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Experimental Study and Plasma Control of an Unstarting Supersonic Flow

机译:未启流超声波流量的实验研究和等离子体控制

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The unstart induced by a transverse jet in a Mach 4.7 model inlet flow is visualized by planar laser scattering from condensed CO_2 particles at low freestream static pressure (1kPa) and temperature (60K) for various boundary layer conditions. We find that the formation of an unstart shock is initiated on the relatively thick boundary layer side and its structure depends on the boundary layer conditions. The pseudo-shock or oblique shocks that precede unstart propagate upstream in symmetric and asymmetric boundary layer conditions, respectively. It is found that the pseudo-shock has a quasi-stationary mode resulting in longer overall unstart events. The results suggest that the unstart process can be influenced and possibly delayed by the control of the boundary layer conditions. In this paper, we present preliminary results on boundary layer manipulation of an unstarting supersonic flow using Dielectric Barrier Discharge (DBD) actuation. We find that the asymmetric boundary layer condition that generally leads to the formation and propagation of an oblique unstart shock, when actuated, can be transformed the flow to resemble that of a symmetric condition which leads to the generation of a pseudo-shock, extending the unstart duration by 22 %.
机译:由横向射流在Mach 4.7模型入口流中诱导的未置换器通过在低自由流静压(1kPa)和温度(60k)处的凝结Co_2颗粒的平面激光散射来可视化,用于各种边界层条件。我们发现,在相对厚的边界层侧启动了Unstart冲击的形成,其结构取决于边界层条件。在Unstart之前的伪震动或倾斜冲击分别在对称和非对称边界层条件的上游传播。发现伪冲击具有准静止模式,导致较长的整体unstart事件。结果表明,未启动过程可以受到边界层条件的控制来影响和可能延迟。在本文中,我们使用介电阻挡放电(DBD)致动,提出了未启动超声波流量的边界层操纵的初步结果。我们发现,当致动时,通常导致倾斜的边界层条件通常导致倾斜的震动的形成和传播,可以转换流量以类似于对称条件的流程,这导致伪震动的产生,延伸伪震动,延伸未启用持续时间22%。

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