首页> 外文会议>ASME/JSME thermal engineering joint conference;AJTEC2011 >A CFD ANALYSIS OF TRANSVERSE AIRFLOW AROUND THE EXTERIOR OF AN AIRCRAFT FUSELAGE INSIDE A LARGE ENCLOSURE
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A CFD ANALYSIS OF TRANSVERSE AIRFLOW AROUND THE EXTERIOR OF AN AIRCRAFT FUSELAGE INSIDE A LARGE ENCLOSURE

机译:大围护内飞机机身外部横向气流的CFD分析

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A model for predicting the airflow over the aircraft exterior with in a hangar is presented in this paper. The main reason behind this was to analyze the amount of air flowing over the aircraft at the time of painting, in order to dry the paint effectively and avoid possible hazardous effects on the people painting the aircraft. The air flow was supplied through the HVAC system in the hangar area. The HVAC system was available at the ceiling and air flows from the diffuser at the ceiling level. Grills were placed at the floor level in order to capture the air that flows down in the hangar area. The hangar area was split into three regions such that three aircrafts are placed for the purpose of painting. The three regions were separated with curtains between them which act as walls on the two sides for the aircraft at the center and walls on one side for aircrafts at the corner of the hangar area. A 2D model was simulated for the exterior airflow. Velocity of the air passing out of the diffuser was fixed at 0.56 m/s. The simulations were run at five different sections of the aircraft in order to simulate the airflow over the entire aircraft region on the exterior. The angle at which air flows from the diffuser is varied as 0°, 22.5°, 45°. This was performed in order to obtain the best possible angle at which air could be distributed in the hangar area, such that the aircraft is dried effectively at the time of painting. It was evident that the distribution of air along the aircraft exterior was more effective at diffuser angles of 0° and 22.5°. At 45° the airflow is directed away from the aircraft resulting in the circulation of air inside the hangar area.
机译:本文提出了一种用于预测飞机机库内飞机外部气流的模型。其背后的主要原因是在喷漆时分析流过飞机的空气量,以便有效地干燥油漆并避免对喷漆飞机的人造成潜在的危险影响。气流通过机库区域内的HVAC系统供应。天花板上有HVAC系统,而天花板上有来自扩散器的气流。将格栅放置在地板上,以捕获在机库区域中向下流动的空气。机库区域分为三个区域,以便放置三架飞机进行绘画。这三个区域之间用帘子隔开,帘子在中央飞机的两侧壁上,在机库区域角落的飞机上则是一侧上的壁。针对外部气流模拟了2D模型。从扩散器出来的空气的速度固定为0.56m / s。模拟是在飞机的五个不同部分进行的,目的是模拟飞机外部整个飞机区域的气流。空气从扩散器流出的角度变化为0°,22.5°,45°。这样做是为了获得最佳的角度,使空气可以在机库区域内分布,从而使飞机在喷漆时得到有效干燥。显然,在扩散角为0°和22.5°时,沿飞机外部的空气分配更为有效。在45°时,气流被引导远离飞机,从而导致机库区域内的空气循环。

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