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基于模拟的餐厅空调相关新冠疫情研究

Simulation-based study of COVID-19 outbreak associated with air-conditioning in a restaurant.

作者信息

Liu Han, He Sida, Shen Lian, Hong Jiarong

机构信息

Department of Mechanical Engineering and St. Anthony Falls Laboratory, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

Phys Fluids (1994). 2021 Feb 1;33(2):023301. doi: 10.1063/5.0040188. Epub 2021 Feb 9.

Abstract

COVID-19 has shown a high potential of transmission via virus-carrying aerosols as supported by growing evidence. However, detailed investigations that draw direct links between aerosol transport and virus infection are still lacking. To fill in the gap, we conducted a systematic computational fluid dynamics (CFD)-based investigation of indoor airflow and the associated aerosol transport in a restaurant setting, where likely cases of airflow-induced infection of COVID-19 caused by asymptomatic individuals were widely reported by the media. We employed an advanced in-house large eddy simulation solver and other cutting-edge numerical methods to resolve complex indoor processes simultaneously, including turbulence, flow-aerosol interplay, thermal effect, and the filtration effect by air conditioners. Using the aerosol exposure index derived from the simulation, we are able to provide a spatial map of the airborne infection risk under different settings. Our results have shown a remarkable direct linkage between regions of high aerosol exposure index and the reported infection patterns in the restaurant, providing strong support to the airborne transmission occurring in this widely reported incident. Using flow structure analysis and reverse-time tracing of aerosol trajectories, we are able to further pinpoint the influence of environmental parameters on the infection risks and highlight the need for more effective preventive measures, e.g., placement of shielding according to the local flow patterns. Our research, thus, has demonstrated the capability and value of high-fidelity CFD tools for airborne infection risk assessment and the development of effective preventive measures.

摘要

越来越多的证据表明,新冠病毒通过携带病毒的气溶胶具有很高的传播潜力。然而,仍缺乏能直接将气溶胶传播与病毒感染联系起来的详细调查。为了填补这一空白,我们基于计算流体动力学(CFD)对一家餐厅内的室内气流及相关气溶胶传播进行了系统研究,媒体广泛报道了该餐厅可能存在无症状感染者因气流导致新冠病毒感染的情况。我们采用了先进的内部大涡模拟求解器和其他前沿数值方法,以同时解析复杂的室内过程,包括湍流、气流与气溶胶的相互作用、热效应以及空调的过滤效应。利用模拟得出的气溶胶暴露指数,我们能够提供不同场景下空气传播感染风险的空间分布图。我们的结果显示,高气溶胶暴露指数区域与餐厅报告的感染模式之间存在显著的直接联系,为这起广泛报道的事件中空气传播的发生提供了有力支持。通过流动结构分析和气溶胶轨迹的反向追踪,我们能够进一步确定环境参数对感染风险的影响,并强调需要采取更有效的预防措施,例如根据局部流动模式设置屏蔽设施。因此,我们的研究展示了高保真CFD工具在空气传播感染风险评估和制定有效预防措施方面的能力和价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a84b/7976041/b84696b43857/PHFLE6-000033-023301_1-g001.jpg

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