Xu Jingcui, Zhai Haoyu, So Lok Kwan, Wang Cunteng, Guo Hai
Air Quality Studies, Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hong Kong.
Air Quality Studies, Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hong Kong.
J Hazard Mater. 2025 Aug 15;494:138446. doi: 10.1016/j.jhazmat.2025.138446. Epub 2025 Apr 29.
To mitigate the risk of airborne transmission, we explored the integration of a recirculated personalized air curtain (rPAC) with displacement ventilation (DV) using computational fluid dynamics (CFD) simulations. The rPAC can utilize indoor air directly, drawing clean air from the lower room space supplied by the DV system. Our study assessed the effectiveness of the rPAC in reducing the intake fraction of expiratory droplets from transient coughing and steady speaking indoors. We categorized droplets into small (initial diameter ≤20 μm), medium (50 μm), and large (100 μm) sizes. Large droplets from both activities generally had negligible intake fractions. The rPAC effectively reduced the intake fraction from coughing and speaking, although its performance varied with respiratory activities and exhalation directions. At 0° and 30°, the rPAC reduced the intake fraction of small coughing droplets by over 90 % and medium droplets by 74 %-98 %, with significant reductions also observed for speaking. However, at 60°, the rPAC increased the intake fraction of medium coughing droplets and small droplets from speaking due to complex airflow-droplet interaction dynamics. This study highlights the potential of rPAC as an effective control measure to improve indoor air quality and mitigate respiratory disease transmission, though its effectiveness is influenced by exhalation direction and droplet size.
为降低空气传播风险,我们利用计算流体动力学(CFD)模拟,探索了将循环式个性化气幕(rPAC)与置换通风(DV)相结合的方法。rPAC可直接利用室内空气,从DV系统供应的较低室内空间抽取清洁空气。我们的研究评估了rPAC在降低室内短暂咳嗽和持续说话时呼出飞沫吸入分数方面的有效性。我们将飞沫分为小(初始直径≤20μm)、中(50μm)和大(100μm)三种尺寸。这两种活动产生的大飞沫通常吸入分数可忽略不计。rPAC有效降低了咳嗽和说话时的吸入分数,尽管其性能因呼吸活动和呼气方向而异。在0°和30°时,rPAC将小咳嗽飞沫的吸入分数降低了90%以上,将中飞沫的吸入分数降低了74%-98%,说话时也有显著降低。然而,在60°时,由于复杂的气流-飞沫相互作用动力学,rPAC增加了中咳嗽飞沫和说话时小飞沫的吸入分数。本研究强调了rPAC作为改善室内空气质量和减轻呼吸道疾病传播的有效控制措施的潜力,尽管其有效性受呼气方向和飞沫大小的影响。