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Roll Stall for Low-Aspect-Ratio Wings

机译:低速比机翼的防滚转

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摘要

The longitudinal aerodynamics of micro aerial vehicles, although not fully understood, have been the subject of several studies in recent years; however, little work has been done to investigate the lateral loading. In this experiment, flat-plate wings with rectangular planforms of aspect ratios AR = 0.75, 1, 1.5, and 3 and tapered planforms of X = 0.75,0.5, and 0.25 were placed in the wind tunnel at a Reynolds numbers of 7.5 ×10~4. Angle-of-attack sweeps were performed at sideslip angles of β = 0, -5, -10, -15,20 and -35 deg, and the side force, yaw moment, and roll moment were measured. Although the side force and yaw moment coefficients (C_(SF) and C_n) were typically negligible, the roll moment coefficient C_t was found to increase linearly with angle of attack before stalling in a manner reminiscent of a lift curve. This "roll stall", which has not previously been observed for micro-aerial-vehicle-type wings, is attributed to the upstream tip vortex creating an additional lift component due to its impact on the span wise variation of effective angle of attack in addition to the force generated by its own low-pressure core. As the downstream tip vortex is converted away from the wing, a net moment is created. Computations of the roll-stability derivative indicate that a micro aerial vehicle in equilibrium flight conditions may experience magnitudes of C_(1.β) at the upper limit of, or even above, the range of-0.10 ≤ C_(1.β) ≤ 0 considered to represent good handling qualities in aircraft.
机译:微型航空器的纵向空气动力学虽然尚未完全被理解,但近年来已成为数项研究的主题。但是,研究侧向载荷的工作很少。在该实验中,将长宽比为AR = 0.75、1、1.5和3的矩形平面形式以及X = 0.75、0.5和0.25的锥形平面形式的平板机翼以7.5×10的雷诺数放置在风洞中〜4。在β= 0,-5,-10,-15、20和-35度的侧滑角下进行攻角扫掠,并测量侧向力,横摆力矩和侧倾力矩。尽管侧向力和偏航力矩系数(C_(SF)和C_n)通常可以忽略不计,但发现失速之前,侧倾力矩系数C_t随迎角呈线性增加,这类似于举升曲线。这种“侧倾失速”是以前从未在微型航空式机翼上观察到的,归因于上游尖端涡旋,由于其对有效攻角的翼展方向变化的影响,产生了额外的升力分量。自身低压核心产生的力。随着下游叶尖涡流从机翼上移开,将产生净力矩。侧倾稳定性导数的计算表明,在平衡飞行条件下的微型飞行器在-0.1≤C_(1.β)≤的上限或更高范围内可能会遇到C_(1.β)的大小。 0被认为代表飞机的良好操纵品质。

著录项

  • 来源
    《Journal of Aircraft》 |2013年第4期|1060-1069|共10页
  • 作者

    Matt Shields; Kamran Mohseni;

  • 作者单位

    Mechanical & Aerospace Engineering Department, University of Florida, Gainesville, Florida 32611-6250;

    Mechanical & Aerospace Engineering Department and Electrical & Computer Engineering Department, Institute for Networked Autonomous Systems,University of Florida, Gainesville, Florida 32611-6250;

  • 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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