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On the Induced Gas Flow by a Trielectrode Plasma curtain at atmospheric pressure

机译:在大气压下通过三电极等离子体帘的诱导气体流动

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A study of the induced flow pattern, in quiescent air, by the trielectrode plasma curtain (TPC) discharge is presented and analyzed in terms of the electrical characteristics of the discharge. The TPC discharge is based on the combination of a dielectric barrier (DBD) with a corona (CD) discharges in a three electrode system, and basically it consists in the "stretching" of a pure DBD by the action of a negative corona discharge generated between the active electrode of the dielectric barrier and a remote third electrode. It was found that the observed flow pattern is mainly controlled by the forces exerted at the vicinities of both exposed electrodes where the electric field is very high. On the other hand, the net force produced at the inter-electrode gap seems to be very small in spite of the large current flowing there, a fact that can be attributed to the relatively low value of the electric field at the streamer channel.
机译:在放电的电特性方面,提出和分析了对静电空气的诱导流动图案的研究,并分析了放电的电特性。 TPC放电基于三个电极系统中的电晕(CD)排出的介电屏障(DBD)的组合,并且基本上它由产生的负电晕放电的作用基本上由纯DBD的“拉伸”组成 在介电屏障的有源电极和远程第三电极之间。 发现观察到的流动模式主要由施加在电场非常高的曝光电极的附近的力来控制。 另一方面,尽管在那里流动的电流大,但在电极间隙中产生的净力似乎非常小,这可能归因于拖缆通道处的电场的相对较低的值。

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