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Investigation of Shock Motion in Transonic Flow Using an Oscillating, Straked, Delta Wing

机译:使用振荡的,行程的三角翼研究跨音速流中的冲击运动

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摘要

A computational analysis was performed on a straked, delta wing undergoing pitch motion in order to investigate the influence of shock-induced, trailing-edge separation (SITES) on simulated limit-cycle oscillations (LCO). The research presented herein describes an aeroelastic analysis of a wing oscillating in pitch using Euler-based aerodynamics with boundary-layer coupling (BLC). Results indicate that oscillatory shock movement occurs in response to the pitching motion of the wing, both with and without BLC. However, the BLC solution predicted more significant shock movement, and the inviscid solution predicted more aggressive shocks located further aft on the wing. Increasing the amplitude of the pitch oscillations resulted in a greater range of shock motion than lower amplitude cases, but variation of oscillation frequencies tested did not show any noteworthy differences. These findings support the theory that oscillatory shock movement associated with SITES can occur during certain cases of transonic LCO. In addition, based on the results from pure pitch motion of the wing and on the flow solver used, shock motion can occur without a boundary-layer model, although the modeling of viscous effects does affect the range of shock motion.
机译:为了研究撞击引起的后缘分离(SITES)对模拟极限循环振荡(LCO)的影响,对经过俯仰运动的三角翼进行了计算分析。本文介绍的研究使用基于欧拉的带有边界层耦合(BLC)的空气动力学技术,对机翼在俯仰中振动进行了气动弹性分析。结果表明,无论有无BLC,摆动的震动都会响应机翼的俯仰运动而发生。但是,BLC解决方案预示着更大的冲击运动,而无粘性解决方案预示着更剧烈的冲击位于机翼的后部。与较低幅度的情况相比,增加俯仰振动的幅度会导致更大范围的冲击运动,但是所测试的振荡频率的变化并未显示任何明显的差异。这些发现支持了在跨音速LCO的某些情况下可能发生与SITES相关的振荡冲击运动的理论。此外,基于机翼的纯俯仰运动和所使用的流量求解器的结果,尽管没有粘性层的模型确实会影响冲击运动的范围,但在没有边界层模型的情况下仍会发生冲击运动。

著录项

  • 来源
    《AIAA Journal》 |2019年第10期|4406-4415|共10页
  • 作者

    Hope Dylan N.; Kunz Donald L.;

  • 作者单位

    Air Force Inst Technol Wright Patterson AFB OH 45433 USA|USAF Washington DC 20330 USA;

    Air Force Inst Technol Dept Aeronaut & Astronaut Wright Patterson AFB OH USA;

  • 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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