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Application of forebody strakes for directional stability and control of transport aircraft

机译:前体板在运输飞机方向稳定性和控制中的应用

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A brief overview of a cooperative NASA/Boeing research effort, Strake Technology Research Application to Transport Aircraft (STRATA), intended to explore the potential of applying forebody strake technology to transport aircraft configurations for directional stability and control at low angles of attack, is presented. ^As an initial step in the STRATA program, an exploratory wind-tunnel investigation of the effect of fixed forebody strakes on the directional stability and control characteristics of a generic transport configuration was conducted in the NASA Langley 12-Foot Low-Speed Wind Tunnel. ^Results of parametric variations in strake chord and span, as well as the effect of strake incidence, are presented. ^The use of strakes for yaw control is also discussed. ^Results emphasize the importance of forebody/fuselage crossflow in influencing strake effectiveness. ^Strake effectiveness is also seen to be directly related to its span, but less sensitive to chord; a very short-chord strake with sufficient span can have a significant effect. ^(Author)
机译:简要概述了美国宇航局/波音公司的合作研究成果《运输机的突击技术研究应用》(STRATA),旨在探讨应用前体突击技术在运输机构型上实现低攻角方向稳定性和控制的潜力。 。 ^作为STRATA计划的第一步,在NASA兰利12英尺低速风洞中进行了风洞试验研究,研究了前体固定板对通用运输构型的方向稳定性和控制特性的影响。 ^给出了弦和弦和跨度的参数变化的结果,以及弦的发生率的影响。 ^还讨论了使用板条进行偏航控制。 ^结果强调前体/机身横流在影响前冲效果方面的重要性。 ^延音效果也被认为与其跨度直接相关,但对和弦的敏感度较低;具有足够跨度的非常短的弦音会产生重大影响。 ^(作者)

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