首页> 外文期刊>IEEE Transactions on Plasma Science >Negative DC Prebreakdown Phenomena and Breakdown-Voltage Characteristics of Pressurized Carbon Dioxide up to Supercritical Conditions
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Negative DC Prebreakdown Phenomena and Breakdown-Voltage Characteristics of Pressurized Carbon Dioxide up to Supercritical Conditions

机译:直流超临界条件之前的负直流预击穿现象和击穿电压特性

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This paper deals with the experimental results on prebreakdown phenomena and breakdown voltage characteristics of a negative dc point-to-plane gap in-compressed carbon dioxide up to the supercritical pressure as the first step to develop a plasma reactor with supercritical carbon dioxide. The gap length and the curvature radius of the point tip were 200 and around 35 $muhbox{m}$, respectively. The experimental results show the following: 1) corona discharge preceding complete breakdown is observed more clearly in liquid and supercritical fluid than in gas; 2) the estimated discharge onset voltage according to the streamer theory is in fairly good agreement with the measured breakdown voltage in the gas density region of 0.1–30 $hbox{kg}cdot hbox{m}^{-3}$; 3) the breakdown mechanism in liquid can be classified into two categories: bubble-triggered breakdown at lower pressure and non bubble-triggered breakdown at higher pressure; 4) the breakdown mechanism in supercritical fluid is similar to that in higher pressured liquid; and 5) the density and temperature dependences of breakdown voltage in liquid and supercritical fluid are related closely with the breakdown mechanism.
机译:本文研究的是在超临界压力之前,负直流点对面间隙的压缩二氧化碳负压的预击穿现象和击穿电压特性的实验结果,这是开发具有超临界二氧化碳的等离子体反应器的第一步。尖端的缝隙长度和曲率半径分别为200和35美元·muhbox {m} $。实验结果表明:1)在液体和超临界流体中比在气体中更清楚地观察到完全击穿之前的电晕放电; 2)根据拖缆理论估算的放电起始电压与在气体密度区域0.1–30 $ hbox {kg} cdot hbox {m} ^ {-3} $的气体密度范围内测得的击穿电压相当吻合; 3)液体的击穿机理可分为两类:低压下的气泡触发击穿和高压下的非气泡触发击穿; 4)超临界流体的分解机理与高压液体相似。 5)液体和超临界流体中击穿电压的密度和温度依赖性与击穿机理密切相关。

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