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Experimental Investigation of Air Distribution in the Occupied Zones of an Air Curtain Ventilated Enclosure

机译:空气幕通风柜占用区域空气分布的实验研究

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This paper focuses on the performance of a new air curtain ventilation system. Particle Image Velocimetry (PIV) is used to visualize and investigate the airflow characteristic of an air curtain in an enclosure and the airflow pattern and temperature fields are measured and analyzed in detail. The air supply velocity and the slot inlet location were varied during the experimental process. The current results show that with the increase of air supply velocity the cooling effect in the occupied zone is further strengthened. When the air supply velocity ranges from 0.3 tol.5 m/s, the minimum mean temperature difference in the occupied zone is nearly 0.4 °C. Additionally, it was found that, for the air curtain ventilation model, the effective distance from the slot location to the sidewall is 0 tol40 mm. When the distance is greater than about 150 mm, the air curtain ventilation will turn into mixing ventilation. The current experimental study and its results arc helpful in understanding a new air distribution method i.e. an air curtain used for room ventilation.
机译:本文重点介绍新型气幕通风系统的性能。粒子图像测速(PIV)用于可视化和研究外壳中气幕的气流特性,并详细测量和分析气流模式和温度场。在实验过程中,空气供应速度和缝隙入口位置会发生变化。目前的结果表明,随着送风速度的增加,占用区域的冷却效果进一步增强。当送风速度在0.3至1.5 m / s的范围内时,所占区域的最小平均温差接近0.4°C。另外,发现对于气帘通风模型,从缝隙位置到侧壁的有效距离为0至140mm。当距离大于约150 mm时,气幕通风将变为混合通风。当前的实验研究及其结果有助于理解一种新的空气分配方法,即用于房间通风的气幕。

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