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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Rotational temperature measurements in atmospheric pulsed dielectric barrier discharge - gas temperature and molecular fraction effects
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Rotational temperature measurements in atmospheric pulsed dielectric barrier discharge - gas temperature and molecular fraction effects

机译:大气脉冲介质阻挡放电中的旋转温度测量-气体温度和分子分数效应

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This study was dedicated to the correlation between the rotational temperature and the plasma gas temperature in a non-thermal atmospheric plasma obtained by a dielectric barrier discharge. Different parameters were modified (e.g. gas temperature, molecular fraction) in argon water gas mixtures. The rotational temperature of OH(A) was spectroscopically measured. It is shown that in mixtures mainly composed of atomic species, namely rare gases, the OH(A) rotational temperature is strongly correlated with a gas temperature streamer. In mixed (atomic and molecular) plasmas it seems that the rotational temperature can constitute an approach to the translational energy of heavy particles in the streamer areas. [References: 28]
机译:这项研究致力于通过介电势垒放电获得的非热大气等离子体中旋转温度与等离子体气体温度之间的相关性。在氩水气混合物中修改了不同的参数(例如气体温度,分子分数)。用光谱法测量OH(A)的旋转温度。结果表明,在主要由原子种类组成的混合物(即稀有气体)中,OH(A)的旋转温度与气体流光强相关。在混合的(原子和分子)等离子体中,旋转温度似乎可以构成流光区域中重粒子平移能量的一种途径。 [参考:28]

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