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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Impact of ns-DBD plasma actuation on the boundary layer transition using convective heat transfer measurements
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Impact of ns-DBD plasma actuation on the boundary layer transition using convective heat transfer measurements

机译:ns-DBD等离子体驱动对流换热测量对边界层转变的影响

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This paper demonstrates that the impact of nanosecond pulsed dielectric barrier discharge (ns-DBD) actuators on the structure of the boundary layer can be investigated using quantitative convective heat transfer measurements. For the experiments, the flow over a flat plate with a C4 leading edge thickness distribution was examined at low speed incompressible flow (6.6-11.5 m s(-1)). An ns-DBD plasma actuator was mounted 5 mm downstream of the leading edge and several experiments were conducted giving particular emphasis on the effect of actuation frequency and the freestream velocity. Local heat transfer distributions were measured using the transient liquid crystal technique with and without plasma activated. As a result, any effect of plasma on the structure of the boundary layer is interpreted by local heat transfer coefficient distributions which are compared with laminar and turbulent boundary layer correlations. The heat transfer results, which are also confirmed by hot-wire measurements, show the considerable effect of the actuation frequency on the location of the transition point elucidating that liquid crystal thermography is a promising method for investigating plasma-flow interactions very close to the wall. Additionally, the hot-wire measurements indicate possible velocity oscillations in the near wall flow due to plasma activation.
机译:本文表明,可以使用定量对流换热测量研究纳秒脉冲介质阻挡放电(ns-DBD)致动器对边界层结构的影响。对于实验,在低速不可压缩流(6.6-11.5 m s(-1))下检查了具有C4前缘厚度分布的平板上的流动。 ns-DBD等离子体致动器安装在前缘下游5毫米处,并进行了一些实验,其中特别强调了致动频率和自由流速度的影响。使用瞬态液晶技术在激活和不激活等离子体的情况下测量局部传热分布。结果,等离子体对边界层结构的任何影响都可以通过局部传热系数分布来解释,将其与层流和湍流边界层的相关性进行比较。传热结果也通过热线测量得到证实,显示了驱动频率对转变点位置的显着影响,这说明液晶热成像技术是研究非常靠近壁的等离子体流相互作用的有前途的方法。另外,热线测量表明由于等离子体激活,在近壁流中可能发生速度振荡。

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