AbstractA method for predicting filtered chemical species concentrations and filtered reaction rates in large-eddy simulations of nonpremixed, nonisothermal, turbulent reacting flows has been previously demonstrated to be,quite accurate for higher Damköhler numbers and simple chemistry. The method extends quasi-steady flamelet concepts to model reactions that occur at lengths smaller than those resolved on the numerical grid. In this paper, the method is more fully tested using predictions of filtered mass fractions, temperatures, and reaction rates in an incompressible scalar mixing layer. One- and two-step reactions are considered, with activation temperatures and stoichiometric mixture fractions typical of reactions that occur in natural...
Large eddy simulation (LES) is conducted of a turbulent piloted nonpremixed methane jet flame. This ...
A methodology termed the “filtered density function” (FDF) is developed and implemented for large ed...
Large eddy simulation (LES) of a partially pre-mixed, swirl-stabilised flame is performed using atra...
AbstractA method for predicting filtered chemical species concentrations and filtered reaction rates...
Abstract. A method for predicting filtered chemical species concentrations and filtered reaction rat...
Turbulent combustion models approximate the interaction between turbulence, molecular transport and ...
Thesis (Ph. D.)--University of Washington, 1996A computational algorithm is described for Direct Num...
Thesis (Ph. D.)--University of Washington, 1996A computational algorithm is described for Direct Num...
Work on understanding the mechanisms of mixing and reaction in high speed turbulent reacting flows w...
A new computational filtered density function (FDF) methodology is developed for large\ud eddy simul...
A new computational filtered density function (FDF) methodology is developed for large\ud eddy simul...
Large Eddy Simulations (LES) of a partially premixed, swirl-stabilised flame are performedusing a tr...
Flamelet based methods assume thin flame structures with significantly smaller time scales compared ...
In the past decade, Large Eddy Simulation (LES) has been increasingly and successfully applied to bo...
The primary objective of this research is to extend current capabilities of Large Eddy Simulations (...
Large eddy simulation (LES) is conducted of a turbulent piloted nonpremixed methane jet flame. This ...
A methodology termed the “filtered density function” (FDF) is developed and implemented for large ed...
Large eddy simulation (LES) of a partially pre-mixed, swirl-stabilised flame is performed using atra...
AbstractA method for predicting filtered chemical species concentrations and filtered reaction rates...
Abstract. A method for predicting filtered chemical species concentrations and filtered reaction rat...
Turbulent combustion models approximate the interaction between turbulence, molecular transport and ...
Thesis (Ph. D.)--University of Washington, 1996A computational algorithm is described for Direct Num...
Thesis (Ph. D.)--University of Washington, 1996A computational algorithm is described for Direct Num...
Work on understanding the mechanisms of mixing and reaction in high speed turbulent reacting flows w...
A new computational filtered density function (FDF) methodology is developed for large\ud eddy simul...
A new computational filtered density function (FDF) methodology is developed for large\ud eddy simul...
Large Eddy Simulations (LES) of a partially premixed, swirl-stabilised flame are performedusing a tr...
Flamelet based methods assume thin flame structures with significantly smaller time scales compared ...
In the past decade, Large Eddy Simulation (LES) has been increasingly and successfully applied to bo...
The primary objective of this research is to extend current capabilities of Large Eddy Simulations (...
Large eddy simulation (LES) is conducted of a turbulent piloted nonpremixed methane jet flame. This ...
A methodology termed the “filtered density function” (FDF) is developed and implemented for large ed...
Large eddy simulation (LES) of a partially pre-mixed, swirl-stabilised flame is performed using atra...