In this study, the surface instability of oblique detonation waves (ODW) formed by two-dimensional, semi-infinite wedges is investigated numerically by solving the unsteady Euler equations with a two-step induction–reaction kinetic model. The chemical kinetic model introduces two length scales, namely, induction and reaction lengths, which can be varied independently to change the sensitivity of the chemical reaction and also the shape of the reaction zone structure. The present numerical results elucidate that both smooth and cellular ODW surfaces may appear after the initiation, and the surface becomes unstable when the reaction zone length decreases while keeping the induction zone the same as observed in normal detonation wave propagati...
A numerical simulation solving the Reynolds-averaged Navier-Stokes equation is presented to investig...
High-fidelity numerical simulations using a Graphics Processing Unit (GPU)-based solver are performe...
Oblique detonation waves (ODWs) in stoichiometric acetylene-oxygen mixtures, highly diluted by 81–90...
In this study, the surface instability of oblique detonation waves (ODW) formed by two-dimensional, ...
A numerical study was performed to investigate the detailed effects of activation energy Ea on the o...
Initiation of an oblique detonation wave (ODW) results in a near-field region of curved detonation w...
Oblique detonations induced by two-dimensional, semi-infinite wedges are simulated by solving numeri...
Two-dimensional, wedge-induced oblique detonation waves (ODWs) subject to periodic inflow are simula...
Wedge-induced oblique detonation waves (ODWs) have been studied widely, but their interactions with ...
Oblique detonation waves (ODWs) have been studied widely to facilitate their employment in hypersoni...
The stability of oblique detonation waves (ODWs) is a fundamental problem, and resistance of ODWs ag...
The concept of using oblique detonation waves for high efficiency propulsion systems have recently g...
The understanding of oblique detonation dynamics has both inherent basic research value for high-spe...
Oblique detonation waves (ODWs) have been widely studied due to their application potential for airb...
The initiation features of two-dimensional, oblique detonations from a wedge in a stoichiometric hyd...
A numerical simulation solving the Reynolds-averaged Navier-Stokes equation is presented to investig...
High-fidelity numerical simulations using a Graphics Processing Unit (GPU)-based solver are performe...
Oblique detonation waves (ODWs) in stoichiometric acetylene-oxygen mixtures, highly diluted by 81–90...
In this study, the surface instability of oblique detonation waves (ODW) formed by two-dimensional, ...
A numerical study was performed to investigate the detailed effects of activation energy Ea on the o...
Initiation of an oblique detonation wave (ODW) results in a near-field region of curved detonation w...
Oblique detonations induced by two-dimensional, semi-infinite wedges are simulated by solving numeri...
Two-dimensional, wedge-induced oblique detonation waves (ODWs) subject to periodic inflow are simula...
Wedge-induced oblique detonation waves (ODWs) have been studied widely, but their interactions with ...
Oblique detonation waves (ODWs) have been studied widely to facilitate their employment in hypersoni...
The stability of oblique detonation waves (ODWs) is a fundamental problem, and resistance of ODWs ag...
The concept of using oblique detonation waves for high efficiency propulsion systems have recently g...
The understanding of oblique detonation dynamics has both inherent basic research value for high-spe...
Oblique detonation waves (ODWs) have been widely studied due to their application potential for airb...
The initiation features of two-dimensional, oblique detonations from a wedge in a stoichiometric hyd...
A numerical simulation solving the Reynolds-averaged Navier-Stokes equation is presented to investig...
High-fidelity numerical simulations using a Graphics Processing Unit (GPU)-based solver are performe...
Oblique detonation waves (ODWs) in stoichiometric acetylene-oxygen mixtures, highly diluted by 81–90...