This thesis provides detailed numerical results of a reacting shock-bubble interaction. Shock-induced ignition of a hydrogen-oxygen gas mixture and the subsequent reaction wave, either detonation or deflagration, are studied in detail. Complex combustion phenomena, like deflagration-to-detonation or simultaneous ignition, are observed and analyzed. The first three-dimensional reacting shock-bubble interaction provides a deeper understanding of the interaction between reaction kinetics and three-dimensional hydrodynamic instabilities.
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This thesis provides detailed numerical results of a reacting shock-bubble interaction. Shock-induced ignition of a hydrogen-oxygen gas mixture and the subsequent reaction wave, either detonation or deflagration, are studied in detail. Complex combustion phenomena, like deflagration-to-detonation or simultaneous ignition, are observed and analyzed. The first three-dimensional reacting shock-bubble interaction provides a deeper understanding of the interaction between reaction kinetics and three-...
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