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Numerical and experimental studies of water disinfection in UV reactors

机译:UV反应器中水消毒的数值和实验研究

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Performance of UV reactors for water disinfection is investigated in this paper. Both experimental and numerical studies are performed on base reactor LP24. Enterobacteria phage MS2 is chosen as the challenge microorganism in the experiments. Experiments are conducted to evaluate the effect of different parameters, i.e. flow rate and UV transmission, on the reactor performance. Simulation is carried out based on the commercial software ANSYS FLUENT with user defined functions (UDFs) implemented. The UDF is programmed to calculate UV dose absorbed by different microorganisms along their flow trajectories. The effect with boundary layer mesh and without boundary layer mesh for LP24 is studied. The results show that the inclusion of boundary layer mesh does not have much effect on the reactor performance in terms of reduction equivalent dose (RED). The numerical results agree well with the experimental measurements, hence validating the numerical model. With this achieved, the numerical model is applied to study other scaled reactors: LP12, LP40, LP60 and LP80. Comparisons show that LP40 has the highest RED and log inactivation among all the reactors while LP80 has the lowest RED and log inactivation.
机译:本文研究了紫外线反应器的性能。在基础反应器LP24上进行实验和数值研究。选择肠杆菌噬菌体MS2作为实验中的挑战微生物。进行实验以评估不同参数的效果,即流量和紫外线传输,对反应器性能。基于使用用户定义的功能(UDF)流畅的商业软件ANSYS进行仿真。 UDF被编程为沿着流动轨迹计算由不同微生物吸收的UV剂量。研究了对LP24的边界层网和没有边界层网的影响。结果表明,在减少等效剂量(红色)中,包含边界层网对反应器性能没有太大影响。数值结果与实验测量很好,因此验证了数值模型。通过实现这一目标,应用数值模型来研究其他缩放的反应堆:LP12,LP40,LP60和LP80。比较显示,LP40在所有反应器中具有最高的红色和日志灭活,而LP80具有最低的红色和日志灭活。

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