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Quantitative characterization of a dielectric barrier discharge in air applying non-calibrated spectrometer, current measurement and numerical simulation

机译:使用非标定光谱仪对空气中的电介质阻挡层放电进行定量表征,电流测量和数值模拟

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摘要

A non-calibrated spectrometer is used for quantitative characterization of a dielectric barrier discharge (DBD) in air wherein optical emission spectroscopy (OES) is completed by current measurement and numerical simulation. This diagnostic method is applicable when the cross-sectional area of the active plasma volume and the current density can be determined. The nitrogen emission in the spectral range of 330-406 nm is used for OES diagnostics. The electric field in the active plasma volume is determined by applying the measured spectrum, well-known Franck-Condon factors for nitrogen transitions and numerically simulated electron distribution functions. The measured electric current density is used for the determination of electron density in plasma. Using the determined plasma parameters, the dissociation rates of nitrogen and oxygen in active plasma volume are calculated, which can be used for the simulation of chemical kinetics.
机译:非校准光谱仪用于空气中介电势垒放电(DBD)的定量表征,其中通过电流测量和数值模拟完成了光发射光谱(OES)。当可以确定有效血浆体积的横截面积和电流密度时,此诊断方法适用。 330-406 nm光谱范围内的氮发射用于OES诊断。通过应用测得的光谱,众所周知的用于氮跃迁的弗兰克-康登因子和数值模拟的电子分布函数,可以确定有效等离子体体积中的电场。测得的电流密度用于确定等离子体中的电子密度。使用确定的血浆参数,可以计算出活性血浆中氮和氧的解离速率,可将其用于化学动力学模拟。

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