In this talk we present results of a numerical study on gaseous detonation ignition via converging shock waves in reflectors. In our study, chemical kinetics is modelled by a three-step chain-branching mechanism possessing an explosion limit. According to our simulations, as soon as the shock reflects from the apex of the domain, the temperature and pressure behind it can exceed the explosion limit, thus initiating rapid burning. However, the subsequent expansion of the reflected shock might eventually inhibit detonation ignition. To explore further the interplay between these mechanisms, we discuss results of parametric studies with respect to confinement geometries and present estimates for the minimum shock strength required for detonati...
Understanding the fundamental processes of detonation is essential for both energy and safety issues...
This paper contributes to the topic of unphysical one-cell-per-time-step travelling combustion wave ...
A detonation is a combustion-driven shock wave. Typically, a detonation will consist of an inert sho...
In this article, we report on numerical simulations of the evolution of gaseous detonation waves in ...
n this talk we present numerical results of detonation transmission in mixtures containing chemical ...
Deflagration-to-detonation transition can occur in industrial explosions involving highly reactive g...
this article the behavior of the solution with varying ratio of these two scales is studied. This is...
This thesis examines two dynamic parameters of gaseous detonations, critical energy and cell size. T...
Abstract: A theoretical analysis of the direct initiation of gaseous detonations by an energy source...
A theoretical analysis of the direct initiation of gaseous detonations by an energy source has been ...
There is a definite inconsistency between the classical ZND theory of detonation and contemporary ex...
The dynamics of ignition between a contact surface and a shock wave is investigated using a one-ste...
The paper presents results of numerical and experimental investigation of mixture ignition and deton...
This article shows that, unlike the situation in many other combustion problems, the progress toward...
The process of planar detonation ignition, induced by a constant-velocity piston or equivalently by ...
Understanding the fundamental processes of detonation is essential for both energy and safety issues...
This paper contributes to the topic of unphysical one-cell-per-time-step travelling combustion wave ...
A detonation is a combustion-driven shock wave. Typically, a detonation will consist of an inert sho...
In this article, we report on numerical simulations of the evolution of gaseous detonation waves in ...
n this talk we present numerical results of detonation transmission in mixtures containing chemical ...
Deflagration-to-detonation transition can occur in industrial explosions involving highly reactive g...
this article the behavior of the solution with varying ratio of these two scales is studied. This is...
This thesis examines two dynamic parameters of gaseous detonations, critical energy and cell size. T...
Abstract: A theoretical analysis of the direct initiation of gaseous detonations by an energy source...
A theoretical analysis of the direct initiation of gaseous detonations by an energy source has been ...
There is a definite inconsistency between the classical ZND theory of detonation and contemporary ex...
The dynamics of ignition between a contact surface and a shock wave is investigated using a one-ste...
The paper presents results of numerical and experimental investigation of mixture ignition and deton...
This article shows that, unlike the situation in many other combustion problems, the progress toward...
The process of planar detonation ignition, induced by a constant-velocity piston or equivalently by ...
Understanding the fundamental processes of detonation is essential for both energy and safety issues...
This paper contributes to the topic of unphysical one-cell-per-time-step travelling combustion wave ...
A detonation is a combustion-driven shock wave. Typically, a detonation will consist of an inert sho...