern recognition technique

机译:基于WWTP的天气的流动方案评估:模式识别技术的应用

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摘要

This study proposes an integrated approach by combining a pattern recognition technique and a process simulation model, to assess the impact of various climatic conditions on influent characteristics of the largest Italian wastewater treatment plant (WWTP) at Castiglione Torinese. Eight years (viz. 2009-2016) of historical influent data namely influent flow rate (Q(in)), chemical oxygen demand (COD), ammonium (N-NH4) and total suspended solids (TSS), in addition to two climatic attributes, average temperature and daily mean precipitation rates (P-I) from the plant catchment area, are evaluated in this study. Following the outlier removal and missing data imputation, five influent climate-based scenarios are identified by K-means clustering approach. Statistical characteristics of clustered observations are further investigated. Finally, to demonstrate that the proposed approach could improve the process control and efficiency, a process simulation model was developed and calibrated. Steady-state simulations were conducted, and the performance of the plant was studied under five influent scenarios. Further, an optimization scenario-based method was conducted to improve the energy consumption of the plant while meeting effluent requirements. The results indicate that with the adaptation of suitable aeration strategies for each of the influent scenarios, 10-40% energy saving can be achieved while meeting effluent requirements.
机译:本研究提出了一种通过组合模式识别技术和过程仿真模型来评估各种气候条件对Castiglione Torinese最大意大利废水处理厂(WWTP)的影响的影响。八年(viz。2009-2016)历史流入的数据,即流入流量(q(in)),化学需氧量(cod),铵(n-nh4)和总悬浮固体(tss),除了两个气候本研究评估了来自植物集水区的属性,平均温度和每日平均降水率(PI)。在删除和缺少数据估算之后,通过K-Means聚类方法识别五种影响的基于气候的情况。进一步研究了聚类观察的统计特征。最后,为了证明所提出的方法可以提高过程控制和效率,开发并校准了过程仿真模型。进行了稳态模拟,在五种进入情景下研究了植物的性能。此外,进行了优化方案的方法,以在满足流出要求的同时改善工厂的能量消耗。结果表明,随着每个进水场景的适当曝气策略,可以在满足流出要求的同时实现10-40%的节能。

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