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Large motion visualization and estimation for flapping wing systems.

机译:襟翼系统的大型运动可视化和估算。

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摘要

Studies of fluid-structure interactions associated with flexible structures such as flapping wings require the capture and quantification of large motions of bodies that may be opaque. Motion capture of a free flying insect is considered by using three synchronized high-speed cameras. A solid finite element representation is used as a reference body and successive snapshots in time of the displacement fields are reconstructed via an optimization procedure. An objective function is formulated, and various shape difference definitions are considered.;The proposed methodology is first studied for a synthetic case of a flexible cantilever structure undergoing large deformations, and then applied to a Manduca Sexta (hawkmoth) in free flight. The three-dimensional motions of this flapping system are reconstructed from image date collected by using three cameras. The complete deformation geometry of this system is analyzed. Finally, a computational investigation is carried out to understand the flow physics and aerodynamic performance by prescribing the body and wing motions in a fluid-body code.;This thesis work contains one of the first set of such motion visualization and deformation analyses carried out for a hawkmoth in free flight. The tools and procedures used in this work are widely applicable to the studies of other flying animals with flexible wings as well as synthetic systems with flexible body elements.
机译:与柔性结构(如拍打翅膀)相关的流体-结构相互作用的研究需要捕获和量化可能不透明的物体的大运动。通过使用三个同步的高速摄像机,可以捕捉自由飞行的昆虫的运动。实体有限元表示用作参考体,并通过优化程序重建位移场在时间上的连续快照。拟定了一个目标函数,并考虑了各种形状差异的定义。;首先研究了所提出的方法,该方法适用于经历大变形的柔性悬臂结构的合成情况,然后在自由飞行中应用于曼杜卡·塞克斯塔(Hawthmoth)。该拍打系统的三维运动是通过使用三个相机采集的图像数据重建的。分析了该系统的完整变形几何。最后,通过在流体代码中规定机体和机翼的运动来进行计算研究,以了解流动物理和空气动力学性能。;本论文工作包含了第一组这样的运动可视化和变形分析,用于自由飞行的鹰蛾。这项工作中使用的工具和程序可广泛用于研究其他具有柔性翼的飞行动物以及具有柔性身体元素的合成系统。

著录项

  • 作者

    Hsu, Tzu-Sheng.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Mechanical engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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