Poussou Stephane B, Plesniak Michael W
1School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907 USA.
2Department of Mechanical and Aerospace Engineering, The George Washington University, 801 22nd Street, N.W., Washington, DC 20052 USA.
Exp Fluids. 2012;53(3):747-763. doi: 10.1007/s00348-012-1325-1. Epub 2012 Jun 5.
The air ventilation system in wide-body aircraft cabins provides passengers with a healthy breathing environment. In recent years, the increase in global air traffic has amplified contamination risks by airborne flu-like diseases and terrorist threats involving the onboard release of noxious materials. In particular, passengers moving through a ventilated cabin may transport infectious pathogens in their wake. This paper presents an experimental investigation of the wake produced by a bluff body driven through a steady recirculating flow. Data were obtained in a water facility using particle image velocimetry and planar laser induced fluorescence. Ventilation attenuated the downward convection of counter-rotating vortices produced near the free-end corners of the body and decoupled the downwash mechanism from forward entrainment, creating stagnant contaminant regions.
宽体客机机舱内的空气通风系统为乘客提供了健康的呼吸环境。近年来,全球航空客流量的增加放大了通过空气传播的流感样疾病以及涉及在飞机上释放有害物质的恐怖主义威胁所带来的污染风险。特别是,在通风机舱中走动的乘客身后可能会携带传染性病原体。本文介绍了对钝体在稳定循环流中驱动所产生尾流的实验研究。数据是在水设施中使用粒子图像测速技术和平面激光诱导荧光技术获得的。通风减弱了在物体自由端角附近产生的反向旋转涡旋的向下对流,并使下洗机制与向前夹带解耦,从而形成了污染物停滞区域。