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通过计算流体动力学(CFD)和韦尔斯-莱利模型预测牙科诊所中的新冠病毒感染,确定安全区域和合适的通风速度:通过CFD和韦尔斯-莱利模型预测牙科诊所中的新冠病毒感染,确定安全区域和合适的通风速度。

Prediction of COVID-19 Infection in Dental Clinic by CFD and Wells-Riley Model, Identifying Safe Area and Proper Ventilation Velocity: Prédiction de l'infection au COVID-19 dans une clinique dentaire par CFD et modèle Wells-Riley, identification de la zone de sécurité et de la vitesse de ventilation appropriée.

作者信息

Karami Shahram, Lakzian Esmail, Ahmadi Goodarz

机构信息

Center of Computational Energy, Department of Mechanical Engineering, Hakim Sabzevari University, Sabzevar, Iran.

Department of Mechanical Engineering, Andong National University, Andong, South Korea.

出版信息

Int J Refrig. 2023 Mar 15. doi: 10.1016/j.ijrefrig.2023.03.013.

Abstract

The COVID-19 virus is recognized worldwide as a significant public health threat. A dental clinic is one of the most dangerous places in the COVID-19 epidemic, and disease transmission is rapid. Planning is essential to create the right conditions in the dental clinic. In this study, the cough of an infected person is examined in a 9 × 6 × 3 m area. Computational fluid dynamic (CFD) is applied to simulate the flow field and to determine the dispersion path. The innovation of this research is checking the risk of infection for each person in the designated dental clinic, choosing the suitable velocity for ventilation, and identifying safe areas. In the first step, the effects of different ventilation velocities on the dispersion of virus-infected droplets are investigated, and the most appropriate ventilation flow velocity has been identified. Then, the results of the presence or absence of a dental clinic separator shield on the spread of respiratory droplets have been identified. Finally, the risk of infection (by the Wells-Riley equation) is assessed, and safe areas are identified. The effect of RH on droplet evaporation in this dental clinic is assumed to be 50%. The N values in an area with a separator shield are less than 1%. When there is a separator shield, the infection risk of people in A3 and A7 (the other side of the separator shield) is reduced from 23% to 4%, and 21% to 2%, respectively.

摘要

新型冠状病毒肺炎病毒在全球范围内被公认为是对公众健康的重大威胁。牙科诊所是新型冠状病毒肺炎疫情中最危险的场所之一,疾病传播迅速。规划对于在牙科诊所创造合适条件至关重要。在本研究中,在一个9×6×3米的区域内对感染者的咳嗽进行了检测。应用计算流体动力学(CFD)来模拟流场并确定扩散路径。本研究的创新之处在于检查指定牙科诊所内每个人的感染风险,选择合适的通风速度,并确定安全区域。第一步,研究了不同通风速度对病毒感染飞沫扩散的影响,并确定了最合适的通风流速。然后,确定了牙科诊所分隔屏对呼吸道飞沫传播有无影响的结果。最后,评估感染风险(通过韦尔斯-莱利方程)并确定安全区域。假设本牙科诊所中相对湿度(RH)对飞沫蒸发的影响为50%。有分隔屏区域的N值小于1%。当有分隔屏时,A3和A7(分隔屏另一侧)人员的感染风险分别从23%降至4%和从21%降至2%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bff/10014504/0a551d02f58e/gr1_lrg.jpg

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