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PMID: 34177131 Published · ppublish English Journal Article

Methodology for risk assessment of COVID-19 pandemic propagation.

Journal of loss prevention in the process industries ·Vol. 72 ·2021-09-00 ·页码 104584

Portarapillo M, Di Benedetto A

Abstract

This paper proposes a methodology to perform risk analysis of the virus spread. It is based on the coupling between CFD modelling of bioaerosol dispersion to the calculation of probability of contact events. CFD model of near-field sneeze droplets dispersion is developed to build the SARS-CoV-2 effect zones and to adequately capture the safe distance. The most shared classification of droplets size distribution of sneezes was used. Droplets were modeled through additive heating/evaporation/boiling laws and their impact on the continuous phase was examined. Larger droplets move behind the droplet nuclei front and exhibit greater vertical drop due to the effect of gravity. CFD simulations provided the iso-risk curves extension (i.e., the maximum distance as well as the angle) enclosed by the incident outcome effect zone. To calculate the risk indexes, a fault tree was developed and the probability of transmission assuming as of the top event "COVID-19 infection" was calculated starting from the virus spread curve, as main base case. Four phases of virus spread evolution were identified: initiation, propagation, generalised propagation and termination. For each phase, the maximum allowable close contact was computed, being fixed the values of the acceptable risk index. In particular, it was found that during the propagation case, the maximum allowable close contacts is two, suggesting that at this point lockdown should be activated. The here developed methodology could drive policy containment design to curb spread COVID-19 infection.

Keywords
Bioaerosol CFD model COVID-19 Fault tree analysis Risk analysis
作者与单位
共 2 位作者,点击展开单位 / ORCID
Portarapillo Maria
Department of Chemical, Materials and Production Engineering, University of Naples Federico II, Naples, 80125, Italy.
Di Benedetto Almerinda
Department of Chemical, Materials and Production Engineering, University of Naples Federico II, Naples, 80125, Italy.
Article Info
Journal
Journal of loss prevention in the process industries
Abbr.
J Loss Prev Process Ind
ISSN
0950-4230
Published
2021-09-00
电子出版
2021-00-23
页码
104584
Language
English
Country/Region
England
NLM ID
101660977
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