High performance of an explosive compound with respect to afterburning requires sufficient combustible properties of the explosive, and a careful determination of the most appropriate charge positioning to achieve the desired afterburning effect. Understanding the physical processes of post-detonation afterburning and how these are affected by the surroundings, e.g. the Height of Burst (HoB), facilitates the optimal use of the explosive and also helps in designing protection against it. The use of Large Eddy Simulation (LES) for investigating afterburning properties of an explosive charge can be a cost effective approach to identify the most optimal conditions for subsequent full-scale experiments. Of particular interest are Enhanced Blast ...
The paper presents small-scale experiments with 1-g charges that explore the topic of post-detonatio...
It is common practice to add reactive metal particles to high-explosive formulations ...
Effects of turbulent combustion induced by explosion of a 0.8 kg cylindrical charge of TNT in a 17 m...
High performance of an explosive compound with respect to afterburning requires sufficient combustib...
A hybrid two-phase numerical methodology is used to study the propagation of explosive blast wave fr...
Augmentation of the impact of an explosive is routinely achieved by packing metal particles in the e...
In the field of high explosives, the afterburning corresponds to the combustion processes occurring ...
An investigation of shock–particle interactions in reactive flows is performed using an Eulerian hyd...
International audienceAfter the detonation of an oxygen-deficient homogeneous high explosive, a phas...
Aluminum is seen as an additional source of energy that can be added to propulsion and explosive sys...
Many explosives will release additional energy after detonation as the detonation products mix with ...
This thesis is focused on the shock to detonation transition of aluminized plastic bonded high explo...
En physique des explosifs, la postcombustion désigne la phase de combustion qui intervient après la ...
This research focused on analyzing the effects of aluminum in high explosives such as PBX9501 using ...
Metalized high explosives effectively tailor the explosion impulse at lowered detonation pressures o...
The paper presents small-scale experiments with 1-g charges that explore the topic of post-detonatio...
It is common practice to add reactive metal particles to high-explosive formulations ...
Effects of turbulent combustion induced by explosion of a 0.8 kg cylindrical charge of TNT in a 17 m...
High performance of an explosive compound with respect to afterburning requires sufficient combustib...
A hybrid two-phase numerical methodology is used to study the propagation of explosive blast wave fr...
Augmentation of the impact of an explosive is routinely achieved by packing metal particles in the e...
In the field of high explosives, the afterburning corresponds to the combustion processes occurring ...
An investigation of shock–particle interactions in reactive flows is performed using an Eulerian hyd...
International audienceAfter the detonation of an oxygen-deficient homogeneous high explosive, a phas...
Aluminum is seen as an additional source of energy that can be added to propulsion and explosive sys...
Many explosives will release additional energy after detonation as the detonation products mix with ...
This thesis is focused on the shock to detonation transition of aluminized plastic bonded high explo...
En physique des explosifs, la postcombustion désigne la phase de combustion qui intervient après la ...
This research focused on analyzing the effects of aluminum in high explosives such as PBX9501 using ...
Metalized high explosives effectively tailor the explosion impulse at lowered detonation pressures o...
The paper presents small-scale experiments with 1-g charges that explore the topic of post-detonatio...
It is common practice to add reactive metal particles to high-explosive formulations ...
Effects of turbulent combustion induced by explosion of a 0.8 kg cylindrical charge of TNT in a 17 m...