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Visualization of the Local Ionic Wind Profile in a DC Corona Discharge Field by Laser-Induced Phosphorescence Emission

机译:激光诱导的磷光发射在直流电晕放电场中局部离子风剖面的可视化

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Experimental visualization for ionic wind motion originated from DC corona discharges in a needle-plate electrode system has been investigated. A vapor-phase biacetyl tracer with laser-induced phosphorescence emission is used for optically characterizing the ionic wind profile. The ionic wind blows the excited biacetyl molecules away in continuing the visible phosphorescence emission for a long radiative lifetime. The captured image with elapsing time from the excitation presents the shifting location of radiative tracer along the ionic wind direction. The experimental results show the ionic wind profile enhanced in the electric field direction corresponding to the corona discharge progress. Especially, the ionic wind near an initiating point of corona discharges is focused as an advantage of this optical technique. The ionic wind velocity along the electrode axis can be obtained at the location close enough to the corona discharge initiation point, and the velocity at 0.5 mm from the discharge point is figured out as 9.3 to 19.2 m/s under the condition of the EHD Reynolds number of 0.95 x 10~3 to 2.1 x 10~3.
机译:实验研究了针板电极系统中源自直流电晕放电的离子风运动的可视化。具有激光诱导的磷光发射的气相联乙酰示踪剂用于光学表征离子风廓线。离子风将激发的联乙酰分子吹走,从而持续可见的磷光发射,从而延长了辐射寿命。从激发起经过时间的捕获图像呈现了辐射示踪剂沿离子风向的位移位置。实验结果表明,在电场方向上的离子风廓线随电晕放电的进行而增强。特别地,作为该光学技术的优点,聚焦在电晕放电的起始点附近的离子风。沿电极轴的离子风速可在距电晕放电起始点足够近的位置获得,在EHD雷诺兹条件下,距放电点0.5 mm处的风速为9.3至19.2 m / s。 0.95 x 10〜3到2.1 x 10〜3

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