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An Overview of Active Flow Control Enhanced Vertical Tail Technology Development

机译:主动流控制增强垂直尾翼技术发展概述

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This paper summarizes a joint NASA/Boeing research effort to advance Active Flow Control (AFC) technology to enhance aerodynamic efficiency of a vertical tail. Sweeping jet AFC technology was successfully tested on subscale and full-scale models as well as in flight. The subscale test was performed at Caltech on a ~14% scale model. More than 50% side force enhancement was achieved by the sweeping jet actuation when the momentum coefficient was 1.7%. AFC caused significant increases in suction pressure on the actuator side and associated side force enhancement. Subsequently, a full-scale Boeing 757 vertical tail model equipped with sweeping jets was tested at the National Full-Scale Aerodynamics Complex 40- by 80-Foot Wind Tunnel at NASA Ames Research Center. There, flow separation control optimization was performed at near flight conditions. Greater than 20% increase in side force were achieved for the maximum rudder deflection of 30s at the key sideslip angles (0° and -75°) with a 31-actuator AFC configuration. Based on these tests, the momentum coefficient is shown to be a necessary, but not sufficient parameter to use for design and scaling of sweeping jet AFC from subscale tests to full-scale applications. Leveraging the knowledge gained from the wind tunnel tests, the AFC-enhanced vertical tail technology was successfully flown on the Boeing 757 ecoDemonstrator in the spring of 2015.
机译:本文总结了NASA /波音公司的一项联合研究成果,以推进主动流控制(AFC)技术来提高垂直尾翼的空气动力学效率。清扫喷气AFC技术已成功在子比例尺和全尺寸模型以及飞行中进行了测试。在Caltech上以〜14%的比例模型进行了子比例测试。当动量系数为1.7%时,通过清扫射流致动可提高50%以上的侧向力。 AFC导致执行器侧的吸气压力显着增加,并且相关的侧向力增强。随后,在美国国家航空航天局艾姆斯研究中心的国家全尺寸空气动力学综合大楼40×80英尺风洞中对配备有清扫喷嘴的全尺寸波音757垂直尾翼模型进行了测试。在那里,在接近飞行的条件下进行了流分离控制的优化。在31个执行器AFC配置下,在关键侧滑角(0°和-75°)下,最大方向舵偏转30s可获得超过20%的侧向力增加。基于这些测试,表明动量系数是必要的参数,但不足以用于扫掠AFC的设计和定标(从子规模测试到大规模应用)。借助从风洞测试中获得的知识,增强了AFC的垂直尾翼技术已于2015年春季在波音757 ecoDemonstrator上成功飞行。

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