Effects of pipe geometry and hydrogen concentration on flame quenching performance in crimped-ribbon flame arrester systems

Jizhe Wang, Xingyan Cao, Pengliang Li, Zhirong Wang*, Xinming Qian

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

The effects of the expansion chamber angle φ, the pipe bending angle Ø, and the pipe connection form PCF on the flame quenching performance within crimped-ribbon flame arrester FA pipe systems under varying initial hydrogen concentrations c0 was investigated in this paper. The flame velocity Vf and explosion pressure Pf entering the FA, and the corresponding flame resistance results Rs were obtained. The results indicated that the interaction between c0 and φ significantly influenced the flame propagation and explosion pressure wave evolution. The expansion chamber EC with φ = 30° exhibited the most effective attenuation on the flame propagation velocity. Furthermore, sharp-angled bends significantly impacted Vf and Pf, particularly at Ø = 30° and 45°. But the FA still had a significant attenuation effect on flame propagation after resistance failure. Notably, the explosion intensity in the Y-type pipe was the highest when the R-end was ignited and the B-end was flaming resistance (Y-R-B), while the explosion intensity in the T-type pipe was the lowest when the B-end was ignited and the R-end was flaming resistance (T-B-R). Importantly, the probability of flame resistance failure was notably reduced by 22 % in T-type pipe compared to Y-type pipe.

源语言英语
文章编号150573
期刊International Journal of Hydrogen Energy
159
DOI
出版状态已出版 - 18 8月 2025
已对外发布

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