A detonation tube was built to study the deflagration-to-detonation transition (DDT) process and the impulse generated when combustion products exhaust into the atmosphere. The reactants used were stoichiometric ethylene and oxygen mixture with varying amounts of nitrogen present as diluent. The effects of varying the initial pressure from 30 kPa to 100 kPa were studied, as were the effects of varying the diluent concentration from 0% to 73.8% of the total mixture. Measurements were carried out with the tube free of obstacles and with three different obstacle configurations. Each obstacle configuration had a blockage ratio of 0.43. It was found that the inclusion of obstacles dramatically lowered the DDT times and distances as compared ...
The development of an air-breathing Pulsed Detonation Engine requires the improvement of Deflagratio...
PresentationIn the process of deflagration-to-detonation transition (DDT) in reactive gases, the fla...
Transition processes from deflagration to detonation waves in stoichiometric oxyhydrogen mixtures di...
A detonation tube was built to study the deflagration-to-detonation transition (DDT) process and the...
This report is an account of research carried out from January to June 2000 on the feasibility of de...
Most of the previous work has been guided towards the understanding of this phenomenon under a unifo...
As pulse detonation engine development matures, it becomes increasingly important to consider how pr...
The phenomenon of pulse combustion of hydrocarbon-oxygen mixtures was investigated experimentally. A...
Thrust from a multicycle pulse detonation engine operating at practical flight altitudes will vary w...
Experiments measuring the single-cycle impulse from detonation tubes with nozzles were conducted by ...
This study analyses the processes of detonation and transition from deflagration to detonation (DDT)...
Research at the Explosion Dynamics Laboratories at Caltech over the past three years under an ONR c...
The gas explosion test facility (GETF) previously used to study detonability of natural gas (NG)-air...
AbstractA simple method of detonation transmission from a small tube to a large area is presented. T...
The conditions that are required for DDT are studied in the present thesis by focusing on the final ...
The development of an air-breathing Pulsed Detonation Engine requires the improvement of Deflagratio...
PresentationIn the process of deflagration-to-detonation transition (DDT) in reactive gases, the fla...
Transition processes from deflagration to detonation waves in stoichiometric oxyhydrogen mixtures di...
A detonation tube was built to study the deflagration-to-detonation transition (DDT) process and the...
This report is an account of research carried out from January to June 2000 on the feasibility of de...
Most of the previous work has been guided towards the understanding of this phenomenon under a unifo...
As pulse detonation engine development matures, it becomes increasingly important to consider how pr...
The phenomenon of pulse combustion of hydrocarbon-oxygen mixtures was investigated experimentally. A...
Thrust from a multicycle pulse detonation engine operating at practical flight altitudes will vary w...
Experiments measuring the single-cycle impulse from detonation tubes with nozzles were conducted by ...
This study analyses the processes of detonation and transition from deflagration to detonation (DDT)...
Research at the Explosion Dynamics Laboratories at Caltech over the past three years under an ONR c...
The gas explosion test facility (GETF) previously used to study detonability of natural gas (NG)-air...
AbstractA simple method of detonation transmission from a small tube to a large area is presented. T...
The conditions that are required for DDT are studied in the present thesis by focusing on the final ...
The development of an air-breathing Pulsed Detonation Engine requires the improvement of Deflagratio...
PresentationIn the process of deflagration-to-detonation transition (DDT) in reactive gases, the fla...
Transition processes from deflagration to detonation waves in stoichiometric oxyhydrogen mixtures di...