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Analysis of the possibility of designing more compact DF lasers driven by combustion of preheated fuels

机译:分析设计更紧凑的由预热燃料燃烧驱动的DF激光器的可能性

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摘要

We report a theoretical calculation of the processes proceeding in the combustor of combustion-driven cw DF/HF chemical lasers with different mixtures of fuels preheated to high temperatures. Calculation results demonstrate a great effect of the preheating temperature on the yield of F atoms and strongest deactivator, on the primary dilution ratio psi(p) and on the estimated specific power. When fuels are preheated to about 1300 K, the specific power is improved by about 74.2%, and the total mass of the fuel is reduced by about 43%, which makes it possible to realise a more compact and efficient design of combustion-driven cw DF/HF chemical lasers at elevated combustor pressures. Fuel preheating can facilitate the development of chemical lasers and high-power lasers based not only on airborne and space-borne platforms, but also on mobile ground-based platforms.
机译:我们报告了在燃烧驱动的连续式DF / HF化学激光器的燃烧器中进行的过程的理论计算,该燃烧器具有预热至高温的不同混合燃料。计算结果表明,预热温度对F原子和最强钝化剂的产率,一次稀释比psi(p)和估计的比功率有很大影响。当将燃料预热到1300 K时,比功率提高了约74.2%,燃料的总质量降低了约43%,这使得实现燃烧驱动的连续式压缩机的设计更加紧凑和高效成为可能。在升高的燃烧器压力下的DF / HF化学激光器。燃料预热不仅可以基于机载和空间平台,还可以基于移动地面平台,促进化学激光器和高功率激光器的开发。

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