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Modeling Water Treatment Reactor Hydraulics Using Reactor Networks

机译:使用反应堆网络对水处理反应堆水力学进行建模

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Reactor hydraulics are integral to water treatment processes such as disinfection and chemical contaminant oxidation. This work uses reactor networks- conceptual reactors arranged in parallel and series combinations-to simplify the accurate modeling of residence time in water treatment reactors. Reactor networks were selected for 14 clearwells, ozone contactors, clarifiers, and filters using tracer data sets from literature. For seven of 14 full-scale reactors, two parallel tanks-in-series reactors best balanced accuracy and simplicity. Reactor networks accurately represented tracer data using between two and eight fitting parameters, while segregated flow analysis required 32-164 inputs (two per tracer data point). The modeling work revealed that tracer data sets may have overestimated baffle factors by 10% in 10 of the 14 full-scale reactors, potentially as a result of inaccurate measurement of flow rate or volume. Applications of reactor networks include more accurate approaches to disinfection regulation and modeling the degradation of emerging contaminants.
机译:反应堆液压系统是水处理过程(如消毒和化学污染物氧化)必不可少的。这项工作使用反应堆网络-并联和串联组合布置的概念性反应堆-简化了水处理反应堆中停留时间的精确建模。使用文献中的示踪剂数据集,选择了14个净空井,臭氧接触器,澄清池和过滤器作为反应堆网络。对于14个大型反应堆中的七个,两个并联的串联串联反应釜具有最佳的平衡精度和简便性。反应堆网络使用两个至八个拟合参数准确表示示踪剂数据,而隔离流分析需要32-164个输入(每个示踪剂数据点两个)。建模工作表明,示踪剂数据集可能在14个满量程反应堆中的10个中有高估了折流系数> 10%,这可能是由于流量或体积测量不准确所致。反应堆网络的应用包括更精确的消毒调节方法以及对新出现的污染物的降解进行建模的方法。

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