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Computational Aerodynamics Modeling of Flapping Wings With Video-Tracked Locust-Wing Motion

机译:视频跟踪蝗虫翅膀运动的扑翼的计算空气动力学建模

摘要

The thesis focuses on special space--time computational techniquesintroduced recently for computational aerodynamics modeling of flapping wings of an actual locust. These techniques complement the Deforming-Spatial-Domain/Stabilized Space--Time(DSD/SST) formulation, which is the core computational technique. The DSD/SST formulation was developed for flows with moving interfaces, and the version used in the computations is "DST/SST-VMST," which is the space--time version of the residual-based variational multiscale (VMS) method. The special space--time techniques are based on using NURBS basis functions for the temporal representation of the motion of the locust wings. The motion data is extracted from the high-speed video recordings of a locust in a wind tunnel. In addition, temporal NURBS basisfunctions are used in representation of the motion of the volume meshes computedand also in remeshing. These ingredients provide an accurate and e fficient way of dealing with the wind tunnel data and the mesh. The thesis includes a detailed study on how the spatial and temporal resolutions influence the quality of the numericalsolution.
机译:本文主要研究特殊的时空计算技术,用于对实际蝗虫的拍打翅膀进行空气动力学建模。这些技术补充了变形空间域/稳定时空(DSD / SST)公式,这是核心计算技术。 DSD / SST公式是为具有移动接口的流而开发的,计算中使用的版本是“ DST / SST-VMST”,这是基于残差的变分多尺度(VMS)方法的时空版本。特殊的时空技术基于使用NURBS基本函数来临时表示蝗虫翅膀的运动。运动数据是从风洞中蝗虫的高速视频记录中提取的。此外,时间NURBS基函数用于表示所计算的体积网格的运动,也用于重新网格化。这些成分为处理风洞数据和网格提供了准确而有效的方法。论文包括关于时空分辨率如何影响数值解质量的详细研究。

著录项

  • 作者

    Puntel Anthony;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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