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Laser Diagnostic Imaging of Energetically Enhanced Flames Using Direct Microwave Plasma Coupling

机译:使用直接微波等离子体耦合的能量增强火焰的激光诊断成像

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Quantitative images of temperature and hydroxyl (OH) concentrations are presented in plasma-enhanced flames, where a nonthermal microwave plasma discharge is coupled directly with the reaction zone of the flame. The plasma jet is generated through a novel microwave (2.45 GHz) waveguide based a coaxial reactor system. Planar laser-induced fluorescence is used to generate the OH fields, and planar Rayleigh scattering thermometry is used for the temperature. Plasma-enhanced flames present new possibilities for ignition and flame holding under harsh operating conditions, including stabilization of combustion in hypersonic flame conditions.
机译:在等离子体增强的火焰中显示了温度和羟基(OH)浓度的定量图像,其中非热微波等离子体放电直接与火焰的反应区耦合。等离子体射流通过基于同轴反应器系统的新型微波(2.45 GHz)波导生成。平面激光诱导的荧光用于生成OH场,而平面瑞利散射温度计用于温度。等离子增强火焰为在苛刻的运行条件下点火和保持火焰提供了新的可能性,包括在高超声速火焰条件下稳定燃烧。

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