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PMID: 37101943 Published · ppublish English Journal Article

Tracing the origin of large respiratory droplets by their deposition characteristics inside the respiratory tract during speech.

Building simulation ·Vol. 16 ·No. 5 ·2023-00-00 ·页码 781-794

Wang Y, Wei J, Gao CX, Jin T, Liu L

Abstract

Origin of differently sized respiratory droplets is fundamental for clarifying their viral loads and the sequential transmission mechanism of SARS-CoV-2 in indoor environments. Transient talking activities characterized by low (0.2 L/s), medium (0.9 L/s), and high (1.6 L/s) airflow rates of monosyllabic and successive syllabic vocalizations were investigated by computational fluid dynamics (CFD) simulations based on a real human airway model. SST k-ω model was chosen to predict the airflow field, and the discrete phase model (DPM) was used to calculate the trajectories of droplets within the respiratory tract. The results showed that flow field in the respiratory tract during speech is characterized by a significant laryngeal jet, and bronchi, larynx, and pharynx-larynx junction were main deposition sites for droplets released from the lower respiratory tract or around the vocal cords, and among which, over 90% of droplets over 5 µm released from vocal cords deposited at the larynx and pharynx-larynx junction. Generally, droplets' deposition fraction increased with their size, and the maximum size of droplets that were able to escape into external environment decreased with the airflow rate. This threshold size for droplets released from the vocal folds was 10-20 µm, while that for droplets released from the bronchi was 5-20 µm under various airflow rates. Besides, successive syllables pronounced at low airflow rates promoted the escape of small droplets, but do not significantly affect the droplet threshold diameter. This study indicates that droplets larger than 20 µm may entirely originate from the oral cavity, where viral loads are lower; it provides a reference for evaluating the relative importance of large-droplet spray and airborne transmission route of COVID-19 and other respiratory infections.

Keywords
COVID-19 airborne transmission deposition respiratory droplets viral load
作者与单位
共 5 位作者,点击展开单位 / ORCID
Wang Yihan
Institute of Refrigeration and Cryogenics, Key Laboratory of Refrigeration and Cryogenic Technology of Zhejiang Province, Zhejiang University, Hangzhou, 310000 China.
Wei Jianjian
Institute of Refrigeration and Cryogenics, Key Laboratory of Refrigeration and Cryogenic Technology of Zhejiang Province, Zhejiang University, Hangzhou, 310000 China.
Gao Caroline X
Public Health and Preventive Medicine, Monash University, Melbourne, VIC 3004 Australia.
Jin Tao
Institute of Refrigeration and Cryogenics, Key Laboratory of Refrigeration and Cryogenic Technology of Zhejiang Province, Zhejiang University, Hangzhou, 310000 China.
Liu Li
Department of Building Science, Tsinghua University, Beijing, 100084 China.
Article Info
Journal
Building simulation
Abbr.
Build Simul
ISSN
1996-3599
Published
2023-00-00
电子出版
2023-00-13
页码
781-794
Language
English
Country/Region
China
NLM ID
101677932
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