Gliding arc in tornado using a reverse vortex flow

Gliding arc in tornado using a reverse vortex flow
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DOI:
10.1063/1.1854215
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发表时间:
2005-01
影响因子:
1.6
通讯作者:
C. Kalra;Young I Cho;A. Gutsol;A. Fridman;T. Rufael
C. Kalra;Young I Cho;A. Gutsol;A. Fridman;T. Rufael
中科院分区:
工程技术4区
文献类型:
--
作者:
C. Kalra;Young I Cho;A. Gutsol;A. Fridman;T. Rufael

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本文报道了一种在圆柱形反应器中使用反向涡流(“龙卷风”)的新的滑动弧(GA)系统(龙卷风中的滑动弧,或GAT),用于保持传统GA系统的主要优点并克服其主要缺点。在本GAT中保留的传统GA系统的主要优点是产生过渡等离子体和避免相当大的电极侵蚀的可能性。与传统的GA相比,新的GAT系统确保了更均匀的气体处理,并在反应器中具有更长的气体停留时间。本文还介绍了新型电抗器的设计和在GAT电流变化很小的情况下的稳定运行。这些特征被理解为对于大多数可行的应用是非常重要的。此外,GAT提供了与反应器壁的近乎完美的热绝缘,表明本发明的GAT不需要反应器壁由高温材料构成。那个...
The present article reports a new gliding arc (GA) system using a reverse vortex flow (“tornado”) in a cylindrical reactor (gliding arc in tornado, or GAT), as used to preserve the main advantages of traditional GA systems and overcome their main drawbacks. The primary advantages of traditional GA systems retained in the present GAT are the possibility to generate transitional plasma and to avoid considerable electrode erosion. In contrast to a traditional GA, the new GAT system ensures much more uniform gas treatment and has a significantly larger gas residence time in the reactor. The present article also describes the design of the new reactor and its stable operation regime when the variation of GAT current is very small. These features are understood to be very important for most viable applications. Additionally the GAT provides near-perfect thermal insulation from the reactor wall, indicating that the present GAT does not require the reactor wall to be constructed of high-temperature materials. The...