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Effect of Additional Pin Electrode Placing at the Bottom of the Plasma Jet and Flow Behavior on Radical Generation and Propagation

机译:附加销电极放置在等离子体射流底部底部的效果和流动行为的激进生成和传播

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摘要

In this article, the effect of an additional pin electrode at the bottom of the plasma jet on a double electrode atmospheric pressure plasma (APP) jet in radical generation and propagation along the jet were investigated. An additional pin electrode at the bottom of the plasma jet connecting to the ground voltage resulted in triggered glow discharge near the additional pin electrode is similar to the streamer-triggered glow discharge at the ground electrode for double electrode configuration. This leads to an increase in the intensity of excited radicals along the plasma jet with the secondary radical generation at the bottom of the plasma jet. The effect of changes in flow behavior from laminar to turbulent flow on the generation and propagation of radicals along the jet were also investigated for the double electrode configuration. Experimental observations confirm that changes in flow regimes affecting the radical generation and propagation. Increase of flow in the laminar regime increases the radical intensity and decreases the intensity as the flow becomes turbulent.
机译:在本文中,研究了等离子体射流底部在双电极大气压等离子体(APP)射流上以自由基产生和沿着射流传播的效果。连接到地电压的等离子体射流底部的附加销电极导致附加销电极附近的触发辉光放电类似于用于双电极配置的接地电极的飘逸触发的辉光放电。这导致沿着等离子体射流沿着等离子体射流的激发激励力的强度增加,其等离子体射流底部的二次自由基产生。对于双电极构造,还研究了对沿着射流的产生和传播的流动行为变化对湍流的影响。实验观察证实,影响自由基生成和传播的流动制度的变化。层状肿大中的流动的增加会增加自由基强度,并随着流动变动而降低强度。

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