2025/10/25 by Timothy Foat, Benjamín Higgins, Suzie Abbs +8 · 2 voices
Engineering · Medicine · #Evacuation and Crowd Dynamics #Infection Control and Ventilation #Thermal Regulation in Medicine
paper · doi:10.1016/j.indenv.2025.100129
openalex created_date 2025/10/25 · openalex publication_date 2025/10/25 · openalex updated_date 2026/08/01
Throughout the COVID-19 pandemic, guidance was to increase ventilation as a way to reduce the risk of transmission. While the benefits of ventilation, when it is used to supply fresh air or to remove virus laden air from a space, is indisputable, we show that in some circumstances it can also enhance the transport of virus from the infected to the uninfected. We used computational fluid dynamics to study exposure to SARS-CoV-2 from a person coughing, in a mechanically ventilated room with mixing ventilation, over short time periods. Models were run with three ventilation rates and two definitions for how the virus is distributed within different size droplets. These showed that up to 3 m from the person (the largest distance assessed in this work), the median exposure had a statistically significant increase as the ventilation rate was increased. For example, as the room air change rate was increased from 0.5 h −1 to 5 h −1 , the median exposure after 5 min increased by a factor of 7 or 134 depending on the model settings specified. The models showed that the negative impact of mixing ventilation on exposure (i.e. increased ventilation rate leading to increased exposure) reduced with time, which brings the predictions in line with the general guidance. Ventilation measures are therefore most likely to have the greatest impact on reducing transmission in spaces where people spend longer periods of time. • CFD was used to study exposure to SARS-CoV-2 in a mechanically ventilated room. • Two definitions were used to describe how virus was divided across exhaled droplets. • Close to a coughing person, exposure increased as ventilation rate increased. • Likelihood of ventilation increasing exposure reduced with time (5 vs 30 min). • Exposure is strongly dependent on how virus is divided across exhaled droplets.