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Stability and accuracy of numerical investigation of droplet motion under local ventilation airflow

机译:局部通风气流下液滴运动数值研究的稳定性和准确性

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摘要

It is challenging to predict droplet motion in numerical studies of particulate transport in indoor environment. This paper attempts at providing answers on this topic while using a Eulerian-Lagrangian method. The effect of the droplet release number and evaporation on prediction stability and accuracy was evaluated by modeling the droplet motion for two initial droplets (10 and 100 mu m) and three different airflow patterns in an upper-receiving ventilation system. The results show that the effect of the droplet release number on prediction stability depends on the spatial scale of droplet motion, airflow pattern, and droplet number in a certain domain. Evaporation affected the motion and distribution of droplets, especially for those with an initial diameter of 100 mu m. The number of droplets with an initial diameter of 100 mu m escaping into the indoor environment was over predicted when ignoring droplet evaporation. The results may contribute to more accurate predictions of droplet transport by numerical simulation.
机译:在室内环境中颗粒传输的数值研究中,预测液滴运动具有挑战性。本文尝试使用欧拉-拉格朗日方法提供有关此主题的答案。通过对上部接收通风系统中两个初始液滴(10和100μm)和三种不同气流模式的液滴运动进行建模,评估了液滴释放数量和蒸发对预测稳定性和准确性的影响。结果表明,液滴释放数量对预测稳定性的影响取决于液滴运动的空间尺度,气流模式和一定范围内的液滴数量。蒸发影响液滴的运动和分布,特别是对于初始直径为100微米的液滴。当忽略液滴蒸发时,溢出到室内环境的初始直径为100微米的液滴数量被过度预测。结果可能有助于通过数值模拟更准确地预测液滴的传输。

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