静态和动态条件下,粒径和相对湿度对通风室内气溶胶/液滴传播影响的综合计算研究

IF 4.3 2区 环境科学与生态学 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Indoor air Pub Date : 2024-12-04 DOI:10.1155/ina/6039587
Sadegh Sadeghi, Saiied M. Aminossadati, Christopher Leonardi
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引用次数: 0

摘要

考虑到呼吸道气溶胶(直径>; 5 μm)和含有传染性病毒的液滴(直径>; 5 μm)的空气传播可能引起交叉污染的担忧,迫切需要对这些颗粒在真实场景中的行为进行可靠的模拟。本研究进行了全面的瞬态CFD分析,以研究在配备通风系统的典型房间内,移动患者通过咳嗽释放的携带病毒的气溶胶和飞沫的传播。本计算研究详细检查了颗粒大小和相对湿度如何影响患者在移动和静止条件下携带病毒的气溶胶和飞沫的分散。为了提高本研究的准确性,考虑了有效因素,如气溶胶和液滴内液体含量的蒸发和颗粒的随机分布,以及浮力、阻力、升力、布朗运动和重力等因素。为了研究气溶胶和液滴尺寸的影响,本研究考虑直径为1、10和100 μm的均匀尺寸分布,其中液态水含量为98.2%,固体含量为1.8%。此外,不同的相对湿度水平(0%、50%和90%)被纳入,以表明它们对静止和动态情景下颗粒的分散模式和停留时间的影响。结果表明,高相对湿度和个体的运动显著影响了此类环境中的湍流强度、气流形态、移动距离、颗粒停留时间和轨迹、气压和密度分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Comprehensive Computational Study on the Influences of Particle Size and Relative Humidity on Aerosol/Droplet Transmission in a Ventilated Room Under Stationary and Dynamic Conditions

Given the concerns surrounding the possibility of crosscontamination caused by the airborne transmission of respiratory aerosols (> 5 μm in diameter) and droplets (> 5 μm in diameter) containing infectious viruses, there is a great need for simulations that reliably characterize the behaviour of these particles in real-world scenarios. This study performs a comprehensive transient CFD analysis to investigate the transmission of virus-carrying aerosols and droplets released through coughing by a mobile patient within a typical room equipped with a ventilation system. This computational study elaborately examines how particle size and relative humidity impact the dispersion of aerosols and droplets carrying virus in both mobile and stationary conditions of patients. To enhance the accuracy of this study, effective factors such as evaporation of liquid content within aerosols and droplets and random distribution of the particles, along with considerations for buoyancy, drag, lift, Brownian motion, and gravitational forces, are taken into account. To investigate the influence of aerosol and droplet size, this study considers uniform size distributions of 1, 10, and 100 μm in diameter, comprising 98.2% liquid water and 1.8% solid content. Additionally, different relative humidity levels, 0%, 50%, and 90%, are incorporated to indicate their impact on the dispersion pattern and residence time of the particles in both stationary and dynamic scenarios. According to the results, high levels of relative humidity and individuals’ movement significantly affect the turbulence intensity, airflow pattern, travelling distance, residence time and trajectory of particles, air pressure, and density distributions in such environments.

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来源期刊
Indoor air
Indoor air 环境科学-工程:环境
CiteScore
10.80
自引率
10.30%
发文量
175
审稿时长
3 months
期刊介绍: The quality of the environment within buildings is a topic of major importance for public health. Indoor Air provides a location for reporting original research results in the broad area defined by the indoor environment of non-industrial buildings. An international journal with multidisciplinary content, Indoor Air publishes papers reflecting the broad categories of interest in this field: health effects; thermal comfort; monitoring and modelling; source characterization; ventilation and other environmental control techniques. The research results present the basic information to allow designers, building owners, and operators to provide a healthy and comfortable environment for building occupants, as well as giving medical practitioners information on how to deal with illnesses related to the indoor environment.
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