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ROTATIONAL DISTRIBUTION OF OH MOLECULES IN SUPERSONIC THERMAL PLASMA JET

机译:超声热等离子体射流中OH分子的旋转分布

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摘要

Supersonic thermal plasma jet generated by DC plasma torch is studied by means of optical emission spectroscopy. Spectra of OH molecules are used to determine rotational temperature in different axial and radial positions of the jet. Comparison with excitation and ionization temperatures calculated from argon spectral lines is included. In the hot part of the jet rotational temperature reflects kinetic temperature, while in the outer parts of the jet non-thermal effects play significant role in populating excited states of OH molecule.
机译:利用光发射光谱法研究了直流等离子体炬产生的超声热等离子体射流。 OH分子的光谱用于确定射流在不同轴向和径向位置的旋转温度。包括与从氩光谱线计算出的激发和电离温度的比较。在射流的高温部分,旋转温度反映了动力学温度,而在射流的外部部分,非热效应在OH分子激发态的填充中起着重要作用。

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