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Observations of electric discharge streamer propagation and capillary oscillations on the surface of air bubbles in water

机译:观察放电拖缆在水中气泡传播和毛细管振荡

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摘要

The propagation of electric discharge streamers inside bubbles in liquids is of interest for the remediation of toxins in water and plasma-based surgical instruments. The manner of streamer propagation has an important influence on the production of reactive species that are critical to these applications. Streamer propagation along the surface of electrode-attached bubbles of air in water, previously predicted by numerical simulations, has been experimentally imaged using a fast frame-rate camera. The successive pulsing of the streamer discharge inside the bubbles produced oscillations along the air–water interface. Subsequent streamers were observed to closely follow surface distortions induced by such oscillations. The oscillations likely arise from the non-uniform perturbation of the bubble driven by the electric field of the streamer and were found to be consistent with Kelvin's equation for capillary oscillations. For a narrow range of applied voltage pulse frequencies, the oscillation amplitude increased over several pulse periods indicating, potentially, resonant behaviour. We also observed coupling between bubbles wherein oscillations in a second bubble without an internal discharge were induced by the presence of a streamer in a fixed bubble.
机译:放电流束在液体中的气泡中的传播对于补救水和基于等离子体的外科手术器械中的毒素很重要。拖缆的传播方式对反应性物质的生产具有重要影响,而这些物质对这些应用至关重要。先前已经通过数值模拟预测的,沿着带电极的空气在水中气泡的表面上的拖缆传播已经通过快速帧速率相机进行了实验成像。气泡内流光放电的连续脉冲在空气-水界面产生振荡。观察到随后的拖缆紧紧跟随由这种振动引起的表面变形。振荡很可能是由流光电场驱动的气泡的不均匀扰动引起的,并且发现该振荡与毛细管振荡的开尔文方程一致。对于窄范围的施加电压脉冲频率,振荡幅度在几个脉冲周期内增加,表明可能存在共振行为。我们还观察到气泡之间的耦合,其中在固定气泡中存在流光的情况下,在没有内部放电的情况下,第二个气泡发生了振荡。

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