Optical Characterization of Ionic Wind Field by Means of Laser-Induced Phosphorescence

K. Aoyagi, Y. Kitahara, R. Ohyama
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引用次数: 3

Abstract

Flow velocity measurement of an ionic wind field with DC corona discharges in a needle-plate electrode system is experimentally investigated. A laser-induced phosphorescence phenomenon of vapor-phase biacetyl tracer is applied to identify the ionic wind velocity. The phosphorescence phenomenon is used as a molecular tagging approach for gas-phase flow visualization because a lifetime of the phosphorescence emission is much longer than the fluorescence emission. The visualization image shows a time-depended phosphorescence emission pattern blown away by the ionic wind. An image analysis for the luminescence pattern, which is captured with an elapsing time from the pulsed laser excitation, is enabled us to quantitatively characterize the ionic wind velocity. This paper presents the experimentally obtained visualization images of ionic wind movements, and describes the velocity identification on the phosphorescence image analysis.
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激光诱导磷光的离子风场光学表征
实验研究了针-板电极系统中直流电晕放电离子风场的流速测量。利用气相双乙酰示踪剂的激光诱导磷光现象来识别离子风速。磷光现象被用作气相流动可视化的分子标记方法,因为磷光发射的寿命比荧光发射的寿命长得多。可视化图像显示了被离子风吹走的随时间变化的磷光发射模式。对脉冲激光激发的发光模式进行图像分析,使我们能够定量表征离子风速。本文给出了实验获得的离子风运动的可视化图像,并介绍了基于磷光图像分析的速度识别方法。
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