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首页> 外文期刊>Plasma Science, IEEE Transactions on >The Effect of Sphere Size on Bipolar Pulsed Discharges in Glass-Sphere/Water/Air Columns
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The Effect of Sphere Size on Bipolar Pulsed Discharges in Glass-Sphere/Water/Air Columns

机译:球体尺寸对玻璃球/水/空气柱中双极性脉冲放电的影响

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摘要

Bipolar pulsed discharges were investigated in columns containing glass spheres and water, and with air bubbling through, using a coaxial electrode configuration. The effect of sphere size on the discharge characteristics was studied, and results showed that the diameter of the glass spheres had a significant effect on the electrical discharges in the three-phase mixture. As the sphere size increased from 2 to 12 mm, no significant changes occurred in the peak voltage and rise time of the load voltage, but a clear maximum in the tail voltage, and a minimum in the injected power per pulse, occurred in the sphere diameter range from 5 to 8 mm. The greatest electric field in the interstices between the spheres, and the rate at which a dye could be removed from the water, both exhibited a maximum in the sphere diameter range from 5 to 8 mm.
机译:使用同轴电极配置,在包含玻璃球和水以及空气鼓泡的圆柱中研究了双极脉冲放电。研究了球形尺寸对放电特性的影响,结果表明,玻璃球的直径对三相混合物中的放电有显着影响。当球体尺寸从2 mm增加到12 mm时,峰值电压和负载电压的上升时间没有明显变化,但是在球体中出现了明显的尾电压最大值和每脉冲注入功率最小值。直径范围从5到8毫米。球之间的间隙中的最大电场以及染料从水中的去除速率都在5到8 mm的球直径范围内表现出最大值。

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