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Influence of ventilation strategies on dispersion and removal of fine particles: An experimental and simulation study

机译:通风策略对微粒分散和去除的影响:实验性和仿真研究

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摘要

In this study, effect of inlet/outlet configurations on the dispersion and removal of fine particles are examined experimentally and numerically. Ten different inlet/outlet configurations are tested for three different contaminant release cases as by incoming air, from breathing level and close to the outlet. Air velocity and contaminant distributions, air change efficiency, contaminant removal effectiveness and particle decay are investigated for each case. Results revealed that both inlet and outlet opening positions have a strong impact on the performance of the ventilation system. The highest air change efficiency is achieved for the inlet/outlet positioned on the same vertical wall. In terms of particle removal, ventilation performance changes up to the particle source position and the area of interest. The most proper inlet/outlet positions should be decided by considering the source position and the main region of concern of the ventilation system. Moreover, close relation of particle source and outlet opening is found most likely to remove the contaminants effectively.
机译:在该研究中,在实验和数值上检查入口/出口配置对微粒的分散和除去的分散和去除。 10个不同的入口/出口配置测试了三种不同的污染物释放情况,从进入空气,从呼吸水平和接近出口。为每种情况研究了空气速度和污染物分布,空气变化效率,污染物去除效果和颗粒衰变。结果表明,入口和出口打开位置都对通风系统的性能产生了强烈影响。对于位于同一垂直壁上的入口/出口实现最高的空气变化效率。就颗粒去除而言,通风性能变为粒子源位置和感兴趣区域。通过考虑源位置和通风系统的关注的主要区域,应决定最适当的入口/出口位置。此外,发现粒子源和出口开口的密切关系很可能有效地除去污染物。

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