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- W2096232778 abstract "Turbulent flame acceleration processes have been studied in a quasi-two-dimensional pulsed detonation combustor (PDC) using schlieren flow visualization, ionization probes, and companion high frequency pressure instrumentation. Experiments were conducted using near stoichiometric propane-air mixtures in a 76.2 mm × 76.2 mm, 1.68 m long modular detonation tube with the windowed combustor under multicyclic conditions within the PDC operating in a valveless mode. The effect of the presence of the flame accelerator was investigated at various stages of the flame acceleration process. Amplification of the leading shock waves through the interaction of the flame accelerator enhances the flame acceleration process owing to the reduction of post-shock induction time and the hydrodynamic instabilities at the baroclinic interface. The internal configuration of the combustor including the flame accelerator plays a major role of the flame acceleration due to this shock amplification pattern. Sequences of schlieren images also show the flow drifting process and the blowdown process confirm that the gasdynamic valves function in the valveless PDC. Performance characterization of valveless pulsed detonation devices is also provided and compared to ramjet devices." @default.
- W2096232778 created "2016-06-24" @default.
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- W2096232778 date "2007-07-08" @default.
- W2096232778 modified "2023-09-25" @default.
- W2096232778 title "Performance Characterization and Schlieren Visualization of Flame Acceleration in Valveless Pulsed Detonation Combustors" @default.
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- W2096232778 doi "https://doi.org/10.2514/6.2007-5077" @default.
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