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首页> 外文期刊>International Journal of Modern Physics: Conference Series >NUMERICAL STUDY OF CONTROL OF FLOW SEPARATION OVER A RAMP WITH NANOSECOND PLASMA ACTUATOR
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NUMERICAL STUDY OF CONTROL OF FLOW SEPARATION OVER A RAMP WITH NANOSECOND PLASMA ACTUATOR

机译:纳米等离子体致动器在斜坡上流动分离控制的数值研究。

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摘要

The nanosecond plasma discharge actuator driven by high voltage pulse with typical rise and decay time of several to tens of nanoseconds is emerging as a promising active flow control means in recent years and is being studied intensively. The characterization study reveals that the discharge induced shock wave propagates through ambient air and introduces highly transient perturbation to the flow. On the other hand, the residual heat remaining in the discharge volume may trigger the instability of external flow. In this study, this type of actuator is used to suppress flow separation over a ramp model. Numerical simulation is carried out to investigate the interaction of the discharge induced disturbance with the external flow. It is found that the flow separation region over the ramp can be reduced significantly. Our work may provide some insights into the understanding of the control mechanism of nanosecond pulse actuator.
机译:由高压脉冲驱动的纳秒等离子体放电致动器,其典型的上升和衰减时间为几纳秒至几十纳秒,近年来正成为一种有希望的主动流量控制手段,并且正在得到深入研究。表征研究表明,放电引起的冲击波在环境空气中传播,并对流动产生高度瞬态的扰动。另一方面,残留在排出容积中的残留热量可能触发外部流动的不稳定性。在本研究中,这种类型的执行器用于抑制斜坡模型上的流量分离。进行了数值模拟以研究放电引起的扰动与外部流动的相互作用。发现可以明显减小斜坡上的流动分离区域。我们的工作可能会对理解纳秒脉冲致动器的控制机制提供一些见识。

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