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Radial distribution of electron density,gas temperature and air species in a torch kind helium plasma produced at atmospheric pressure

机译:大气压产生的火炬型氦等离子体中电子密度,气体温度和空气种类的径向分布

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The radial dependence of the electron density and the gas temperature,two major parameters of the microwave helium plasma produced at atmospheric pressure by the axial injection torch,is presented here.An intensified charge coupled device in combination with an image rotation system allowed to perform laterally resolved emission intensity measurements that were mathematically transformed into radial emissivity using the Abel inversion technique in conjunction with a Smoothing and Interpolation Procedure.When the Abel inversion is not used,only radially averaged values of the electron density and gas temperature values are obtained.The results presented here have been used to obtain the radial range of application of such averaged values.The variation of the radial distribution of these parameters with the incident microwave power and the He flow-rate was also obtained.The entrainment of species from the surrounding air into the plasma was also studied in radial terms.Small amounts of O(I),H(I),N(I) and N_2~+ were found in addition to He(I);this suggests a high entrainment of these elements from the ambient air into the plasma,which affects the plasma kinetics and the parameter values.
机译:本文介绍了电子密度和气体温度的径向相关性,这是大气压下轴向注入炬在大气压力下产生的微波氦等离子体的两个主要参数。增强的电荷耦合器件与图像旋转系统相结合,可横向执行解析的发射强度测量值,使用Abel求反技术结合平滑和插值程序将其数学转换为径向发射率。当不使用Abel求反时,仅获得电子密度和气体温度值的径向平均值。本文介绍的方法已被用于获得这些平均值的径向应用范围,还获得了这些参数的径向分布随入射微波功率和He流量的变化情况。还用放射状研究了血浆。少量的O除He(I)外还发现了(I),H(I),N(I)和N_2〜+;这表明这些元素从周围空气中进入空气的夹带很高,这会影响等离子体动力学和参数值。

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