High-fidelity numerical simulations using a Graphics Processing Unit (GPU)-based solver are performed to investigate oblique detonations induced by a two-dimensional, semi-infinite wedge using an idealized model with the reactive Euler equations coupled with one-step Arrhenius or two-step induction-reaction kinetics. The novelty of this work lies in the analysis of chemical reaction sensitivity (characterized by the activation energy Ea and heat release rate constant kR) on the two types of oblique detonation formation, namely, the abrupt onset with a multi-wave point and a smooth transition with a curved shock. Scenarios with various inflow Mach number regimes M0 and wedge angles θ are considered. The conditions for these two formatio...
In this study, numerical simulations using the inviscid Euler equations with one-step Arrhenius chem...
The initiation features of two-dimensional, oblique detonations from a wedge in a stoichiometric hyd...
The understanding of oblique detonation dynamics has both inherent basic research value for high-spe...
The concept of using oblique detonation waves for high efficiency propulsion systems have recently g...
Oblique detonations induced by two-dimensional, semi-infinite wedges are simulated by solving numeri...
Two-dimensional, oblique detonation waves (ODWs) in a stoichiometric hydrogen-air mixture are simula...
Oblique detonation waves (ODWs) have been studied widely to facilitate their employment in hypersoni...
The results of a numerical study of premixed Hydrogen-air flows ignition by an oblique shock wave (O...
Pressure-gain combustion has gained attention for airbreathing ramjet engine applications owing to i...
A numerical simulation solving the Reynolds-averaged Navier-Stokes equation is presented to investig...
To determine the shock/combustion interaction structure of a wedge-induced oblique detonation wave, ...
In this study, the surface instability of oblique detonation waves (ODW) formed by two-dimensional, ...
Two-dimensional, oblique detonation waves (ODWs) in a stoichiometric hydrogen-air mixture are simula...
Oblique detonation engines have significant potential as air-breathing propulsion units because they...
A normal detonation wave in a gaseous mixture is a transient, multidimensional structure containing ...
In this study, numerical simulations using the inviscid Euler equations with one-step Arrhenius chem...
The initiation features of two-dimensional, oblique detonations from a wedge in a stoichiometric hyd...
The understanding of oblique detonation dynamics has both inherent basic research value for high-spe...
The concept of using oblique detonation waves for high efficiency propulsion systems have recently g...
Oblique detonations induced by two-dimensional, semi-infinite wedges are simulated by solving numeri...
Two-dimensional, oblique detonation waves (ODWs) in a stoichiometric hydrogen-air mixture are simula...
Oblique detonation waves (ODWs) have been studied widely to facilitate their employment in hypersoni...
The results of a numerical study of premixed Hydrogen-air flows ignition by an oblique shock wave (O...
Pressure-gain combustion has gained attention for airbreathing ramjet engine applications owing to i...
A numerical simulation solving the Reynolds-averaged Navier-Stokes equation is presented to investig...
To determine the shock/combustion interaction structure of a wedge-induced oblique detonation wave, ...
In this study, the surface instability of oblique detonation waves (ODW) formed by two-dimensional, ...
Two-dimensional, oblique detonation waves (ODWs) in a stoichiometric hydrogen-air mixture are simula...
Oblique detonation engines have significant potential as air-breathing propulsion units because they...
A normal detonation wave in a gaseous mixture is a transient, multidimensional structure containing ...
In this study, numerical simulations using the inviscid Euler equations with one-step Arrhenius chem...
The initiation features of two-dimensional, oblique detonations from a wedge in a stoichiometric hyd...
The understanding of oblique detonation dynamics has both inherent basic research value for high-spe...