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Modeling particle deposition from fully developed turbulent flow in ventilation duct

机译:模拟通风管道中充分发展的湍流中的颗粒沉积

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摘要

This paper proposes an improved Eulerian model to predict particle deposition velocity in fully developed turbulent duct flow. The model is modified based on the three-layer model by Lai and Nazaroff (Journal of Aerosol Science, 31, 463-476, 2000), accounting for turbophoresis as well as Brownian diffusion, turbulent diffusion and gravitational settling. An expression relating the turbophoretic velocity to particle relaxation time, friction velocity and the normal distance to the wall surface is presented to model the turbophoresis. Similar with previous one by Lai and Nazaroff, the model only needs to input friction velocity, which makes it easy to apply. The predicted results agree well with measurement data for floor and vertical walls. And then deposition velocity of airborne particles to smooth walls in straight steel ducts is predicted by the modified model. The results agree with the published measured data, especially for floor and vertical walls of ventilation duct. Thus it is expected to be applied for predicting particle deposition in ventilation duct for indoor air quality control or evaluation. Furthermore, the condition to ignore turbophoresis for particle deposition is discussed by comparing the results of the improved model and that of Lai and Nazaroff.
机译:本文提出了一种改进的欧拉模型,以预测完全发展的湍流管道中的颗粒沉积速度。该模型是基于Lai和Nazaroff(Journal of Aerosol Science,31,463-476,2000)的三层模型进行修改的,该模型考虑了涡轮电泳以及布朗扩散,湍流扩散和重力沉降。提出了一种将涡轮电泳速度与粒子弛豫时间,摩擦速度以及到壁表面的正常距离相关的表达式,以对涡轮电泳进行建模。与Lai和Nazaroff的前一个模型类似,该模型仅需要输入摩擦速度,因此易于应用。预测结果与地板和垂直墙的测量数据非常吻合。然后,通过修正模型预测了空气中颗粒在直管内光滑壁上的沉积速度。结果与已发布的测量数据一致,尤其是通风管道的地板和垂直壁。因此,期望将其应用于预测通风管道中的颗粒沉积以用于室内空气质量控制或评估。此外,通过比较改进模型的结果以及Lai和Nazaroff的结果,讨论了忽略涡轮电泳的粒子沉积条件。

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