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Oxygen plasma flow properties deduced from laser-induced fluorescence and probe measurements

机译:由激光诱导的荧光和探针测量得出的氧等离子体流动特性

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Estimation of the local dissociation degree and the local mass-specific enthalpy of a pure oxygen plasma flow determined mainly from laser-induced fluorescence measurements are reported. Measurements have been conducted for several generator parameters in an inductively heated plasma wind tunnel. Additional probe measurements of total pressure together with the deduced translational temperature are used to estimate the local mass-specific enthalpy. For a reference condition, full dissociation has been measured. The measured translational temperature of atomic oxygen for this condition is T = 3500 K. Subsequently, the local mass-specific enthalpy has been derived using these local density and temperature measurements. For the reference condition the estimated value of h = 27 MJ/kg is in good agreement with the probe measurements and results from diode laser absorption spectroscopy. (c) 2008 Optical Society of America.
机译:报道了主要由激光诱导的荧光测量确定的纯氧等离子体流的局部解离度和局部质量比焓的估计。已经在感应加热的等离子风洞中对几种发电机参数进行了测量。总压力的附加探针测量值以及推导的平移温度可用于估算局部质量比焓。对于参考条件,已经测定了完全解离。在此条件下测得的原子氧的平移温度为T = 3500K。随后,使用这些局部密度和温度测量值得出了局部质量比焓。对于参考条件,h = 27 MJ / kg的估计值与探针测量结果以及二极管激光吸收光谱法得出的结果非常吻合。 (c)2008年美国眼镜学会。

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