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Inerting effect of carbon dioxide on confined hydrogen explosion.

Authors :
Li, Yanchao
Bi, Mingshu
Yan, Caicai
Liu, Qixuan
Zhou, Yonghao
Gao, Wei
Source :
International Journal of Hydrogen Energy. Aug2019, Vol. 44 Issue 40, p22620-22631. 12p.
Publication Year :
2019

Abstract

Taking maximum flame propagation velocity, maximum explosion pressure, maximum rate of pressure rise and time-average of rising pressure impulse as index, this paper is aimed at evaluating the inerting effects of carbon dioxide on confined hydrogen explosion by varying initial pressure, carbon dioxide addition and equivalence ratio. The results indicated that under enhancing hydrodynamic instability, the stronger flame destabilization occurs with the increase of initial pressure. At Φ = 0.8 and Φ = 1.0, the destabilization effect of thermodiffusive instability continues to increase with the increase of carbon dioxide addition. At all equivalence ratios, the destabilization effect of hydrodynamic instability decreases monotonously with the increase of carbon dioxide addition. All of maximum flame propagation velocity, maximum explosion pressure, maximum rate of pressure rise and time-average of rising pressure impulse reach the peak value at Φ = 1.5, and decrease significantly with increasing carbon dioxide addition. The inerting effect of carbon dioxide could be attributed to the reduction of thermal diffusivity, flame temperature and active radicals. The chemical effect of carbon dioxide reaches the peak value at Φ = 1.0. With the increase of carbon dioxide addition, the chemical effect continues to decrease at Φ = 0.8 and Φ = 1.0, and increase monotonously at Φ = 2.5. • Effects of carbon dioxide addition on flame characteristics are analyzed. • Inerting effect of carbon dioxide is assessed using four evaluation parameters. • Inerting mechanism of carbon dioxide on hydrogen explosion is revealed. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03603199
Volume :
44
Issue :
40
Database :
Academic Search Index
Journal :
International Journal of Hydrogen Energy
Publication Type :
Academic Journal
Accession number :
138012124
Full Text :
https://doi.org/10.1016/j.ijhydene.2019.04.181