Keyword search (4,163 papers available)

"Infection risk" Keyword-tagged Publications:

Title Authors PubMed ID
1 A practical approach for preventing dispersion of infection disease in naturally ventilated room Ren C; Cao SJ; Haghighat F; 40477856
ENCS
2 Refined design of ventilation systems to mitigate infection risk in hospital wards: Perspective from ventilation openings setting Ren C; Wang J; Feng Z; Kim MK; Haghighat F; Cao SJ; 37336354
ENCS
3 Intelligent operation, maintenance, and control system for public building: Towards infection risk mitigation and energy efficiency Ren C; Zhu HC; Wang J; Feng Z; Chen G; Haghighat F; Cao SJ; 36941886
ENCS
4 Impact of ionizers on prevention of airborne infection in classroom Ren C; Haghighat F; Feng Z; Kumar P; Cao SJ; 36474607
ENCS
5 A real-time web tool for monitoring and mitigating indoor airborne COVID-19 transmission risks at city scale Albettar M; Leon Wang L; Katal A; 35261876
ENCS
6 Mitigating COVID-19 infection disease transmission in indoor environment using physical barriers Ren C; Xi C; Wang J; Feng Z; Nasiri F; Cao SJ; Haghighat F; 34306996
ENCS

 

Title:A real-time web tool for monitoring and mitigating indoor airborne COVID-19 transmission risks at city scale
Authors:Albettar MLeon Wang LKatal A
Link:https://pubmed.ncbi.nlm.nih.gov/35261876/
DOI:10.1016/j.scs.2022.103810
Publication:Sustainable cities and society
Keywords:Airborne transmissionCOVID-19Energy savingIndoor environmentInfection riskUrban scale
PMID:35261876 Category: Date Added:2022-03-09
Dept Affiliation: ENCS
1 Department of Building, Civil and Environmental Engineering, Concordia University, Montreal H3G 1M8, Canada.

Description:

Airborne transmission of aerosols contributes to a large portion of the SARS-CoV-2 spread indoors. This study develops a real-time interactive web-based platform for the public to compare various strategies to curb indoor airborne transmission of COVID-19 in different archetype buildings at a city scale. Although many countries have started vaccination and a gradual re-opening, because of emerging new variants of the virus and the possibility of future pandemics, a lively updated tool for monitoring and mitigation of infection risk is essential. As a demonstration, we evaluated the impacts of six mitigation measures on the infection risks in various building types in a city. It shows that the same strategy could perform quite differently, depending on building types and properties. All strategies are shown to reduce the infection risk but wearing a mask and reducing exposure time are the most effective strategies in many buildings, with around 60% reduction. Doubling the minimum required outdoor air ventilation rate is not as effective as other strategies to reduce the risk. It also causes considerable penalties on energy consumption. Therefore, new building ventilation standards, control actions, and design criteria should be considered to mitigate the infection risk and save energy.





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