Interest in numerical combustion is growing among applied mathematicians, physicists, chemists, engine manufacturers and many industrialists. This proceedings volume contains nine invited lectures and twenty seven contributions carefully selected by the editors. The major themes are numerical simulation of transsonic and supersonic combustion phenomena, the study of supersonic reacting mixing layers, and turbulent combustion. Emphasis is laid on hyperbolic models and on numerical simulations of hydrocarbon planes with a complete set of chemical reactions carried out in two-dimensional geometries as well as on complex reactive flow simulations
Abstract: Numerical simulation of supersonic combustion of hydrogen in air has been done using point...
The paper discusses the development of numerical simulations of rocket combustion chambers the last ...
From the analysis of the physics of supersonic combustion, a new subgrid scale model (ISCM) for Larg...
The articles in this volume treat various problems in combustion science that are of importance in a...
An important new area of current research in combustion science is reviewed in the contributions to ...
In relation to current efforts devoted to the development of a supersonic air-breathing propulsion s...
Combustion is an important phenomenon in many engineering applications; com-bustion of hydrocarbons ...
Turbulent combustion is the basic physical phenomenon responsible for efficient energy release by an...
Supersonic combustion is an advanced technology for the next generation of aerospace vehicles. In th...
A turbulence model that calculates the turbulent Prandtl and Schmidt numbers as part of the solution...
Turbulent combustion sits at the interface of two important nonlinear, multiscale phenomena: chemist...
Invited seminar given in the Department of Aerospace Engineering at Texas A&M University. Accurate ...
Analysis and numerical solution of supersonic complex-chemistry reactive flows. Study of the flame s...
Combustion is a complex phenomenon of interest that combines chemical reactions and turbulent flows....
The physical phenomena involved when a supersonic flow undergoes chemical reaction are discussed. De...
Abstract: Numerical simulation of supersonic combustion of hydrogen in air has been done using point...
The paper discusses the development of numerical simulations of rocket combustion chambers the last ...
From the analysis of the physics of supersonic combustion, a new subgrid scale model (ISCM) for Larg...
The articles in this volume treat various problems in combustion science that are of importance in a...
An important new area of current research in combustion science is reviewed in the contributions to ...
In relation to current efforts devoted to the development of a supersonic air-breathing propulsion s...
Combustion is an important phenomenon in many engineering applications; com-bustion of hydrocarbons ...
Turbulent combustion is the basic physical phenomenon responsible for efficient energy release by an...
Supersonic combustion is an advanced technology for the next generation of aerospace vehicles. In th...
A turbulence model that calculates the turbulent Prandtl and Schmidt numbers as part of the solution...
Turbulent combustion sits at the interface of two important nonlinear, multiscale phenomena: chemist...
Invited seminar given in the Department of Aerospace Engineering at Texas A&M University. Accurate ...
Analysis and numerical solution of supersonic complex-chemistry reactive flows. Study of the flame s...
Combustion is a complex phenomenon of interest that combines chemical reactions and turbulent flows....
The physical phenomena involved when a supersonic flow undergoes chemical reaction are discussed. De...
Abstract: Numerical simulation of supersonic combustion of hydrogen in air has been done using point...
The paper discusses the development of numerical simulations of rocket combustion chambers the last ...
From the analysis of the physics of supersonic combustion, a new subgrid scale model (ISCM) for Larg...