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MODELING LASER-INDUCED IGNITION OF NITRAMINE PROPELLANTS WITH CONDENSED AND GAS-PHASE ABSORPTION

机译:激光诱导的硝胺推进剂在凝结和气相吸收中的点火模型

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摘要

A numerical analysis has been developed to study the laser-induced ignition of nitramine propellants with both condensed-phase and gas-phase absorption. The analysis is based on the time-dependent conservation equations of mass, energy, and species concentration in both the gas and condensed phases. A comprehensive chemical kinetics scheme involving 45 species and 232 steps is used to study the detailed heat-release mechanism in the gas phase. The analysis has been applied to investigate the ignition delay and key chemical processes involved in the laser-induced ignition of HMX monopropellant. Results show gas-phase absorption of laser energy enhances the ignition process, but reduces the dependency of ignition delay on the laser intensity. The process consists of inert heating, thermal decomposition, primary-flame occurrence, secondary-flame preparation and formation, and, finally, establishment of steady-state combustion.
机译:已经开发了数值分析来研究具有冷凝相和气相吸收的激光诱导的硝胺推进剂点火。该分析基于气相和冷凝相中质量,能量和物质浓度随时间变化的守恒方程。涉及45种物质和232个步骤的综合化学动力学方案用于研究气相中详细的放热机理。该分析已用于研究HMX单推进剂的激光诱导点火的点火延迟和关键化学过程。结果表明,气相吸收激光能量可以增强点火过程,但可以减少点火延迟对激光强度的依赖性。该过程包括惰性加热,热分解,一次火焰发生,二次火焰的形成和形成,最后是稳态燃烧的建立。

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