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Impulsive breakdown in water: Optimisation of energy delivery for high acoustic output

机译:水中的脉冲击穿:优化能量输送以实现高声输出

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The high voltage impulsive breakdown process in water is complex, with the nature of the impulsive breakdown depending upon the magnitude, polarity and rise time of the HV impulses, the water conductivity, and the electrode topology. In the case of μs and sub-μs high voltage impulses of sufficient magnitude, the breakdown develops through the formation of plasma streamers in the water. When the first streamer crosses the entire inter-electrode gap, the energy released in the breakdown channel transforms this channel into a gas/vapor cavity, which pulsates and radiates acoustic impulse(s). Optimisation of the hydrodynamic (period of cavity oscillation) and acoustic (peak magnitude of the acoustic impulse(s)) parameters is required for practical applications of these underwater spark discharges. The present paper analyses the functional behavior of the period of cavity oscillation and the peak magnitude of the acoustic impulse for spark discharges generated by self-triggered underwater discharges (free discharges), spark discharges triggered by air bubbles injected into the inter-electrode gap, and wire-guided discharges. The advantages and limitations of these methods of generation of underwater acoustic impulses by spark discharges are discussed.
机译:水中的高压脉冲击穿过程很复杂,脉冲击穿的性质取决于HV脉冲的大小,极性和上升时间,水的电导率和电极拓扑。在μs和亚μs大小的高压脉冲情况下,击穿通过在水中形成等离子流而发展。当第一拖缆跨过整个电极间间隙时,击穿通道中释放的能量将其转换为气体/蒸汽腔,该腔会脉动并辐射声脉冲。对于这些水下火花放电的实际应用,需要优化流体动力(腔体振荡的周期)和声学(声学脉冲的峰值)参数。本文分析了自激水下放电(自由放电),由注入电极间间隙的气泡触发的火花放电产生的火花放电的空腔振荡周期的功能行为以及声脉冲的峰值幅度,和线引导放电。讨论了通过火花放电产生水下声脉冲的这些方法的优点和局限性。

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