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Computational fluid dynamics modelling of the air movement in an environmental test chamber with a respiring manikin

机译:带有人体模型的环境测试室内空气流动的计算流体动力学建模

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In recent years, computational fluid dynamics (CFD) has been widely used as a method of simulating airflow and addressing indoor environment problems. The complexity of airflows within the indoor environment would make experimental investigation difficult to undertake and also imposes significant challenges on turbulence modelling for flow prediction. This research examines through CFD visualization how air is distributed within a room. Measurements of air temperature and air velocity have been performed at a number of points in an environmental test chamber with a human occupant. To complement the experimental results, CFD simulations were carried out and the results enabled detailed analysis and visualization of spatial distribution of airflow patterns and the effect of different parameters to be predicted. The results demonstrate the complexity of modelling human exhalation within a ventilated enclosure and shed some light into how to achieve more realistic predictions of the airflow within an occupied enclosure.
机译:近年来,计算流体力学(CFD)已被广泛用作模拟气流和解决室内环境问题的方法。室内环境中气流的复杂性将使得难以进行实验研究,并且也对用于流动预测的湍流建模提出了重大挑战。这项研究通过CFD可视化检查了房间内空气的分布情况。空气温度和空气速度的测量已在有人乘坐的环境测试室内的多个点进行。为了补充实验结果,进行了CFD模拟,结果可以对气流模式的空间分布进行详细分析和可视化,并可以预测不同参数的影响。结果证明了在通风的封闭空间内对人体呼气进行建模的复杂性,并为如何对占用空间内的气流进行更实际的预测提供了一些启示。

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