Hypersonic projectiles whose speed was beyond the Chapman-Jouguet (C-J) detonation speed, were fired into stoichiometric hydrogen-oxygen premixed gases. The flowfield around the projectile was visualized using a gated CCD camera. A steady-state detonation wave was generated around the projectile. With respect to the flow Mach number behind the wave front, the whole detonation-wave was partitioned into four parts ; (i) strong overdriven detonation wave, (ii) weak overdriven detonation wave, (iii) quasi C-J detonation wave, and (iv) C-J detonation wave. It has been found that a rarefaction wave generated at the projectile shoulder has a significant effect on the structure of the detonation wave
The paper presents the results of a numerical study of the initiation of oblique detonation modes by...
Experiments were conducted in order to investigate a behavior of comcustion wave when a shock wave w...
Oblique detonation engines have significant potential as air-breathing propulsion units because they...
Recently, the interest of hypersonic propulsion was revived and Oblique Detonation Waves (ODW\u27s) ...
This study is concerned with the theoretical analysis for the wave interaction between a propagating...
Detonation waves are supersonic combustion waves that have a multi-shock front structure followed by...
An experimental investigation of gaseous detonations initiated and stabilized by high-speed spherica...
Detonation-based propulsion systems are desired due to their potential for thermodynamic cycle effic...
This paper establishes the investigation of a propagating detonation wave from a pre-detonator into ...
This study reports the first experiments of a large-scale hydrogen-fueled oblique detonation engine ...
We studied experimentally the shock waves and combustion waves generated by a hypersonic spherical p...
Abstract: In the present study, propagation of detonation in a supersonic combustible flow was exper...
This work outlines the experimental study of detonation wave propagation from a linear extension of ...
A detonation wave produced in a combustible gaseous mixture might cause serious damages by interacti...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77085/1/AIAA-1988-441-275.pd
The paper presents the results of a numerical study of the initiation of oblique detonation modes by...
Experiments were conducted in order to investigate a behavior of comcustion wave when a shock wave w...
Oblique detonation engines have significant potential as air-breathing propulsion units because they...
Recently, the interest of hypersonic propulsion was revived and Oblique Detonation Waves (ODW\u27s) ...
This study is concerned with the theoretical analysis for the wave interaction between a propagating...
Detonation waves are supersonic combustion waves that have a multi-shock front structure followed by...
An experimental investigation of gaseous detonations initiated and stabilized by high-speed spherica...
Detonation-based propulsion systems are desired due to their potential for thermodynamic cycle effic...
This paper establishes the investigation of a propagating detonation wave from a pre-detonator into ...
This study reports the first experiments of a large-scale hydrogen-fueled oblique detonation engine ...
We studied experimentally the shock waves and combustion waves generated by a hypersonic spherical p...
Abstract: In the present study, propagation of detonation in a supersonic combustible flow was exper...
This work outlines the experimental study of detonation wave propagation from a linear extension of ...
A detonation wave produced in a combustible gaseous mixture might cause serious damages by interacti...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77085/1/AIAA-1988-441-275.pd
The paper presents the results of a numerical study of the initiation of oblique detonation modes by...
Experiments were conducted in order to investigate a behavior of comcustion wave when a shock wave w...
Oblique detonation engines have significant potential as air-breathing propulsion units because they...