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Experimental study of ventilation effectiveness and air velocity distribution in an aircraft cabin mockup

机译:机舱模型中通风效率和风速分布的实验研究

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Ventilation effectiveness in aircraft cabins is a critical factor for minimizing the cross-contamination of airborne pathogens exhaled by the passengers. In this study, a full-scale section of a Boeing 767 aircraft cabin containing thirty five mannequins was used for evaluating the ventilation effectiveness and characterizing the air distribution. Each mannequin was attached with a body heater and an outlet of carbon dioxide to simulate breathing. A set of experiment trials was conducted to measure the local mean age of air and the ventilation effectiveness factor (VEF) at the breathing level of the passengers. Carbon dioxide was used as the trace gas to determine the local mean age of air and the VEF. The air velocity profiles measured using a volumetric particle tracking velocimetry (VPTV) system was used to generate the airflow patterns and investigate the underlying mechanism affecting the local mean age of air and the VEF. In addition, measurements were conducted at different air supply rates to examine its effect on the ventilation performance.
机译:机舱中的通风效率是最大程度减少乘客呼出的空气传播病原体交叉污染的关键因素。在这项研究中,使用包含35个人体模型的波音767机舱的全尺寸部分来评估通风效果并表征空气分布。每个人体模型均附有人体加热器和二氧化碳出口以模拟呼吸。进行了一组实验试验,以测量当地平均空气年龄和乘客呼吸水平处的通风效率因子(VEF)。使用二氧化碳作为痕量气体来确定空气和VEF的局部平均年龄。使用体积粒子跟踪测速(VPTV)系统测得的风速曲线用于生成气流模式,并研究影响空气局部平均年龄和VEF的潜在机制。另外,在不同的供气速率下进行测量以检查其对通风性能的影响。

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