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In-Flight Infrared Thermography for Studies of Aircraft Cabin Ventilation

机译:用于研究飞机机舱通风的飞行红外热成像

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摘要

To improve the convenience of aircraft cabins, Cabin Displacement Ventilation (CDV) was investigated during flight tests in an Airbus A320 with an automatically rotatable infrared camera. For this purpose a programmable, step motor driven infrared camera setup was developed, allowing for time resolved acquisition of the temperatures on the interior cabin surfaces during the whole flights. From the temporal development of the surface temperatures the cooling and heating performance of pure CDV as well as a hybrid system (HV), where 30% of the fresh air was supplied through the original lateral outlets, was analyzed and characterized. Static measurements reveal a characteristic, yet homogeneous temperature distribution in the cabin for both scenarios, pinpointing to a homogeneous cooling of the heat loads in the whole cabin. In order to study the performance of CDV and HV, dedicated "pull-up" and "pull-down" scenarios, those are abrupt changes of the inflow temperature with the objective to study the heating and cooling dynamics, were conducted during the flight tests. Analysis of time resolved measurements discloses that the cooling performance of the cabin is limited by thermal diffusion of heat inside of the interior cabin materials.
机译:为了提高航空器舱的便利性,在空中客车A320的飞行试验期间调查了机舱位移通风(CDV),具有自动可旋转的红外相机。为此目的,开发了可编程的步进电机驱动红外相机设置,允许在整个航班期间解决内部舱表面上的温度的时间。从表面的时间开发温度,纯CDV的冷却和加热性能以及混合系统(HV),其中通过原始横向出口供应30%的新鲜空气,并进行了分析和表征。静态测量揭示了驾驶室中的特征,但均匀的温度分布,用于两种情况,针对整个舱内的热负荷的均匀冷却。为了研究CDV和HV的性能,专用的“上拉”和“下拉”情景,在飞行试验期间进行了目的研究了加热和冷却动力学的流入温度的突然变化。分辨率测量的分析公开了通过内部舱内材料内部的热扩散的热扩散限制了舱室的冷却性能。

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