首页> 外文期刊>Journal of Flow Control, Measurement & Visualization >Airflow Distribution Measurements around the Human Body Using a Thermal Manikin by Particle Image Velocimetry
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Airflow Distribution Measurements around the Human Body Using a Thermal Manikin by Particle Image Velocimetry

机译:通过粒子图像VELOCIMETRY使用热人体围绕人体的气流分布测量

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The human body is a heat source in a room. As the human body has a complex shape, it is difficult to accurately measure the airflow distribution around the human body using a conventional anemometer. This study measured the airflow distribution around a thermal manikin acting as a human body by visualization and particle image velocimetry (PIV). The thermal manikin was 1700 mm in height, and its surface temperature was set to 30oC. The experiments were performed in the conditions when the manikin was seated on a chair. The ambient air temperature and wind velocity were experimental variables. The airflow distribution around the manikin was reported by considering the relationships between convection and ambient wind velocity. There were no differences in the airflow distribution around the manikin due to the ambient air temperature when the wind velocity in the chamber was set as 1.0 m/s. Hence, it was assumed that the ambient wind velocity was dominant in this condition. Various airflow distributions were formed around the manikin due to the difference between the body surface temperature and the ambient air temperature in the case where the wind velocity in the chamber was set to approximately equal to 0.0 m/s.
机译:人体是一个房间里的热源。当人体具有复杂的形状时,难以使用常规风速计准确地测量人体周围的气流分布。该研究通过可视化和颗粒图像VELOCIMETRY(PIV)测量了作为人体作为人体的热人体的气流分布。高度的热人体ind为1700 mm,其表面温度设定为30℃。当Manikin坐在椅子上时,实验在条件下进行。环境空气温度和风速是实验变量。通过考虑对流与环境风速之间的关系,报道了Manikin周围的气流分布。由于腔室中的风速设定为1.0m / s,在环境空气温度下,Manikin周围的气流分布没有差异。因此,假设环境风速在这种情况下是显着的。由于在腔室中的风速设定为大约等于0.0m / s的情况下,由于体表温度和环境空气温度之间的差异,在人体模型周围形成各种气流分布。

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