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Experimental investigation of personal air supply nozzle use in aircraft cabins

机译:在飞机机舱中使用个人供气喷嘴的实验研究

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To study air passengers' use of individual air supply nozzles in aircraft cabins, we constructed an experimental chamber which replicated the interior of a modern passenger aircraft. A series of experiments were conducted at different levels of cabin occupancy. Survey data were collected focused on the reasons for opening the nozzle, adjusting the level of air flow, and changing the direction of the air flow. The results showed that human thermal and draft sensations change over time in an aircraft cabin. The thermal sensation response was highest when the volunteers first entered the cabin and decreased over time until it stablized. Fifty-one percent of volunteers opened the nozzle to alleviate a feeling of stuffiness, and more than 50% adjusted the nozzle to improve upper body comfort. Over the period of the experiment the majority of volunteers chose to adjust their the air flow of their personal system. This confirms airline companies' decisions to install the individual aircraft ventilation systems in their aircraft indicates that personal air systems based on nozzle adjustment are essential for cabin comfort. These results will assist in the design of more efficient air distribution systems within passenger aircraft cabins where there is a need to optimize the air flow in order to efficiently improve aircraft passengers' thermal comfort and reduce energy use. (c) 2014 Elsevier Ltd and The Ergonomics Society. All rights reserved.
机译:为了研究航空乘客在机舱中使用单个供气喷嘴的情况,我们构建了一个实验舱,该舱模仿了现代客机的内部。在不同的客舱占用水平下进行了一系列实验。收集了有关打开喷嘴,调整气流水平以及改变气流方向的原因的调查数据。结果表明,机舱中的人体热感和吃水感会随时间变化。当志愿者首次进入机舱时,其热感觉反应最高,并随着时间的流逝逐渐下降直至稳定。 51%的志愿者打开喷嘴以减轻闷闷的感觉,超过50%的志愿者调节喷嘴以提高上身的舒适度。在实验期间,大多数志愿者选择调整其个人系统的气流。这证实了航空公司决定在其飞机上安装单个飞机通风系统的决定,表明基于喷嘴调节的个人空气系统对于机舱舒适性至关重要。这些结果将有助于在需要优化气流以有效改善飞机乘客的热舒适性并减少能源使用的客机舱内设计更有效的空气分配系统。 (c)2014年Elsevier Ltd和人体工程学协会。版权所有。

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