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Spatially - and temporally- resolved investigation of discharge in water in pin-to-pin geometry

机译:销对销几何形状的水中排放的时空解析研究

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Summary form only given. In the recent years plasma in contact with liquids is receiving a wide attention due to many potential bio-medical and environmental applications. Usually such plasmas have very transient nature and understanding their kinetics and dynamics is very important. The easiest approach of conducting the investigation are non-disturbing optical diagnostics, such as fast-framing photography, Optical Emission Spectroscopy (OES) and various laser scattering techniques. In this work we report the results of the research study of a discharge in water in a pin-to-pin geometry. The discharge is ignited by application of high voltage pulse with amplitude of ~10 kV and duration of ~170 ns at full width at half maximum (FWHM). The cathode and the anode are made of stainless steel blades, fashioned in a pin form. The investigation performed includes fast framing imaging and Optical Emission Spectroscopy of Hydrogen Balmer lines. The fast framing imaging diagnostic shows the dynamics of the discharge development and the plasma formation. Spatial attention will be given in the presentation on the effect of nonequilibrium kinetics on the interpretation of the emission spectra for the determination of electron properties and gas temperatures.
机译:仅提供摘要表格。近年来,由于许多潜在的生物医学和环境应用,与液体接触的血浆受到广泛关注。通常,此类等离子体具有非常短暂的性质,因此了解其动力学和动力学非常重要。进行调查的最简单方法是无干扰的光学诊断,例如快速取景摄影,光学发射光谱(OES)和各种激光散射技术。在这项工作中,我们报告了销对销几何形状的水中排放的研究结果。在半高全宽(FWHM)处施加幅值为〜10 kV,持续时间为〜170 ns的高压脉冲来点燃放电。阴极和阳极由不锈钢叶片制成,呈针状。进行的研究包括快速成型成像和Balmer管线的发射光谱。快速成帧成像诊断显示放电发展和等离子体形成的动力学。演讲中将特别关注非平衡动力学对确定电子性质和气体温度的发射光谱的影响。

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