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Plasma formation in underwater gas bubbles

机译:水下气泡中的等离子体形成

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The generation of plasma in underwater gas bubbles offers the potential to produce large volume plasma in water while minimizing electrode erosion. Such attributes are desirable for the design of plasma-based water purification systems. In this work, gas bubbles of diameter 0.4-0.7mm were trapped in the node of a 26.4 kHz underwater acoustic standing wave and pulsed with voltages in the range 10-14 kV. Plasma formation in trapped, isolated bubbles was observed to occur through two separate pathways: (1) plasma generated in the bubble through impact by a liquid streamer and (2) plasma generated in the bubble due solely to the applied electric field. The former case demonstrates the mechanism of so-called streamer hopping in which the discharge transitions from a water streamer to a gaseous surface streamer. Perturbations of the bubble's fluid boundary due to the streamer are also discussed.
机译:在水下气泡中产生等离子体提供了在水中产生大量等离子体的潜力,同时最大限度地减少了电极侵蚀。这些属性对于基于等离子体的水净化系统的设计是可取的。在这项工作中,直径为0.4-0.7mm的气泡被困在26.4 kHz水声驻波的节点中,并以10-14 kV的电压脉冲。观察到捕获的孤立气泡中的等离子体形成通过两种不同的途径发生:(1) 通过液体流光的冲击在气泡中产生的等离子体和 (2) 仅由于施加的电场在气泡中产生的等离子体。前一个案例展示了所谓的流光跳跃的机制,其中排放从水流过渡到气态表面流光。还讨论了由于流光引起的气泡流体边界的扰动。

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