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Shock Wave/Boundary-Layer Interaction Control Using a Combination of Vortex Generators and Bleed

机译:冲击波/边界层相互作用的涡流发生器和排空阀组合使用

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摘要

To investigate whether vortex generators can be an effective form of passive flow control an experimental investigation has been conducted in a small-scale wind tunnel. With specific emphasis on supersonic inlet applications flow separation was initiated using a combined terminal shock wave and subsonic diffuser: a configuration that has been developed as a part of a program to produce a more inlet-relevant flowfield in a small-scale wind tunnel than previous studies. When flow control was initially introduced little overall flow improvement was obtained as the losses tended to be redistributed instead of removed. It became apparent that there existed a strong coupling between the center-span flow and the corner flows. As a consequence, only when flow control was applied to both the corner flows and center-span flow was a significant flow improvement obtained. When corner suction and center-span vortex generators were employed in tandem separation was much reduced and wall-pressure and stagnation pressure were notably unproved. As a result, when applied appropriately, it is thought that vortex generators do have the potential to reduce the dependence on boundary-layer bleed for the purpose of separation suppression.
机译:为了研究涡流发生器是否可以是被动流动控制的有效形式,已经在小型风洞中进行了实验研究。特别着重于超音速进气应用,使用组合的末端冲击波和亚音速扩散器来启动流分离:该配置已作为程序的一部分开发,以在小型风洞中产生比进气更重要的流场学习。最初引入流量控制时,由于损失往往会重新分配而不是消除,因此总体流量几乎没有改善。显然,在中心跨度流和拐角流之间存在强耦合。结果,只有当对角流量和中心跨流量都应用流量控制时,才能获得显着的流量改善。当采用角吸力和中心跨度涡流发生器串联分离时,大大降低了壁压和停滞压力。结果,认为当适当地应用时,出于分离抑制的目的,涡旋发生器确实具有减小对边界层渗出的依赖性的潜力。

著录项

  • 来源
    《AIAA Journal》 |2013年第5期|1221-1233|共13页
  • 作者单位

    Fluid Mechanics, Department of Engineering, Trumpington Steet, University of Cambridge, Cambridge, England CB2 1PZ, United Kingdom;

    Fluid Mechanics, Department of Engineering, Trumpington Steet, University of Cambridge, Cambridge, England CB2 1PZ, United Kingdom;

  • 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
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