Ionic wind velocity and energy efficiency improvement in needle-net ionic wind generator by electrical field optimization

Dongxuan Zhang, Fan Bu, Yulei Zhao, Z. Fang, Feng Liu
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Abstract

Ionic wind produced by high voltage discharge has been proved as a promising technique in heat dissipation, food drying, electrostatic precipitation and air propulsion. On the other hand, the low wind velocity and the low energy efficiency of the ionic wind generators limit their performance in practical industrial applications. To improve this, a single needle-net electrode structure ionic wind generator driven by positive DC voltage is constructed and the effects of the applied voltage and the needle-net distance on the discharge characteristics have been investigated. The results show that with the increase of the applied voltage from 4 kV to 11 kV, the discharge shows four stages, burst pulse, streamer corona, glow corona and spark discharge, and the wind velocity increases monotonously and reach 1.90 m/s at 11 kV. At the same applied voltage, the shorter needle-net distance leads to the larger wind velocity. At 15 mm needle-net distance, the needle-net electrode structure ionic wind generator shows a maximum energy efficiency value of 2.19%. A metal circular plate is attached on the needle electrode to enhance the electric field in discharge spacing. It is found that the wind velocity and energy efficiency can be improved from 1.90 m/s to 2.35 m/s, and 1.87% to 3.14%, at same applied voltage and needle-net distance. The cooling experiment shows that the ionic wind generator with metal circular plate needle-net electrode has better heat dissipation effect.
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电场优化提高针网式离子风力发电机的离子风速和能效
高压放电产生的离子风已被证明在散热、食品干燥、静电沉淀和空气推进等方面具有广阔的应用前景。另一方面,离子风力发电机的低风速和低能量效率限制了其在实际工业应用中的性能。为此,构建了直流正电压驱动的单针网电极结构离子风力发电机,研究了外加电压和针网距离对其放电特性的影响。结果表明:随着外加电压从4 kV增加到11 kV,放电呈现出爆发脉冲、流晕、辉光电晕和火花放电四个阶段,且风速单调增加,在11 kV时达到1.90 m/s;在相同电压下,针网距离越短,风速越大。在针网距离为15 mm时,针网电极结构离子风力发电机的最大能效值为2.19%。在针电极上安装金属圆形板,以增强放电间距中的电场。结果表明,在相同的电压和针网距离下,风速和能量效率从1.90 m/s提高到2.35 m/s,从1.87%提高到3.14%。冷却实验表明,采用金属圆板针网电极的离子风力发电机具有较好的散热效果。
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