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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Spatially resolved temperature measurements in an atmospheric plasma torch using the A(2)Sigma+, nu '=0 -> X-2 Pi, nu ''=0 OH band
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Spatially resolved temperature measurements in an atmospheric plasma torch using the A(2)Sigma+, nu '=0 -> X-2 Pi, nu ''=0 OH band

机译:使用A(2)Sigma +,nu'= 0-> X-2 Pi,nu''= 0 OH波段在大气等离子炬中进行空间分辨温度测量

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摘要

Molecular emission spectra of the OH rotational bands were measured to determine a two dimensional temperature profile of a microwave heated air plasma torch. The method is based on the simulation of rotational line intensities and the comparison with experimental results. A very high accuracy in simulation was obtained by the implementation of the Lambda-doubling. The torch itself can be divided into a small (few millimetres in diameter) plasma and a flame which can reach up to 30 mm in diameter and 250 mm in height. While the plasma centre emits a variety of spectral lines, the whole flame is only accessible with the A(2)Sigma(+), v' = 0 -> X-2 Pi, v" = 0 transition in the free radical OH at 306.36 nm.
机译:测量OH旋转带的分子发射光谱,以确定微波加热的空气等离子体炬的二维温度分布。该方法基于旋转线强度的模拟并与实验结果进行比较。通过执行Lambda倍增,可以获得非常高的仿真精度。割炬本身可以分为小的(直径几毫米)等离子体和火焰,火焰直径可达30毫米,高度可达250毫米。当等离子体中心发出各种光谱线时,整个火焰只能通过A(2)Sigma(+)进入,v'= 0-> X-2 Pi,v“ = 0在自由基OH处转变306.36纳米

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