Starting from a simple kinetic model for a chemical reaction, multi-temperature reactive Euler equations are derived for physical regimes in which evolution is driven by elastic collisions within the same species and mechanical relaxation is faster than the thermal one. The achieved hydrodynamic equations, where all inhomogeneous exchange rates take analytical closed form for simple collision models, are then used for the analysis of the steady shock problem. Results indicate that smooth shock profiles occurring for slightly supersonic flows bifurcate to weak solutions (jump discontinuity followed by a smooth tail) for increasing Mach number
A shock wave structure problem, like the one which can be formulated for the planar detonation wave,...
The problem of an hydrodynamic closure at the Euler level of the complicated set of integro–differen...
The problem of the steady propagation and linear stability of a detonation wave is formulated in the...
A multi-temperature hydrodynamic limit of kinetic equations is employed for the analysis of the stea...
A multi-temperature formal hydrodynamic limit of kinetic equations, based on Grad-type approximation...
Starting from a Boltzmann kinetic model for a gas mixture with bimolecular chemical reaction, hydrod...
The dispersion relation and shock structure of a gas mixture undergoing a bimolecular chemical react...
The present study deals with the extension of the exact and approximate models of the Boltzmann equa...
We present the study of systems of equations governing a steady flow of poly-atomic, heat-conducting...
A multicomponent reacting gas with an arbitrary number of chemical species and one reversible reacti...
A BGK‐type model for a reactive multicomponent gas undergoing chemical bimolecular reactions is here...
summary:Starting from the Grad 13-moment equations for a bimolecular chemical reaction, Navier-Stoke...
It is well known that for increasingly rarefied flowfields, the predictions from continuum formulati...
A multicomponent reacting gas with reversible reactions is studied at a kinetic level with the main...
The shock structure in a gas mixture undergoing a bimolecular chemical reaction is studied by means ...
A shock wave structure problem, like the one which can be formulated for the planar detonation wave,...
The problem of an hydrodynamic closure at the Euler level of the complicated set of integro–differen...
The problem of the steady propagation and linear stability of a detonation wave is formulated in the...
A multi-temperature hydrodynamic limit of kinetic equations is employed for the analysis of the stea...
A multi-temperature formal hydrodynamic limit of kinetic equations, based on Grad-type approximation...
Starting from a Boltzmann kinetic model for a gas mixture with bimolecular chemical reaction, hydrod...
The dispersion relation and shock structure of a gas mixture undergoing a bimolecular chemical react...
The present study deals with the extension of the exact and approximate models of the Boltzmann equa...
We present the study of systems of equations governing a steady flow of poly-atomic, heat-conducting...
A multicomponent reacting gas with an arbitrary number of chemical species and one reversible reacti...
A BGK‐type model for a reactive multicomponent gas undergoing chemical bimolecular reactions is here...
summary:Starting from the Grad 13-moment equations for a bimolecular chemical reaction, Navier-Stoke...
It is well known that for increasingly rarefied flowfields, the predictions from continuum formulati...
A multicomponent reacting gas with reversible reactions is studied at a kinetic level with the main...
The shock structure in a gas mixture undergoing a bimolecular chemical reaction is studied by means ...
A shock wave structure problem, like the one which can be formulated for the planar detonation wave,...
The problem of an hydrodynamic closure at the Euler level of the complicated set of integro–differen...
The problem of the steady propagation and linear stability of a detonation wave is formulated in the...