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- W2065392708 abstract "Numerical simulations were conducted to investigate two types of detonation diffraction phenomena: (1) detonation transmission from a small two-dimensional channel to a large one, both filed with the same ethylene-based mixture; and (2) detonation transition from a small channel filled with a stoichiometic ethylene-oxygen mixture into a large channel filled with a stoichiometic, ethylene-air mixture. The transmission cases show that in the stoichiometic ethylene-oxyge mixture, the detonation originally generated in the small channel, containin eight pairs of triple points (8Λ), successfullytransmits into the large channel, and in the stoichiometric ethylene-air mixture, the detonation from the small channel, containing only four pairs of triple points (4Λ), fails after its transmission into the large channel. In the transition case, the detonation front from the small channel also containing eight pairs of triple points (8Λ), survives its transition into the stoichiometric ethylene-air mixture in the large channel. It is interesting to note that the mixture in the large channel is the same as the mixture used in the transmission case where the detonation fails to transmit into the large channel. After the transition, the triple-point spacing increases from that observed when the detonation was still in the small channel. In all cases, the expansion waves generated at the exit of the small channel weaken the detonation front from its edges. However, the expansion wave is onlyable to equench the detonation in the ethylene-air to ethylene-air case. Also, the reflected shocks from the channel walls can created local regions of high pressure and temperature and, therefore, re-ignite the mixture near the walls. However, the overall effect of the reflected shocks is quite limited in the casees studied here. The significance of these results to research on the pulse detonation engine is also discussed." @default.
- W2065392708 created "2016-06-24" @default.
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- W2065392708 date "2000-01-01" @default.
- W2065392708 modified "2023-10-16" @default.
- W2065392708 title "Detonation transmission and transition in channels of different sizes" @default.
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- W2065392708 doi "https://doi.org/10.1016/s0082-0784(00)80260-x" @default.
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