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Propagation characteristics of unstable detonation waves in a round tube with annular perturbation.

Authors :
Zhao, Huanjuan
Liu, Keqing
Lin, Min
Dong, Shiming
Lin, Wei
Source :
International Journal of Hydrogen Energy. Mar2023, Vol. 48 Issue 24, p9127-9138. 12p.
Publication Year :
2023

Abstract

The detonation propagation characteristics of the mixtures, 2H 2 + O 2 +3Ar and CH 4 + 2O 2 , were investigated. Accordingly, the mixtures were tested in round tube with inner diameter of D = 80 mm and annular tubes with widths of w = 25 mm, 15 mm, and 5 mm. The two mixtures represent stable mixture with regular cell pattern and unstable mixture with irregular cell pattern, respectively. Smoked foils were utilized to record cellular structure under various initial conditions. Subsequently, the length scale L dsc was measured, which represents the length from the start of the test section to the position where the cellular structure changes drastically (the cell size obviously increases or the structure disappears). The results reveal that both mixtures can successfully propagate in round tube and annular tubes of 25 mm and 15 mm, but fail in 5 mm annular tube. The L dsc value of 2H 2 + O 2 + 3Ar is higher than that of CH 4 + 2O 2 in 80 mm and 15 mm tubes, but it is opposite in 25 mm tube. Moreover, the relationship between L dsc and hydraulic diameter D H was analysed. For a given tube, the values of L dsc and L dsc / D H increased when the initial pressure increased. And the variation trend of L dsc and L dsc / D H of CH 4 + 2O 2 is steeper. Furthermore, the mixtures 2H 2 + O 2 + 3Ar and CH 4 + 2O 2 resulted in over-driven detonation in 15 mm and 25 mm annular tubes, respectively. The ratio between the total reaction length (sum of the induction length and exothermic length) and the hydraulic diameter (D H /(Δ i + Δ e)) correspond to critical values of 18 for hydrogen-oxygen-argon and 6 for methane-oxygen, below which the detonation will fail. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03603199
Volume :
48
Issue :
24
Database :
Academic Search Index
Journal :
International Journal of Hydrogen Energy
Publication Type :
Academic Journal
Accession number :
162026849
Full Text :
https://doi.org/10.1016/j.ijhydene.2022.12.044