| Citation: | GAN Zhichao, HAN Xiao, GAO Anwen, et al. Experimental study on hydrogen and oxygen combustion of arrayed microtube combustor in steam environment[J]. Journal of Aerospace Power, 2025, 40(11):20240609 doi: 10.13224/j.cnki.jasp.20240609 |
An arrayed microtube nozzle burner was employed in achieving efficient fuel and oxidizer mixing through cross-jet flows. Research on the combustion characteristics of hydrogen and oxygen in a steam environment was conducted. Through numerical simulation, the flame stability of the micro tube in steam environment was verified. The combustion efficiency of arrayed model burner with different microtube spacings was also contrasted. Experiments on the combustion of pure hydrogen and oxygen in a steam environment were carried out under atmospheric conditions. Flame images, ignition and extinction boundaries, combustion efficiency, and combustion oscillation characteristics of the burner were obtained. The results indicated that increasing steam temperature can significantly widen the flame ignition and extinction boundaries of the burner. The combustion efficiency of hydrogen was kept above 99.9% under various conditions, and the pressure fluctuations of the burner were at relatively low levels. This initially validated that the proposed burner can ensure efficient combustion of hydrogen and oxygen in a steam environment, with minimal combustion oscillations.
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