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On Particle Image Velocimetry (PIV) Measurements in the Breathing Zone of a Thermal Breathing Manikin

机译:热呼吸人体模型的呼吸区域中的粒子图像测速(PIV)测量

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摘要

A time-resolved PIV system has been employed to obtain quantitative velocity vectors in the breathing zone (nose only) of a thermal manikin that is placed within an Indoor Air Flow-field Laboratory (IAFL). Phase averaged (with breathing cycle) velocity measurements are taken in a vertical plane down the center of the manikin face. During exhalation, an interaction between the shear layers of the air jets from the nose and the buoyant flow created by the thermal plume of the manikin is observed. A threefold increase in local turbulence intensity was found during the exhale part of the breathing waveform when compared to ambient values in the laboratory (when there was no breathing) and to the results of other studies. These results suggest that the unsteadiness associated with the breathing cycle is critical for quantifying human exposure to pollutants indoors and the associated health risk as well as for validating CFD.
机译:已采用时间分辨PIV系统来获得放置在室内空气流场实验室(IAFL)中的热人体模型的呼吸区域(仅鼻孔)中的定量速度矢量。在人体模型脸部中央下方的垂直平面上进行相位平均(具有呼吸周期)速度测量。在呼气过程中,观察到来自鼻子的气流的剪切层与人体模型的热羽流所产生的浮力之间的相互作用。与实验室中的环境值(无呼吸时)以及其他研究结果相比,呼吸波形的呼气部分局部湍流强度增加了三倍。这些结果表明,与呼吸周期有关的不稳定对于量化人类在室内暴露于污染物以及相关的健康风险以及验证CFD至关重要。

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