Recently two types of three-dimensional (3D) structure of gaseous detonation have been documented: rectangular and diagonal modes easily distinguishable from soot records. This paper presents pressure measurements recorded along the central axis of the cellular structure. The pressure records are achieved rd by using piezoelectric gauges flush-mounted with respect to the surface of the soot-covered plate located in the detonation tube. The low pressure reactive mixture used (H-2, O-2, Ar; Equivalence ratio = 1) is ignited in a square cross-section tube. The detonation tube is operated in the shock tube mode. The time evolution of the local pressure exhibits several pressure peaks depending on the type of 3D structure and on the position in ...
The study of detonations and their interactions is vital for the understanding of the high-speed flo...
A propagation of detonation wave shows particularly interesting phenomena, since the detonation wave...
Pressure and temperature behind a detonation wave are extremely high and have a potential to cause s...
Experimental results presented in this work enable us to classify the three-dimensional structure of...
A detonation wave produced in a combustible gaseous mixture might cause serious damages by interacti...
In this article we present a detailed numerical study of three-dimensional structures in gaseous det...
Three-dimensional structures of detonation wave propagating in circular tube was investigated using ...
The tridimensional unsteady character of the flow field for detonations has been established about t...
The tridimensional unsteady character of the flow field for detonations has been established about t...
In this paper, the cellular structure of a two-dimensional detonation wave in a low pressure H2/O2/A...
Experiments were conducted in order to investigate behaviors of a detonation wave propagating into t...
This paper reports on two-dimensional numerical simulation of cellular detonation wave in a / / mixt...
A detonation-driven shock tube firstly designed by H.-R. Yu, is considered as a useful facilities ca...
Detonation waves in gaseous reactive mixtures have been known to exhibit multidimensional structure ...
A detonation is a combustion-driven shock wave. Typically, a detonation will consist of an inert sho...
The study of detonations and their interactions is vital for the understanding of the high-speed flo...
A propagation of detonation wave shows particularly interesting phenomena, since the detonation wave...
Pressure and temperature behind a detonation wave are extremely high and have a potential to cause s...
Experimental results presented in this work enable us to classify the three-dimensional structure of...
A detonation wave produced in a combustible gaseous mixture might cause serious damages by interacti...
In this article we present a detailed numerical study of three-dimensional structures in gaseous det...
Three-dimensional structures of detonation wave propagating in circular tube was investigated using ...
The tridimensional unsteady character of the flow field for detonations has been established about t...
The tridimensional unsteady character of the flow field for detonations has been established about t...
In this paper, the cellular structure of a two-dimensional detonation wave in a low pressure H2/O2/A...
Experiments were conducted in order to investigate behaviors of a detonation wave propagating into t...
This paper reports on two-dimensional numerical simulation of cellular detonation wave in a / / mixt...
A detonation-driven shock tube firstly designed by H.-R. Yu, is considered as a useful facilities ca...
Detonation waves in gaseous reactive mixtures have been known to exhibit multidimensional structure ...
A detonation is a combustion-driven shock wave. Typically, a detonation will consist of an inert sho...
The study of detonations and their interactions is vital for the understanding of the high-speed flo...
A propagation of detonation wave shows particularly interesting phenomena, since the detonation wave...
Pressure and temperature behind a detonation wave are extremely high and have a potential to cause s...