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Time-Frequency Analysis of Boundary-Layer Instabilities Generated by Freestream Laser Perturbations

机译:自由流激光扰动产生的边界层不稳定性的时频分析

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A controlled disturbance is generated in the freestream of the Boeing/AFOSR Mach-6 Quiet Tunnel (BAM6QT) by focusing a high-powered Nd:YAG laser to create a laser-induced breakdown plasma. The plasma then cools, creating a freestream thermal disturbance that can be used to study receptivity. The freestream disturbance convects downstream in the Mach-6 wind tunnel to interact with a flared cone model. The adverse pressure gradient created by the flare of the model is capable of generating second-mode instability waves that grow large and become nonlinear before experiencing natural transition in quiet flow. The freestream laser perturbation generates a wave packet in the boundary layer at the same frequency as the natural second mode, complicating time-independent analyses of the effect of the laser perturbation. The data show that the laser perturbation creates an instability wave packet that is larger than the natural waves on the sharp flared cone. The wave packet is still difficult to distinguish from the natural instabilities on the blunt flared cone.
机译:通过聚焦高功率Nd:YAG激光以产生激光诱导的击穿等离子体,在波音/ AFOSR Mach-6安静隧道(BAM6QT)的自由流中产生了受控扰动。然后,等离子体冷却,产生自由流热干扰,可用于研究接受性。自由流扰动在Mach-6风洞的下游对流,与喇叭形圆锥模型相互作用。由模型的耀斑产生的不利压力梯度能够生成第二模式不稳定性波,该第二模式不稳定性波在经历静水流的自然过渡之前会变得很大并变为非线性。自由流激光扰动会在边界层中以与自然第二模态相同的频率生成波包,从而使激光扰动效应的与时间无关的分析变得复杂。数据表明,激光扰动会产生不稳定波包,该不稳定波包大于尖锐喇叭锥上的自然波。波包仍然很难与钝扩锥上的自然不稳定性区分开。

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