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Laser Diagnostics of Inductively Heated Oxygen, Nitrogen and Air Flows

机译:激光诊断电感加热氧气,氮气和空气流动

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Laser absorption spectroscopy was applied for diagnostics of inductively heated plasma generator IPG3 air and nitrogen flows. Although no absorption signal could be detected in the nitrogen flow, temporal variation of absorption profiles at OI 777.19 nm were measured in the air flow. As a result, the flow properties were found to fluctuate at 300 Hz with the plasma emitted duration of 46%. The specific total enthalpy and degree of dissociation in oxygen and nitrogen were estimated from the deduced total temperature assuming thermo-chemical equilibrium in the discharge tube. Consequently, the averaged total enthalpy, degree of dissociation in oxygen and nitrogen in the emitted duration time were estimated as 23.5±10.1 MJ/kg, 98% and 44 %, respectively.
机译:激光吸收光谱被应用于电感加热等离子体发生器IPG3空气和氮气流的诊断。尽管在氮气流动中没有检测到吸收信号,但在空气流动中测量OI 777.19nm处的吸收谱的时间变化。结果,发现流动性质在300Hz下波动,等离子体发出的持续时间为46%。氧气和氮气中的特定总焓和分解程度从推导的总温度估计在放电管中的热化学平衡。因此,在发射的持续时间中的氧气和氮中的平均总焓,氧中的解离程度分别为23.5±10.1mJ / kg,98%和44%。

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