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Aerodynamics and flight performance of flapping wing micro air vehicles.

机译:襟翼微型飞行器的空气动力学和飞行性能。

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摘要

Research efforts in this dissertation address aerodynamics and flight performance of flapping wing aircraft (ornithopters). Flapping wing aerodynamics was studied for various wing sizes, flapping frequencies, airspeeds, and angles of attack. Tested wings possessed both camber and dihedral. Experimental results were analyzed in the framework of momentum theory. Aerodynamic coefficients and Reynolds number are defined using a reference velocity as a vector sum of a freestream velocity and a strokeaveraged wingtip velocity. No abrupt stall was observed in flapping wings for the angle of attack up to vertical. If was found that in the presence of a freestream lift of a flapping wing in vertical position is higher than the propulsive thrust. Camber and dihedral increased both lift and thrust. Lift-curve slope, and maximum lift coefficient increased with Reynolds number. Performance model of an ornithopter was developed. Parametric studies of steady level flight of ornithopters with, and without a tail were performed. A model was proposed to account for wing-sizing effects during hover. Three micro ornithopter designs were presented. Ornithopter flight testing and data-logging was performed using a telemetry acquisition system, as well as motion capture technology. The ability of ornithopter for a sustained flight and a presence of passive aerodynamic stability were shown. Flight data were compared with performance simulations. Close agreement in terms of airspeed and flapping frequency was observed.
机译:本论文的研究方向是扑翼飞机(ornopteropters)的空气动力学和飞行性能。对襟翼的空气动力学进行了研究,以了解各种机翼尺寸,襟翼频率,空速和迎角。经过测试的机翼同时具有曲面和反面。在动量理论的框架下分析了实验结果。空气动力学系数和雷诺数是使用参考速度定义的,该参考速度是自由流速度和冲程平均翼尖速度的矢量和。在拍打的机翼上,没有观察到突然的失速,其迎角一直到垂直。如果发现在垂直位置存在襟翼的自由流升力,则高于推进推力。弧形和反面增加了升力和推力。升力曲线斜率和最大升力系数随雷诺数增加。开发了一种直升机的性能模型。进行了带有和不带有尾巴的飞行器稳定水平飞行的参数研究。提出了一个模型来考虑悬停过程中机翼尺寸的影响。提出了三种微型飞行器设计。使用遥测采集系统以及运动捕捉技术进行了直升机的飞行测试和数据记录。显示了直升机的持续飞行能力和被动气动稳定性。将飞行数据与性能模拟进行了比较。观察到在空速和扑动频率方面的一致性。

著录项

  • 作者

    Silin, Dmytro.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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