Influence of office furniture on exposure risk to respiratory infection under mixing and displacement air distribution systems

The furniture layout between two people complicates the interaction between indoor airflow, human thermal plume, and exhalation flow in the breathing microenvironment. It thus increases the uncertainty of exposure risk assessment. This study aims to investigate the effects of office furniture under...

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Main Authors: Hatif, Ihab Hasan, Mohamed Kamar, Haslinda, Kamsah, Nazri, Wong, Keng Yinn, Tan, Huiyi
Format: Article
Published: Elsevier Ltd 2023
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Online Access:http://eprints.utm.my/105574/
http://dx.doi.org/10.1016/j.buildenv.2023.110292
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spelling my.utm.1055742024-05-06T06:29:07Z http://eprints.utm.my/105574/ Influence of office furniture on exposure risk to respiratory infection under mixing and displacement air distribution systems Hatif, Ihab Hasan Mohamed Kamar, Haslinda Kamsah, Nazri Wong, Keng Yinn Tan, Huiyi TJ Mechanical engineering and machinery The furniture layout between two people complicates the interaction between indoor airflow, human thermal plume, and exhalation flow in the breathing microenvironment. It thus increases the uncertainty of exposure risk assessment. This study aims to investigate the effects of office furniture under two different air distribution systems on the transmission of respiratory contaminants and airborne cross-infection risk between two people using a computational fluid dynamics method. Two thermal manikins models with realistic breathing functions were simulated, sitting face to face at two separation distances between their mouths in a single-office room served by a mixing ventilation system (MV) and displacement ventilation system (DV). Tracer gas (N2O) was used to simulate small droplet nuclei pathogen-laden exhaled by the infected person, and the exposure risk was assessed using the intake fraction (IF) index. The results show that placing a desk in the microenvironment between two occupants increased the exposure risk by about 50% under DV conditions and 22% under MV conditions compared with the cases without a desk. The exposure risk was reduced remarkably by increasing the separating distance. The results show that the furniture layout significantly affects the airborne transmission risk and cross-infection, and this effect varies with the ventilation conditions and separation distances between the occupants. Elsevier Ltd 2023 Article PeerReviewed Hatif, Ihab Hasan and Mohamed Kamar, Haslinda and Kamsah, Nazri and Wong, Keng Yinn and Tan, Huiyi (2023) Influence of office furniture on exposure risk to respiratory infection under mixing and displacement air distribution systems. Building and Environment, 239 (NA). NA-NA. ISSN 0360-1323 http://dx.doi.org/10.1016/j.buildenv.2023.110292 DOI : 10.1016/j.buildenv.2023.110292
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Hatif, Ihab Hasan
Mohamed Kamar, Haslinda
Kamsah, Nazri
Wong, Keng Yinn
Tan, Huiyi
Influence of office furniture on exposure risk to respiratory infection under mixing and displacement air distribution systems
description The furniture layout between two people complicates the interaction between indoor airflow, human thermal plume, and exhalation flow in the breathing microenvironment. It thus increases the uncertainty of exposure risk assessment. This study aims to investigate the effects of office furniture under two different air distribution systems on the transmission of respiratory contaminants and airborne cross-infection risk between two people using a computational fluid dynamics method. Two thermal manikins models with realistic breathing functions were simulated, sitting face to face at two separation distances between their mouths in a single-office room served by a mixing ventilation system (MV) and displacement ventilation system (DV). Tracer gas (N2O) was used to simulate small droplet nuclei pathogen-laden exhaled by the infected person, and the exposure risk was assessed using the intake fraction (IF) index. The results show that placing a desk in the microenvironment between two occupants increased the exposure risk by about 50% under DV conditions and 22% under MV conditions compared with the cases without a desk. The exposure risk was reduced remarkably by increasing the separating distance. The results show that the furniture layout significantly affects the airborne transmission risk and cross-infection, and this effect varies with the ventilation conditions and separation distances between the occupants.
format Article
author Hatif, Ihab Hasan
Mohamed Kamar, Haslinda
Kamsah, Nazri
Wong, Keng Yinn
Tan, Huiyi
author_facet Hatif, Ihab Hasan
Mohamed Kamar, Haslinda
Kamsah, Nazri
Wong, Keng Yinn
Tan, Huiyi
author_sort Hatif, Ihab Hasan
title Influence of office furniture on exposure risk to respiratory infection under mixing and displacement air distribution systems
title_short Influence of office furniture on exposure risk to respiratory infection under mixing and displacement air distribution systems
title_full Influence of office furniture on exposure risk to respiratory infection under mixing and displacement air distribution systems
title_fullStr Influence of office furniture on exposure risk to respiratory infection under mixing and displacement air distribution systems
title_full_unstemmed Influence of office furniture on exposure risk to respiratory infection under mixing and displacement air distribution systems
title_sort influence of office furniture on exposure risk to respiratory infection under mixing and displacement air distribution systems
publisher Elsevier Ltd
publishDate 2023
url http://eprints.utm.my/105574/
http://dx.doi.org/10.1016/j.buildenv.2023.110292
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score 13.160551