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Effect of Spoilers on Ram Air Parachute Aerodynamic Force and Moment Coefficients

机译:扰流板对RAM空气降落伞空气动力力和力矩系数的影响

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Parachute landing precision is primarily affected by precise glide slope control and steering. In these experiments, aerodynamic forces and moments were measured for different bleed-air spoiler configurations which varied the number of spoilers, spanwise location, and chordwise location on a rigid model. These variations in spoiler configuration caused differences in the lift, drag, and side force as well as the pitch, roll, and yaw moments. The effectiveness of bleed-air spoilers was assessed for glide slope and steering control. Glide slope control was measured by changes in the glide ratio, L/D, while steering capability was assessed by changes in the roll and yaw moments. Testing was performed in the USAF Academy subsonic wind tunnel at a chord-based Reynolds Number of 500,000 at angles of attack between -6° and 20°. The data comparison showed that the spoiler location has a significant impact on glide slope and steering, and that models with two spoilers at 25 % chord provide the greatest opportunity to increase parachute landing precision.
机译:降落伞着陆精度主要受到精确的滑坡控制和转向的影响。在这些实验中,针对在刚性模型上变化的不同渗出空气扰流板配置,测量空气动力和时刻,其变化了扰流板的数量,跨越位置和弦位置。扰流板配置的这些变化导致升力,拖动和侧力以及间距,卷和偏航时刻的差异导致差异。对滑坡和转向控制进行了评估了渗出空气扰流板的有效性。通过滑翔比,L / D的变化测量滑动斜坡控制,同时通过卷和偏航时刻的变化来评估转向能力。在USAF学院亚音风隧道中在Chord的Reynolds在-6°和20°之间的角度下进行了测试。数据比较表明,扰流板位置对滑动坡和转向产生重大影响,并且在25%和25%和平的扰流板的模型提供了增加降落伞着陆精度的最大机会。

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