Chen C, Lin C-H, Jiang Z, Chen Q
School of Mechanical Engineering, Purdue University, West Lafayette, IN, USA.
Indoor Air. 2014 Dec;24(6):580-91. doi: 10.1111/ina.12109. Epub 2014 Apr 4.
Covering a cough can be useful in reducing the transmission of airborne infectious diseases. However, no simple method is available in the literature for predicting the exhaled airflow from a cough with the mouth covered. This investigation used smoke to visualize the airflow exhaled by 16 human subjects. Their mouths were covered by a tissue, a cupped hand, a fist, and an elbow with and without a sleeve. This study then developed simplified models for predicting the airflow on the basis of the smoke visualization data. In addition, this investigation performed numerical simulations to assess the influence of mouth coverings on the receptor's exposure to exhaled particles. It was found that covering a cough with a tissue, a cupped hand, or an elbow can significantly reduce the horizontal velocity and cause the particles to move upward with the thermal plumes generated by a human body. In contrast with an uncovered cough, a covered cough or a cough with the head turned away may prevent direct exposure.
This study developed simplified models for predicting the exhaled airflow from a cough with the mouth covered. The proposed models can easily be used to investigate the risk of transmission of airborne infectious diseases in enclosed environments.
捂住咳嗽可能有助于减少空气传播传染病的传播。然而,文献中没有简单的方法来预测捂住嘴咳嗽时呼出的气流。本研究使用烟雾来可视化16名受试者咳嗽时呼出的气流。他们的嘴分别用纸巾、捧起的手、拳头以及有袖子和无袖子的肘部捂住。然后,本研究根据烟雾可视化数据开发了预测气流的简化模型。此外,本研究进行了数值模拟,以评估捂住嘴对受体接触呼出颗粒的影响。研究发现,用纸巾、捧起的手或肘部捂住咳嗽可显著降低水平速度,并使颗粒随着人体产生的热羽流向上移动。与不捂嘴咳嗽相比,捂嘴咳嗽或转头咳嗽可避免直接暴露。
本研究开发了预测捂住嘴咳嗽时呼出气流的简化模型。所提出的模型可轻松用于研究封闭环境中空气传播传染病的传播风险。