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Plasma Control of a Turbulent Shock Boundary-Layer Interaction

机译:湍流冲击边界层相互作用的等离子体控制

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摘要

The Navier-Stokes equations were solved using a high-fidelity time-implicit numerical scheme and an implicit large-eddy simulation approach to investigate plasma-based flow control for supersonic flow over a compression ramp. The configuration included a flat-plate region to develop an equilibrium turbulent boundary layer at Mach 2.25, which was validated against a set of experimental measurements. The fully turbulent boundary-layer flow traveled over a 24 deg ramp and produced an unsteady shock-induced separation. A control strategy to suppress the separation through a magnetically-driven surface-discharge actuator was explored. The size, strength, and placement of the model actuator were based on recent experiments at the Princeton University Applied Physics Group. Three control scenarios were examined: steady control, pulsing with a 50% duty cycle, and a case with significant Joule heating. The control mechanism was very effective at reducing the time-mean separation length for all three cases. The steady control case was the most effective, with a reduction in the separation length of more than 75 %. The controller was also found to significantly reduce the low-frequency content of the turbulent kinetic energy spectra within the separated region and reduce the total turbulent kinetic energy downstream of reattachment.
机译:使用高保真时间隐式数值方案和隐式大涡模拟方法求解Navier-Stokes方程,以研究基于等离子的压缩坡道上超音速流的流量控制。该配置包括一个平板区域,可在2.25马赫的速度下形成一个平衡的湍流边界层,并通过一系列实验测量对其进行了验证。完全湍流的边界层流经过24度的坡道,并产生了不稳定的激振分离。探索了通过磁驱动表面放电致动器抑制分离的控制策略。模型致动器的尺寸,强度和位置基于普林斯顿大学应用物理组最近的实验。研究了三种控制方案:稳定控制,占空比为50%的脉冲以及焦耳明显发热的情况。对于这三种情况,控制机制在减少时间平均分离长度方面非常有效。稳定的控制案例是最有效的,分离长度减少了75%以上。还发现控制器显着降低了分离区域内湍动能谱的低频含量,并降低了重新连接下游的总湍动能。

著录项

  • 来源
    《AIAA Journal》 |2013年第8期|1789-1804|共16页
  • 作者单位

    U.S. Air Force Research Laboratory, Wright-Patterson Air Force Base, 45433-7512 Ohio;

    U.S. Air Force Research Laboratory, Wright-Patterson Air Force Base, 45433-7512 Ohio;

    U.S. Air Force Research Laboratory, Wright-Patterson Air Force Base, 45433-7512 Ohio;

  • 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
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