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首页> 外文期刊>Journal of propulsion and power >Electrically Excited, Supersonic Flow Carbon-Monoxide Laser with Air Species in Laser Mixture
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Electrically Excited, Supersonic Flow Carbon-Monoxide Laser with Air Species in Laser Mixture

机译:激光混合物中具有空气种类的电激励,超音速流动一氧化碳激光器

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Performance parameters of an electric discharge excited, supersonic flow CO laser operated with significant amounts of air species in the laser mixture is studied experimentally and by kinetic modeling. The results demonstrate that adding nitrogen to the CO-He mixture increases the laser power significantly, by up to a factor of 3. Adding oxygen reduces CO vibrational excitation and results in a steep laser power reduction. Adding air to the laser mixture also produces higher output power, such that the positive effect of nitrogen outweighs the negative effect of oxygen. This result indicates that a chemical CO laser, not dependent on the electric discharge for excitation, may be capable of operating in a mixture of carbon vapor and air. Performance of a supersonic flow chemical laser excited by a reaction of carbon vapor and molecular oxygen is analyzed by kinetic modeling. Peak laser power is predicted at the C vapor mole fraction of 0.2%, when 15% of energy stored in CO vibrational energy mode (4.5% of the reaction enthalpy) is converted to laser power. At higher C vapor mole fractions, flow temperature rise caused by exothermic reactions and by CO vibrational relaxation results in rapid reduction of the predicted laser power.
机译:通过实验和动力学建模研究了在激光混合物中有大量空气种类的情况下操作的放电激发超音速流动CO激光器的性能参数。结果表明,将氮气添加到CO-He混合物中可显着提高激光功率,最高可达3倍。添加氧气可减少CO振动激发,并导致急剧降低激光功率。向激光混合物中添加空气也会产生更高的输出功率,因此氮气的积极作用超过氧气的不利影响。该结果表明,不依赖于激发放电的化学CO激光器可能能够在碳蒸气和空气的混合物中工作。通过动力学模型分析了由碳蒸气和分子氧反应激发的超声流化学激光器的性能。当以CO振动能量模式存储的能量的15%(反应焓的4.5%)转换为激光功率时,预计在0.2%的C蒸汽摩尔分数下会达到峰值激光功率。在较高的C蒸汽摩尔分数下,由放热反应和CO振动弛豫引起的流动温度升高会导致预测的激光功率快速降低。

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