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本文引用的文献

1
Exhaled CO as a COVID-19 Infection Risk Proxy for Different Indoor Environments and Activities.呼出一氧化碳作为不同室内环境和活动中新冠病毒感染风险的替代指标
Environ Sci Technol Lett. 2021 Apr 5;8(5):392-397. doi: 10.1021/acs.estlett.1c00183. eCollection 2021 May 11.
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A paradigm shift to combat indoor respiratory infection.对抗室内呼吸道感染的范式转变。
Science. 2021 May 14;372(6543):689-691. doi: 10.1126/science.abg2025.
3
Ten scientific reasons in support of airborne transmission of SARS-CoV-2.支持新冠病毒空气传播的十个科学依据。
Lancet. 2021 May 1;397(10285):1603-1605. doi: 10.1016/S0140-6736(21)00869-2. Epub 2021 Apr 15.
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Experimental Investigation of Aerosol and CO Dispersion for Evaluation of COVID-19 Infection Risk in a Concert Hall.音乐厅气溶胶和 CO 扩散的实验研究评估 COVID-19 感染风险。
Int J Environ Res Public Health. 2021 Mar 16;18(6):3037. doi: 10.3390/ijerph18063037.
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Inhaled aerosols: Their role in COVID-19 transmission, including biophysical interactions in the lungs.吸入气雾剂:它们在新冠病毒传播中的作用,包括在肺部的生物物理相互作用。
Curr Opin Colloid Interface Sci. 2021 Aug;54:101451. doi: 10.1016/j.cocis.2021.101451. Epub 2021 Mar 24.
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Estimating COVID-19 exposure in a classroom setting: A comparison between mathematical and numerical models.在课堂环境中估算新冠病毒暴露情况:数学模型与数值模型的比较
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7
Probable airborne transmission of SARS-CoV-2 in a poorly ventilated restaurant.严重急性呼吸综合征冠状病毒2(SARS-CoV-2)在通风不良的餐厅可能通过空气传播。
Build Environ. 2021 Jun;196:107788. doi: 10.1016/j.buildenv.2021.107788. Epub 2021 Mar 13.
8
Outdoor Transmission of SARS-CoV-2 and Other Respiratory Viruses: A Systematic Review.SARS-CoV-2 和其他呼吸道病毒的户外传播:系统评价。
J Infect Dis. 2021 Feb 24;223(4):550-561. doi: 10.1093/infdis/jiaa742.
9
Numerical Study of Three Ventilation Strategies in a prefabricated COVID-19 inpatient ward.预制式新冠肺炎住院病房三种通风策略的数值研究
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10
The role of air conditioning in the diffusion of Sars-CoV-2 in indoor environments: A first computational fluid dynamic model, based on investigations performed at the Vatican State Children's hospital.空调在室内环境中传播 SARS-CoV-2 中的作用:基于在梵蒂冈国立儿童医院进行的调查的第一个计算流体动力学模型。
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以一氧化碳浓度为指标,研究自然通风对室内/半室内露台中SARS-CoV-2暴露情况的影响。

Impact of natural ventilation on exposure to SARS-CoV 2 in indoor/semi-indoor terraces using CO concentrations as a proxy.

作者信息

Rivas Esther, Santiago Jose Luis, Martín Fernando, Martilli Alberto

机构信息

Atmospheric Pollution Division - Environmental Department Research Center for Energy, Environment, and Technology - CIEMAT, Avda. Complutense, 40, 28 040, Madrid, Spain.

出版信息

J Build Eng. 2022 Apr 1;46:103725. doi: 10.1016/j.jobe.2021.103725. Epub 2021 Dec 1.

DOI:10.1016/j.jobe.2021.103725
PMID:40477755
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8632854/
Abstract

Nowadays, it is necessary a better airborne transmission understanding of respiratory diseases in shared indoor and semi-indoor environments with natural ventilation in order to adopt effective people's health protection measures. The aim of this work is to evaluate the relative exposure to SARS-CoV 2 in a set of virtual scenarios representing enclosed and semi-enclosed terraces under different outdoor meteorological conditions. For this purpose, indoor CO concentration is used as a proxy for the risk assessment. Airflow and people exhaled CO in different scenarios are simulated through Computational Fluid Dynamics (CFD) modelling with Unsteady Reynolds-Averaged Navier-Stokes (URANS) approach. Both spatial average concentrations and local concentrations are analyzed. In general, spatial average concentrations decrease as ventilation increases, however, depending on the people arrangement inside the terrace, spatial average concentrations and local concentrations can be very different. Therefore, for assessing the relative exposure to SARS-CoV 2 it is necessary to consider the indoor flow patterns between infectors and susceptibles. This research provides detailed information about CO dispersion in enclosed/semi-enclosed scenarios, which can be very useful for reducing the transmission risk through better natural ventilation designs and improving the classic risk models since it allows to check their hypotheses in real-world scenarios. Although CFD ventilation studies in indoor/semi-indoor environments have been already addressed in the literature, this research is focused on restaurant terraces, scenarios scarcely investigated. Likewise, one of the novelties of this study is to take into account the outdoor meteorological conditions to appropriately simulate natural ventilation.

摘要

如今,为了采取有效的人员健康保护措施,有必要更好地了解在具有自然通风的共享室内和半室内环境中呼吸道疾病的空气传播情况。这项工作的目的是评估在一组代表不同室外气象条件下封闭和半封闭露台的虚拟场景中,SARS-CoV-2的相对暴露情况。为此,室内一氧化碳浓度被用作风险评估的替代指标。通过采用非定常雷诺平均纳维-斯托克斯(URANS)方法的计算流体动力学(CFD)建模,模拟不同场景下的气流和人体呼出的一氧化碳。分析了空间平均浓度和局部浓度。一般来说,空间平均浓度随着通风的增加而降低,然而,根据露台内人员的布局,空间平均浓度和局部浓度可能会有很大差异。因此,为了评估SARS-CoV-2的相对暴露情况,有必要考虑感染者和易感者之间的室内流动模式。本研究提供了关于封闭/半封闭场景中一氧化碳扩散的详细信息,这对于通过更好的自然通风设计降低传播风险以及改进经典风险模型非常有用,因为它允许在实际场景中检验这些模型的假设。尽管文献中已经涉及了室内/半室内环境中的CFD通风研究,但本研究聚焦于餐厅露台,这是很少被研究的场景。同样,本研究的一个新颖之处在于考虑了室外气象条件以适当地模拟自然通风。