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测量人工模型和人体受试者的呼气。

Measuring the exhaled breath of a manikin and human subjects.

机构信息

College of Civil Engineering, Hunan University, Changsha, China.

出版信息

Indoor Air. 2015 Apr;25(2):188-97. doi: 10.1111/ina.12129. Epub 2014 Jun 21.

Abstract

Due to scarcity of accurate information and available data of actual human breathing, this investigation focuses on characterizing the breathing dynamic process based on the measurement of healthy human subjects. The similarities and differences between one breathing thermal manikin and the human subjects, including geometry and breathing functions, were thoroughly studied. As expected, actual human breathing is more complicated than that of the manikin in terms of airflow fluctuations, individual differences, and exhaled flow directions. The simplification of manikin mouth structure could result in overestimated exhaled velocity and contaminant concentration. Furthermore, actual human breathing appears to be relatively stable and reproducible for an individual person in several conditions and is also accompanied by some uncertainties simultaneously. The averaged values are used to analyze the overall characteristics of actual human breathing. There are different characteristics of the exhaled breath between male and female subjects with or without wearing a nose clip. The experimental results obtained from the measurement of human subjects may be helpful for manikin specification or validation and accuracy assessment of CFD simulations.

摘要

由于实际人类呼吸的准确信息和可用数据稀缺,本研究集中于基于健康人体测试来描述呼吸动态过程。对呼吸热人体模型与人体受试者在几何形状和呼吸功能方面的相似性和差异性进行了深入研究。正如预期的那样,就气流波动、个体差异和呼气流动方向而言,实际人类呼吸比人体模型更为复杂。人体模型口部结构的简化可能导致呼气速度和污染物浓度的高估。此外,实际人类呼吸在几种条件下对于个体而言相对稳定且可重现,同时也伴随着一些不确定性。平均值用于分析实际人类呼吸的整体特征。有或没有佩戴鼻夹的男性和女性受试者的呼气特征存在差异。从人体测试中获得的实验结果可能有助于人体模型的规范或验证以及 CFD 模拟的准确性评估。

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