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Infection control measures for public transportation derived from the flow dynamics of obstructed cough jet

During the COVID-19 pandemic, WHO and CDC suggest people stay 1 m and 1.8 m away from others, respectively. Keeping social distance can avoid close contact and mitigate infection spread. Many researchers suspect that suggested distances are not enough because aerosols can spread up to 7–8 m away. De...

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Autores principales: Wang, C.T., Xu, J.C., Chan, K.C., Lee, H.H., Tso, C.Y., Lin, Carol S.K., Chao, Christopher Y.H., Fu, S.C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Ltd. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971108/
https://www.ncbi.nlm.nih.gov/pubmed/35382445
http://dx.doi.org/10.1016/j.jaerosci.2022.105995
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author Wang, C.T.
Xu, J.C.
Chan, K.C.
Lee, H.H.
Tso, C.Y.
Lin, Carol S.K.
Chao, Christopher Y.H.
Fu, S.C.
author_facet Wang, C.T.
Xu, J.C.
Chan, K.C.
Lee, H.H.
Tso, C.Y.
Lin, Carol S.K.
Chao, Christopher Y.H.
Fu, S.C.
author_sort Wang, C.T.
collection PubMed
description During the COVID-19 pandemic, WHO and CDC suggest people stay 1 m and 1.8 m away from others, respectively. Keeping social distance can avoid close contact and mitigate infection spread. Many researchers suspect that suggested distances are not enough because aerosols can spread up to 7–8 m away. Despite the debate on social distance, these social distances rely on unobstructed respiratory activities such as coughing and sneezing. Differently, in this work, we focused on the most common but less studied aerosol spread from an obstructed cough. The flow dynamics of a cough jet blocked by the backrest and gasper jet in a cabin environment was characterized by the particle image velocimetry (PIV) technique. It was proved that the backrest and the gasper jet can prevent the front passenger from droplet spray in public transportation where maintaining social distance was difficult. A model was developed to describe the cough jet trajectory due to the gasper jet, which matched well with PIV results. It was found that buoyancy and inside droplets almost do not affect the short-range cough jet trajectory. Infection control measures were suggested for public transportation, including using backrest/gasper jet, installing localized exhaust, and surface cleaning of the backrest.
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spelling pubmed-89711082022-04-01 Infection control measures for public transportation derived from the flow dynamics of obstructed cough jet Wang, C.T. Xu, J.C. Chan, K.C. Lee, H.H. Tso, C.Y. Lin, Carol S.K. Chao, Christopher Y.H. Fu, S.C. J Aerosol Sci Article During the COVID-19 pandemic, WHO and CDC suggest people stay 1 m and 1.8 m away from others, respectively. Keeping social distance can avoid close contact and mitigate infection spread. Many researchers suspect that suggested distances are not enough because aerosols can spread up to 7–8 m away. Despite the debate on social distance, these social distances rely on unobstructed respiratory activities such as coughing and sneezing. Differently, in this work, we focused on the most common but less studied aerosol spread from an obstructed cough. The flow dynamics of a cough jet blocked by the backrest and gasper jet in a cabin environment was characterized by the particle image velocimetry (PIV) technique. It was proved that the backrest and the gasper jet can prevent the front passenger from droplet spray in public transportation where maintaining social distance was difficult. A model was developed to describe the cough jet trajectory due to the gasper jet, which matched well with PIV results. It was found that buoyancy and inside droplets almost do not affect the short-range cough jet trajectory. Infection control measures were suggested for public transportation, including using backrest/gasper jet, installing localized exhaust, and surface cleaning of the backrest. Elsevier Ltd. 2022-06 2022-04-01 /pmc/articles/PMC8971108/ /pubmed/35382445 http://dx.doi.org/10.1016/j.jaerosci.2022.105995 Text en © 2022 Elsevier Ltd. All rights reserved. Since January 2020 Elsevier has created a COVID-19 resource centre with free information in English and Mandarin on the novel coronavirus COVID-19. The COVID-19 resource centre is hosted on Elsevier Connect, the company's public news and information website. Elsevier hereby grants permission to make all its COVID-19-related research that is available on the COVID-19 resource centre - including this research content - immediately available in PubMed Central and other publicly funded repositories, such as the WHO COVID database with rights for unrestricted research re-use and analyses in any form or by any means with acknowledgement of the original source. These permissions are granted for free by Elsevier for as long as the COVID-19 resource centre remains active.
spellingShingle Article
Wang, C.T.
Xu, J.C.
Chan, K.C.
Lee, H.H.
Tso, C.Y.
Lin, Carol S.K.
Chao, Christopher Y.H.
Fu, S.C.
Infection control measures for public transportation derived from the flow dynamics of obstructed cough jet
title Infection control measures for public transportation derived from the flow dynamics of obstructed cough jet
title_full Infection control measures for public transportation derived from the flow dynamics of obstructed cough jet
title_fullStr Infection control measures for public transportation derived from the flow dynamics of obstructed cough jet
title_full_unstemmed Infection control measures for public transportation derived from the flow dynamics of obstructed cough jet
title_short Infection control measures for public transportation derived from the flow dynamics of obstructed cough jet
title_sort infection control measures for public transportation derived from the flow dynamics of obstructed cough jet
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971108/
https://www.ncbi.nlm.nih.gov/pubmed/35382445
http://dx.doi.org/10.1016/j.jaerosci.2022.105995
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