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首页> 外文期刊>Plasma Science, IEEE Transactions on >Time-Resolved Images of the Decay of the Gas Channel Induced by Pulsed Positive Streamer Discharge in Water
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Time-Resolved Images of the Decay of the Gas Channel Induced by Pulsed Positive Streamer Discharge in Water

机译:水中正脉冲脉冲放电引起的气体通道衰减的时间分辨图像

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摘要

In an underwater streamer discharge, plasma channels are created and propagate in water. After the discharge, the ionized gas channels gradually cool down and decay. In this paper, a time-resolved study on the decay process of the gas channels induced by pulsed positive streamer discharge in water is performed by using a high-speed camera system. The gas channels created by the streamer discharge in water have many branches. Some of them grow from the tip of the point anode, forming main branches. From the main branch, some subbranches develop. The subbranch dilapidates rapidly into microbubbles, while the main branch abbreviates toward the root of the branch. A bubble that formed at the tip of the anode connects with the main branch. The main branch does not completely disappear until 80 $muhbox{s}$ after the discharge. When the main branch disappeared, the bubble at the tip of the anode becomes a perfect sphere and approximately reaches its maximum radius. Then, the bubble starts to collapse, holding its spherical shape, and reaches its minimum radius at about 170 $muhbox{s}$ after the discharge.
机译:在水下流光放电中,产生了等离子体通道并在水中传播。放电后,电离的气体通道逐渐冷却并衰减。本文利用高速相机系统对脉冲正流放电在水中引起的气体通道衰减过程进行了时间分辨研究。拖缆在水中排放产生的气体通道有许多分支。它们中的一些从尖端阳极的尖端生长,形成主分支。从主分支开始,发展了一些支行。分支分支迅速破灭成微泡,而主分支向分支的根部缩写。在阳极尖端形成的气泡与主分支相连。直到排放80美元之后,主支路才完全消失。当主分支消失时,阳极尖端的气泡变成一个完美的球体,大约达到其最大半径。然后,气泡开始坍塌,保持其球形,并在放电后达到最小半径,约为170美元/小时。

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