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Active Flow Control on Vertical Tail Models

机译:垂直尾翼模型上的主动流控制

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摘要

Active flow control (AFC) subscale experiments were conducted at the Lucas Wind Tunnel of the California Institute of Technology. Tests were performed on a generic vertical tail model at low speeds. Fluidic oscillators were used at the trailing edge of the main element (vertical stabilizer) to redirect the flow over the rudder and delay or prevent flow separation. Side force increases in excess of 50% were achieved with a 2% momentum coefficient (C mu) input. The results indicated that a collective C mu of about 1% could increase the side force by 30-50%. This result is achieved by reducing the spanwise flow on the swept back wings that contributes to early flow separation near their tips. These experiments provided the technical backdrop to test the full-scale Boeing 757 vertical tail model equipped with a fluidic oscillator system at the National Full-scale Aerodynamics Complex 40-by 80-foot Wind Tunnel, NASA Ames Research Center. The C mu is shown to be an important parameter for scaling a fluidic oscillator AFC system from subscale to full-scale wind tunnel tests. The results of these tests provided the required rationale to use a fluidic oscillator AFC configuration for a follow-on flight test on the Boeing 757 ecoDemonstrator.
机译:主动流量控制(AFC)子规模实验是在加利福尼亚理工学院的卢卡斯风洞进行的。测试是在低速的通用垂直尾翼模型上进行的。在主元件(垂直稳定器)的后缘使用了流体振荡器,以将气流重定向到舵上,从而延迟或防止气流分离。输入2%的动量系数(C mu)可获得超过50%的侧向力增加。结果表明,大约1%的集体C mu可以使侧向力增加30-50%。通过减少扫掠后机翼上的翼展方向流动来实现此结果,这有助于在其后部尖端附近尽早分离气流。这些实验为在美国国家航空航天局艾姆斯研究中心40英尺80英尺风洞国家级全尺寸航空动力学综合体中测试配备流体振荡器系统的全尺寸波音757垂直尾翼模型提供了技术背景。 C mu被证明是将流体振荡器AFC系统从子规模扩展到全面风洞测试的重要参数。这些测试的结果提供了使用流体振荡器AFC配置进行波音757 ecoDemonstrator后续飞行测试所需的原理。

著录项

  • 来源
    《AIAA Journal》 |2019年第8期|3322-3338|共17页
  • 作者单位

    NASA, Langley Res Ctr, Flow Phys & Control Branch, Hampton, VA 23681 USA;

    NASA, Langley Res Ctr, Flow Phys & Control Branch, Hampton, VA 23681 USA;

    GE Aviat, Cincinnati, OH 45215 USA;

    Shaper Tools Inc, San Francisco, CA 94110 USA;

    CALTECH, Aeronaut & Bioinspired Engn, Pasadena, CA 91125 USA;

    Boeing Co, Boeing Res & Technol, Hazelwood, MO 63042 USA;

    Univ Arizona, Aerosp & Mech Engn Dept, Tucson, AZ 85718 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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