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Optical characteristics of the filamentary and diffuse modes in surface dielectric barrier discharge

机译:表面介电势垒放电中的丝状和扩散模式的光学特性

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Surface dielectric barrier discharge (DBD) plasmas generally exhibits filamentary and diffuse discharges at atmospheric air. The focus of this investigation is on the different optical characteristics and quantitative research about morphological features of two discharge modes. The temporally and spatially resolved characteristics of discharge phenomenon together with the gas temperature are presented with microsecond time scale. Discharge area is estimated by the sum of pixels that equal to "1" in MATLAB software. The formation of diffuse plasma mainly depends on an increase of the ionization coefficient and a creation of sufficient seed electrons by the Penning effect at low electric fields. Accordingly, experimental measurements show that diffuse discharge during the negative half cycle has good uniformity and stability compared with filamentary discharge during the positive half cycle. The rotational temperatures of plasma are determined by comparing the experimental spectra with the simulated spectra that have been investigated. The plasma gas temperature keeps almost constant in the filamentary discharge phase and subsequently increased by about 115 K during the diffuse discharge. In addition, it is shown to be nearly identical in the axial direction. Non-uniform temperature distribution can be observed in the radial direction with large fluctuations. The plasma length is demonstrated almost the same between two discharge modes. (C) 2016 Elsevier B.V. All rights reserved.
机译:表面介电势垒放电(DBD)等离子体通常在大气中表现出丝状和扩散放电。本研究的重点是对两种放电模式的不同光学特性和形态特征进行定量研究。放电现象的时间和空间分辨特征以及气体温度以微秒时间标度表示。放电面积由MATLAB软件中等于“ 1”的像素之和估算。扩散等离子体的形成主要取决于电离系数的增加以及在低电场下通过潘宁效应产生的足够的种子电子。因此,实验测量表明,与正半周期内的丝状放电相比,负半周期内的扩散放电具有良好的均匀性和稳定性。通过将实验光谱与已研究的模拟光谱进行比较,可以确定等离子体的旋转温度。在丝状放电阶段,等离子气体温度几乎保持恒定,随后在扩散放电过程中升高约115K。另外,示出了在轴向方向上几乎相同。在径向方向上观察到温度分布不均匀且波动较大。两种放电模式之间的等离子体长度几乎相同。 (C)2016 Elsevier B.V.保留所有权利。

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