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Interaction of positive streamers in air with bubbles floating on liquid surfaces: conductive and dielectric bubbles

机译:液面上漂浮在空气中的正飘带的相互作用:导电和介电气泡

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The interaction of plasmas sustained in humid air with liquids produces reactive species in both the gas phase and liquid for applications ranging from medicine to agriculture. In several experiments, enhanced liquid reactivity has been produced when the liquid is a foam or a bubble coated liquid. To investigate the phenomena of streamers interacting with bubbles a twodimensional computational investigation has been performed of streamer initiation and propagation on and inside hemispherical bubble-shells floating on a liquid surface. Following prior experiments, water and oil bubble-shells with an electrode located outside and inside the bubble were investigated. We found that positive air streamers interact differently with conductive water and dielectric oil bubbles. The streamer propagates along the external surface of a water bubble while not penetrating through the bubble due to screening of the electric field by the conducting shell. If the electrode is inserted inside the bubble, the path of the streamer depends on how deeply the electrode penetrates. For shallow penetration, the streamer propagates along the inner surface of the bubble. Due to the low conductivity of oil bubbleshells, the electric field from an external electrode penetrates into the interior of the bubble. The streamer can then be re-initiated inside the bubble.
机译:潮湿空气中持续的等离子体的相互作用在气相和液体中产生反应性物种,用于从药物到农业的应用。在若干实验中,当液体是泡沫或气泡涂覆的液体时,已经产生增强的液体反应性。为了研究与气泡相互作用的炉子的现象,已经对漂浮在液体表面上的半球泡壳和内侧和内部的传播进行了两模州的计算研究。在现有的实验之后,研究了具有位于外部和气泡内部的电极的水和油泡 - 壳。我们发现,正气氛与导电水和介电油泡相互作用。炉子沿着水泡的外表面传播,同时由于通过导电壳体筛选电场而不会穿过气泡。如果将电极插入气泡内,则拖车的路径取决于电极渗透的深度。为了浅穿透,炉子沿着气泡的内表面传播。由于油鼓胀的低导电性,来自外部电极的电场穿入气泡的内部。然后可以在气泡内重新启动拖车。

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