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Submerged Inlet Performance Enhancement Using a Unique Bump-Shaped Vortex Generator

机译:使用独特的凹凸形状涡流发生器提高水下进气性能

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摘要

By combining the guiding effects of the windward bump with the sweeping effects of the vortex pair on the fuselage boundary layer, a unique flow control device featuring low aerodynamic drag is developed for submerged inlets. Wind-tunnel tests are conducted over wide operating conditions to determine the performance improvement by the bump-shaped vortex generator. The results indicate that, with the aid of the unique vortex generator, the upstream fuselage boundary layer is effectively pushed away from the duct entrance, improving the entering flow quality and thereby the performance of the submerged inlet Despite the 0.76% drag penalty of the aircraft at most, the unique vortex generator is observed to increase the total pressure recovery of the submerged inlet by as much as 3.7% at a freestream Mach number of 0.73 and 5% at a freestream Mach number of 0.90. A strong relation between the installation position and the height of the vortex generator is found such that, at the optimal installation position, the local boundary layer thickness is equivalent to the height of the vortex generator. As a result, the optimal location of the vortex generator moves toward the duct entrance with the increase of its height.
机译:通过将迎风撞击的引导效果与涡流对在机身边界层上的扫掠效果相结合,为水下进气道开发了一种具有低气动阻力的独特流量控制装置。风洞测试是在较宽的工作条件下进行的,以确定颠簸形涡流发生器的性能提高。结果表明,尽管飞机的阻力损失为0.76%,但借助独特的涡流发生器,上游机身边界层被有效地推离了管道入口,从而改善了进入流的质量,从而改善了水下进气道的性能。至多,观察到独特的涡流发生器在0.73的自由流马赫数下将淹没入口的总压力恢复提高了3.7%,而在0.90的自由流马赫数下增加了5%。发现安装位置和涡流发生器的高度之间的强关系,使得在最佳安装位置处,局部边界层厚度等于涡流发生器的高度。结果,涡流发生器的最佳位置随着其高度的增加而朝向管道入口移动。

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  • 来源
    《Journal of propulsion and power》 |2016年第5期|1275-1280|共6页
  • 作者单位

    Nanjing University of Aeronautics and Astronautics, Nanjing 210016, People's Republic of China;

    Nanjing University of Aeronautics and Astronautics, Nanjing 210016, People's Republic of China;

    Nanjing University of Aeronautics and Astronautics, Nanjing 210016, People's Republic of China;

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