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Active Control of the Corner Separation on a Highly Loaded Compressor Cascade With Periodic Nonsteady Boundary Conditions by Means of Fluidic Actuators

机译:周期性非定常边界条件的高负荷压气机叶栅角分离的主动控制

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摘要

This paper discusses the impact of a nonsteady outflow condition on the compressor sta-tor flow that is forced through a mimic in the wake of a linear low-speed cascade to simulate the conditions that would be expected in a pulsed detonation engine. 2D/3C-PIV measurements were made to describe the flow field in the passage. Detailed wake measurements provide information about static pressure rise as well as total pressure loss. The stator profile used for the investigations is highly loaded and operates with three-dimensional flow separations under design conditions and without active flow control. It is shown that sidewall actuation helps stabilize the flow field at every phase angle and extends the operating range of the compressor stator. Furthermore, the static pressure gain can be increased by 6% with a 4% loss reduction in time-averaged data.
机译:本文讨论了非稳态流出条件对压气机定子流的影响,线性低速级联之后,压气机定子流被迫通过模拟进行模拟,以模拟脉冲爆震发动机所预期的条件。进行2D / 3C-PIV测量以描述通道中的流场。详细的尾流测量提供有关静压上升以及总压力损失的信息。用于研究的定子轮廓是高负载的,并且在设计条件下以三维流分离运行,并且没有主动流量控制。示出了侧壁致动有助于在每个相角处稳定流场并扩展了压缩机定子的工作范围。此外,静态压力增益可以增加6%,而时间平均数据的损失减少4%。

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  • 来源
    《Journal of turbomachinery》 |2016年第3期|031004.1-031004.9|共9页
  • 作者单位

    Aerodynamics, Department of Aeronautics and Astronautics, TU Berlin, Berlin 10587, Germany;

    Aerodynamics, Department of Aeronautics and Astronautics, TU Berlin, Berlin 10587, Germany;

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