首页> 外文期刊>International Journal of Heat and Mass Transfer >Entrainment in high-velocity, high-temperature plasma jets. Part Ⅰ: experimental results
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Entrainment in high-velocity, high-temperature plasma jets. Part Ⅰ: experimental results

机译:夹带在高速高温等离子流中。第一部分:实验结果

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The development of a high-velocity, high-temperature argon plasma jet issuing into air has been investigated. In particular the entrainment of the surrounding air, its effect on the temperature and velocity profiles and the subsequent mixing and dissociation of oxygen has been examined in detail. The total concentration of oxygen and the velocity and temperature profiles in the jet were obtained from an enthalpy probe. High-resolution Thomson scattering provided an independent measure of plasma velocity and temperature, validating enthalpy probe measurements and providing non-intrusive measurements near the nozzle exit. The concentration of atomic oxygen was obtained from 2-photon laser induced fluorescence. Molecular oxygen concentration and temperature was obtained from coherent anti-Stokes Raman spectroscopy. It was found that both the incompleteness of mixing at the molecular scale and the rate of oxygen dissociation and recombination affects jet behavior.
机译:已经研究了高速,高温氩等离子体射流排放到空气中的发展。特别地,已经详细检查了周围空气的夹带,其对温度和速度分布的影响以及随后的氧气的混合和离解。氧气的总浓度以及射流中的速度和温度曲线是从焓探头获得的。高分辨率Thomson散射提供了对等离子体速度和温度的独立测量,可以验证焓探头的测量结果,并在喷嘴出口附近提供非侵入式测量结果。从2-光子激光诱导的荧光中获得原子氧的浓度。分子氧浓度和温度从相干反斯托克斯拉曼光谱法获得。发现在分子尺度上混合的不完全以及氧离解和重组的速率都影响射流行为。

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