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Numerical simulation of UV disinfection reactors: Evaluation of alternative turbulence models

机译:紫外线消毒器的数值模拟:替代湍流模型的评估

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Six turbulence models, including standard k-ε, k-ε RNG, k-ω (88), revised k-ω (98), Reynolds stress transport model (RSTM), and two-fluid model (TFM), were applied to the simulation of a closed conduit polychromatic UV reactor. Predicted flow field and turbulent kinetic energy were compared with the experimental data from a digital particle image velocimetry (DPIV). All of the predicted flow fields were combined with a multiple segment source summation (MSSS) fluence rate model and three different microbial response kinetic models to simulate the disinfection process at two UV lamp power conditions. Microbial transport was simulated using the Lagrangian particle tracking method. The results show that the fluence distributions and the effluent inactivation levels were sensitive to the turbulence model selection. The level of sensitivity was a function of the operating conditions and the UV response kinetics of the microorganisms. Simulations with operating conditions that produced higher log inactivation or utilized microorganisms with higher UV sensitivity showed greater sensitivity to the turbulence model selection. In addition, a broader fluence distribution was found with turbulence models that predicted a larger wake region behind the lamps.
机译:应用了六个湍流模型,包括标准k-ε,k-εRNG,k-ω(88),修正的k-ω(98),雷诺应力传递模型(RSTM)和二流体模型(TFM),封闭管道多色紫外线反应器的仿真。将预测的流场和湍动能与数字粒子图像测速仪(DPIV)的实验数据进行了比较。将所有预测的流场与多段源总和(MSSS)通量率模型和三种不同的微生物响应动力学模型结合起来,以模拟在两种紫外线灯功率条件下的消毒过程。使用拉格朗日粒子跟踪方法模拟了微生物的迁移。结果表明,通量分布和废水灭活水平对湍流模型的选择很敏感。敏感性水平是操作条件和微生物的紫外线响应动力学的函数。在产生更高的log失活或使用具有更高的UV敏感性的微生物的操作条件下进行的仿真显示,对湍流模型的选择具有更高的敏感性。此外,在湍流模型中发现了更宽的注量分布,该模型预测了灯后的较大尾流区域。

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