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Dynamic and spectroscopic characteristics of atmospheric gliding arc in gas-liquid two-phase flow

机译:气液两相流中大气滑动弧的动力学和光谱特性

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摘要

In this study, an atmospheric alternating-current gliding arc device in gas-liquid two-phase flow has been developed for the purpose of waste water degradation The dynamic behavior of the gas-liquid gliding arc is investigated through the oscillations of electrical signals, while the spatial evolution of the arc column is analyzed by high speed photography. Different arc breakdown regimes are reported, and the restrike mode is identified as the typical fluctuation characteristic of the hybrid gliding arc in air-water mixture. Optical emission spectroscopy is employed to investigate the active species generated in the gas-liquid plasma. The axial evolution of the OH (309 nm) intensity is determined, while the rotational and vibrational temperatures of the OH are obtained by a comparison between the experimental and simulated spectra. The significant discrepancy between the rotational and translational temperatures has also been discussed.
机译:在这项研究中,开发了一种用于废水降解的气液两相流中的大气交流滑弧装置。通过电信号的振荡研究了气液滑弧的动态行为,而通过高速摄影分析了弧形柱的空间演变。报道了不同的​​电弧击穿方式,并且重击模式被识别为混合滑翔电弧在空气-水混合物中的典型波动特征。使用光发射光谱法研究在气液等离子体中产生的活性物质。确定了OH(309 nm)强度的轴向演变,同时通过比较实验光谱和模拟光谱获得了OH的旋转和振动温度。还讨论了旋转温度与平移温度之间的显着差异。

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