论文标题

通过3D CFD模拟评估的汽车舱中SARS-COV-2的风险

Risk of SARS-CoV-2 in a car cabin assessed through 3D CFD simulations

论文作者

Arpino, Fausto, Grossi, Giorgio, Cortellessa, Gino, Mikszewski, Alex, Morawska, Lidia, Buonanno, Giorgio, Stabile, Luca

论文摘要

在本文中,通过综合方法结合了新近开发的预测性发射对风险方法和经过验证的CFD数字模型,使用开放式OpenFoam OpenFOAM Softit soldected估算了SARS-COV-2 Delta变种的感染风险,该乘客的SARS-COV-2三角洲变种具有30分钟的感染对象,共享了30分钟的旅程。研究了不同的情况,以评估感染受试者在汽车舱内的影响,HVAC系统的空气流量,HVAC通气模式和呼气活动(呼吸与说话)。这里进行的数值模拟表明,感染的风险受到多个关键参数的强烈影响:例如,在相同的通风模式和发射情况下,感染的风险范围从零到大约50%,这是HVAC流量的函数。获得的结果还表明:(i)简化的零维方法限制了对此类狭窄空间中的风险的正确评估,相反,(ii)CFD方法来研究相似的室内环境中的复杂流体动力学,,(ii)在固定环境中以固定座位为特征的环境中,在固定环境中的感染风险可以在适当的控制下进行。

In this paper the risk of infection from SARS-CoV-2 Delta variant of passengers sharing a car cabin with an infected subject for a 30-min journey is estimated through an integrated approach combining a recently developed predictive emission-to-risk approach and a validated CFD numerical model numerically solved using the open-source OpenFOAM software. Different scenarios were investigated to evaluate the effect of the infected subject position within the car cabin, the air flow rate of the HVAC system, the HVAC ventilation mode, and the expiratory activity (breathing vs. speaking). The numerical simulations here performed reveal that the risk of infection is strongly influenced by several key parameter: as an example, under the same ventilation mode and emitting scenario, the risk of infection ranges from zero to roughly 50% as a function of the HVAC flow rate. The results obtained also demonstrate that: (i) simplified zero-dimensional approaches limit proper evaluation of the risk in such confined spaces, conversely, (ii) CFD approaches are needed to investigate the complex fluid-dynamics in similar indoor environments, and, thus, (iii) the risk of infection in indoor environments characterized by fixed seats can be in principle controlled by properly designing the flow patterns of the environment.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源