介质材料对纳秒脉冲驱动同轴DBD放电特性的影响

IF 1.3 Q3 ORTHOPEDICS
Feng Liu, H. Chu, Yue Zhuang, Z. Fang
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引用次数: 9

摘要

介质材料是影响介质阻挡放电特性及其应用效果的重要因素之一。选择玻璃、石英、聚碳酸酯(PC)和聚四氟乙烯(PTFE)材料作为同轴DBD反应器的介电材料。使用纳秒(ns)脉冲电源驱动同轴DBD电抗器,并记录了介电材料对DBD的光学、电学和温度特性的影响。利用等效电学模型和热传导模型分析了介电材料对DBD特性影响的机理。从放电的观察来看,所有的放电都处于无灯丝的扩散模式,并且具有玻璃介质阻挡的同轴DBD更均匀。通过电学分析发现,与其他材料相比,相对介电常数较大的玻璃介质阻挡层具有更好的放电均匀性和更高的间隙功率沉积。在相同的外加电压下,具有玻璃介质势垒的同轴DBD电抗器也具有最高的能量效率,在24 kV峰值外加电压下可以达到70.8%。比较了同轴DBD电抗器在不同介质材料放电900秒后的工作温度。具有玻璃介质屏障的同轴DBD反应器的外壁温度最高,为78.0°C。具有PTFE电介质屏障的反应器的最低操作温度为58.2°C。通过热传导分析,结果表明,在热平衡条件下,具有玻璃介质屏障的同轴DBD反应器的内屏障管温度最高,为137.9°C,热损失功率率最低,为29.2%。该工作为DBD反应器介电材料的选择和工业应用的优化提供了重要参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of dielectric materials on discharge characteristics of coaxial DBD driven by nanosecond pulse voltage
The dielectric material is one of the important influencing factors for the dielectric barrier discharge (DBD) characteristics and its application effects. The glass, quartz, polycarbonate (PC), and polytetrafluoroethylene (PTFE) materials are selected as dielectric materials of a coaxial DBD reactor. A nanosecond (ns) pulse power supply is used to drive the coaxial DBD reactors and the influences of dielectric materials on the optical, electrical, and temperature characteristics of DBDs are recorded. The mechanisms of the effects of the dielectric materials on the DBD characteristics are analysed by equivalent electrical model and heat conduct model. From the observation of the discharge, all of the discharges are in the diffuse mode without filament and the coaxial DBD with glass dielectric barrier are more homogenous. With the electrical analysis, it is found that the glass dielectric barrier with larger relative permittivity compared with the other materials leads to a better discharge uniformity and a higher power deposition in gap. At the same applied voltage, the coaxial DBD reactor with glass dielectric barrier also has the highest energy efficiency, which can reach 70.8% at 24 kV peak applied voltage. The operation temperatures of the coaxial DBD reactors after 900 s discharge with different dielectric materials are compared. The coaxial DBD reactor with glass dielectric barrier has the highest outside wall temperature at 78.0 °C. The reactor with PTFE dielectric barrier has the lowest operation temperature at 58.2 °C. With the heat conduct analysis, the results show that the coaxial DBD reactor with glass dielectric barrier has the highest the inner barrier tube temperature at 137.9 °C and has the lowest heat loss power rate at 29.2% under thermal balance. The reported work provides important reference for the selection of dielectric materials for DBD reactors and for the optimization in the industrial application.
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来源期刊
Plasma Research Express
Plasma Research Express Energy-Nuclear Energy and Engineering
CiteScore
2.60
自引率
0.00%
发文量
15
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