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The impulse response of a high-speed jet forced with localized arc filament plasma actuators

机译:局部电弧丝等离子体致动器驱动的高速射流的脉冲响应

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摘要

We present experimental and theoretical analyses of the response of high-speed, high-Reynolds-number, round jets to impulsive forcing with arc-filament-plasma actuators. The impulse response is obtained with forcing Strouhal numbers, based on the nozzle exit diameter and exit center line velocity, less than 0.1. The resulting phase-averaged near-field pressure signature displays a compact wave with a positive peak preceding a negative one, indicative of a large scale structure in the shear layer of the jet. Scaling laws derived by operating the jet at four subsonic Mach numbers are used to distinguish this hydrodynamic component of the phase-averaged jet response from the direct actuator noise. As the forcing frequency increases, the compact waves in the near-field pressure signal overlap each other, indicating interaction of the growing seeded structures. For this regime, the phase-averaged response is approximately replicated by linear superposition of the impulse response, thereby demonstrating the quasi-linearity of structure interaction. A novel application of linear parabolized stability theory yields a successful model of the impulse response.
机译:我们目前对高速,高雷诺数的圆形射流对电弧丝极等离子体致动器的脉冲强迫的响应进行实验和理论分析。基于喷嘴出口直径和出口中心线速度,通过强迫施特劳哈尔数获得小于0.1的脉冲响应。所得到的相位平均近场压力信号显示出一个紧凑的波,其正峰值先于负峰值,表明射流剪切层中存在大规模结构。通过以四个亚音速马赫数操作射流得出的比例定律用于将相位平均射流响应的这种流体动力学分量与直接执行器噪声区分开。随着强迫频率的增加,近场压力信号中的紧实波相互重叠,表明正在生长的种子结构相互影响。对于这种情况,相位平均响应可以通过脉冲响应的线性叠加近似复制,从而证明了结构相互作用的准线性。线性抛物线稳定性理论的一种新颖应用产生了脉冲响应的成功模型。

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