Oblique detonation structures induced by the wedge in the supersonic combustible gas mixtures are simulated numerically. The results show that the stationary oblique detonation structures are influenced by the gas flow Mach number, and a novel critical oblique detonation structure, which is characterized by a more complicated wave system, appears in the low Mach number cases. By introducing the inflow disturbance, its nonstationary evolution process is illustrated and its stability is verified
High-fidelity numerical simulations using a Graphics Processing Unit (GPU)-based solver are performe...
The prompt oblique detonation wave (PODW) sustained by a finite-length wedge is investigated by nume...
Two-dimensional, oblique detonation waves (ODWs) in a stoichiometric hydrogen-air mixture are simula...
The structure of an oblique detonation wave (ODW) induced by a wedge is investigated via numerical s...
The results of a numerical study of premixed Hydrogen-air flows ignition by an oblique shock wave (O...
The wedge-induced oblique detonation wave (ODW) at low inflow Mach number is investigated via Rankin...
Oblique detonation engines have significant potential as air-breathing propulsion units because they...
Oblique detonations induced by two-dimensional, semi-infinite wedges are simulated by solving numeri...
Pressure-gain combustion has gained attention for airbreathing ramjet engine applications owing to i...
In studying the detonation phenomenon in gas mixtures, much attention is traditionally paid to inves...
Two-dimensional, oblique detonation waves (ODWs) in a stoichiometric hydrogen-air mixture are simula...
In this study, numerical simulations using the inviscid Euler equations with one-step Arrhenius chem...
Oblique detonation waves (ODWs) have been studied widely to facilitate their employment in hypersoni...
Wedge-induced oblique detonation waves (ODWs) have been studied widely, but their interactions with ...
Oblique detonation waves are simulated to study the evolution of their morphology as gasdynamic and ...
High-fidelity numerical simulations using a Graphics Processing Unit (GPU)-based solver are performe...
The prompt oblique detonation wave (PODW) sustained by a finite-length wedge is investigated by nume...
Two-dimensional, oblique detonation waves (ODWs) in a stoichiometric hydrogen-air mixture are simula...
The structure of an oblique detonation wave (ODW) induced by a wedge is investigated via numerical s...
The results of a numerical study of premixed Hydrogen-air flows ignition by an oblique shock wave (O...
The wedge-induced oblique detonation wave (ODW) at low inflow Mach number is investigated via Rankin...
Oblique detonation engines have significant potential as air-breathing propulsion units because they...
Oblique detonations induced by two-dimensional, semi-infinite wedges are simulated by solving numeri...
Pressure-gain combustion has gained attention for airbreathing ramjet engine applications owing to i...
In studying the detonation phenomenon in gas mixtures, much attention is traditionally paid to inves...
Two-dimensional, oblique detonation waves (ODWs) in a stoichiometric hydrogen-air mixture are simula...
In this study, numerical simulations using the inviscid Euler equations with one-step Arrhenius chem...
Oblique detonation waves (ODWs) have been studied widely to facilitate their employment in hypersoni...
Wedge-induced oblique detonation waves (ODWs) have been studied widely, but their interactions with ...
Oblique detonation waves are simulated to study the evolution of their morphology as gasdynamic and ...
High-fidelity numerical simulations using a Graphics Processing Unit (GPU)-based solver are performe...
The prompt oblique detonation wave (PODW) sustained by a finite-length wedge is investigated by nume...
Two-dimensional, oblique detonation waves (ODWs) in a stoichiometric hydrogen-air mixture are simula...