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Interaction, bursting and dynamic control of vortices of a cropped double-delta wing at high angle of attack

机译:高攻角下裁剪后的双三角翼的涡流相互作用,爆发和动态控制

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摘要

A flow visualization study of the vortical flow over a cropped double-delta wing model with sharp leading edges and its three derivatives with small geometric modifications (fillets) at the strake wing junction was conducted in the Naval Postgraduate School water tunnel using the dye-injection technique. The fillets increased the wing area of the baseline model by 1%. The main focus of this study was to evaluate the effect of fillets on vortex core trajectories, interactions and breakdown on the leeward surface at high angle of attack (AOA) with zero sideslip angle. Comparison of test results for different fillet shapes indicates delay in both vortex interaction and breakdown at high AOA, particularly for the diamond fillet shapes. The vortex breakdown data implies lift augmentation for both static and dynamic case, with the static data correlating well with recently published numerical data.
机译:在海军研究生院水隧道中,使用染料注入技术进行了可视化研究,研究了在前翼交叉点处具有锋利的前缘的短双三角翼模型及其三个具有较小几何修改(圆角)的导数的旋涡流动。技术。圆角将基线模型的机翼面积增加了1%。这项研究的主要重点是评估圆角对高攻角(AOA)且侧滑角为零的下风表面上的涡流芯轨迹,相互作用和击穿对圆角的影响。对不同圆角形状的测试结果的比较表明,在高AOA时,涡旋相互作用和击穿均会延迟,尤其是对于钻石圆角形状而言。涡旋分解数据暗示了在静态和动态情况下的升力增强,其中静态数据与最近发布的数值数据具有很好的相关性。

著录项

  • 作者

    Alkhozam Abdullah M.;

  • 作者单位
  • 年度 1994
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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