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Airborne spread of expiratory droplet nuclei between the occupants of indoor environments: A review

机译:室内环境中乘员之间呼气小滴核的空气传播:综述

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摘要

This article reviews past studies of airborne transmission between occupants in indoor environments, focusing on the spread of expiratory droplet nuclei from mouth/ nose to mouthose for non-specific diseases. Special attention is paid to summarizing what is known about the influential factors, the inappropriate simplifications of the thermofluid boundary conditions of thermal manikins, the challenges facing the available experimental techniques, and the limitations of available evaluation methods. Secondary issues are highlighted, and some new ways to improve our understanding of airborne transmission indoors are provided. The characteristics of airborne spread of expiratory droplet nuclei between occupants, which are influenced correlatively by both environmental and personal factors, were widely revealed under steady-state conditions. Owing to the different boundary conditions used, some inconsistent findings on specific influential factors have been published. The available instrumentation was too slow to provide accurate concentration profiles for time-dependent evaluations of events with obvious time characteristics, while computational fluid dynamics (CFD) studies were mainly performed in the framework of inherently steady Reynolds-averaged Navier-Stokes modeling. Future research needs in 3 areas are identified: the importance of the direction of indoor airflow patterns, the dynamics of airborne transmission, and the application of CFD simulations.
机译:本文回顾了室内环境中乘员之间空气传播的过去研究,重点是非特异性疾病的呼气飞沫核从口/鼻到口/鼻的扩散。要特别注意总结有关影响因素的已知信息,热人体模型的热流体边界条件的不当简化,可用的实验技术面临的挑战以及可用的评估方法的局限性。突出了次要问题,并提供了一些新的方法来增进我们对室内机载传输的理解。在稳态条件下,广泛地揭示了乘员之间呼气液滴核的空气传播特征,该特征受环境和个人因素的影响。由于使用了不同的边界条件,已经发表了一些关于特定影响因素的不一致结论。可用的仪器太慢,无法为具有明显时间特征的事件提供随时间变化的准确浓度分布图,而计算流体力学(CFD)研究主要在固有的稳定雷诺兹平均Navier-Stokes建模框架内进行。确定了3个领域的未来研究需求:室内气流模式方向的重要性,空中传播的动力学以及CFD模拟的应用。

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