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A water tunnel investigation of the influence of Reynolds number on the high-incidence flow over double-delta wings

机译:雷诺数对双三角翼高入射流影响的水隧道研究

摘要

There are several disagreements in the published literature on vortex interaction and bursting data obtained in various wind and water tunnel tests of double-delta wings at high angle of attack (AOA). Theretore a test program was carried out in the Naval Postgraduate School water tunnel using a 76/40 deg. baseline double-delta wing model to investigate the effect of Reynolds number. The program consisted of: (1) Flow vistialisation studies at tunnel speeds of O.2, O.6 and 1.0 ft/sec in the 0-30 deg. AOA range to determine the influence of flow Reynolds number on vortex trajectory/interaction and breakdown. (2) Laser Doppler Velocimetry studies of the flowfield to gain a better understanding of the vortex structure and verify the flow visualisation results. Comparison of the test results at these tunnel speeds (corresponding to nominal flow Reynolds number of 15,000, 45,000, and 75,000 indicates a change in the vortical flowfield structure. The strake and wing vortices do not coil up and the breakdown occurs earlier as the tunnel speed is increased.The trends in he interaction and bursting data at higher tunnel speeds appear to be in better agreement with previous wind tunnel data.
机译:在双涡旋翼在高攻角(AOA)的各种风水隧道试验中获得的涡旋相互作用和爆破数据方面,已发表的文献存在一些分歧。在海军研究生院的水隧道中使用76/40度进行了测试程序。基线双三角翼模型研究雷诺数的影响。该程序包括:(1)在0至30度的O.2,O.6和1.0 ft / sec的隧道速度下进行流可视化研究。 AOA范围确定了雷诺数对涡旋轨迹/相互作用和破坏的影响。 (2)对流场进行激光多普勒测速研究,以更好地了解涡旋结构并验证流场可视化结果。在这些隧道速度下进行测试结果的比较(对应于15,000、45,000和75,000的标称雷诺数,表明旋涡流场结构发生了变化。机翼和机翼涡旋并未盘旋,并且随着隧道速度的升高,击穿发生得更早了)在更高的隧道速度下,相互作用和爆发数据的趋势似乎与以前的风洞数据更好地吻合。

著录项

  • 作者

    Fritzelas Anastasios E.;

  • 作者单位
  • 年度 1996
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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