2023
DOI: 10.1017/jfm.2023.512
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Direct detonation initiation in hydrogen/air mixture: effects of compositional gradient and hotspot condition

Xiongbin Jia,
Yong Xu,
Hongtao Zheng
et al.

Abstract: Two-dimensional simulations are conducted to investigate the direct initiation of cylindrical detonation in hydrogen/air mixtures with detailed chemistry. The effects of hotspot condition and mixture composition gradient on detonation initiation are studied. Different hotspot pressures and compositions are first considered in the uniform mixture. It is found that detonation initiation fails for low hotspot pressures and the critical regime dominates with high hotspot pressures. Detonation is directly initiated… Show more

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Cited by 5 publications
(1 citation statement)
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“…According to Fig. 6(a), the detonation front propagation consists of two main stages: 60,71 (I) the no-cell stage, where the overdriven detonation initially decays, and (II) the cell-growing stage (x/D i > 260), where the front speed decays to CJ values. In this stage, TWs, normal to the direction of propagation, appear as a result of the cellular instability, leading to the growth of cells as the detonation front expands radially.…”
Section: B Direct Initiation Of Hydrogen Detonation In a Cylindrical ...mentioning
confidence: 99%
“…According to Fig. 6(a), the detonation front propagation consists of two main stages: 60,71 (I) the no-cell stage, where the overdriven detonation initially decays, and (II) the cell-growing stage (x/D i > 260), where the front speed decays to CJ values. In this stage, TWs, normal to the direction of propagation, appear as a result of the cellular instability, leading to the growth of cells as the detonation front expands radially.…”
Section: B Direct Initiation Of Hydrogen Detonation In a Cylindrical ...mentioning
confidence: 99%