Spherically expanding turbulent premixed hydrogen-air flames are computed using the Reynolds-Averaged Navier Stokes (RANS) approach. The mean reaction rate is modelled using unstrained and strained flamelets, and an algebraic model. Since the temperature and mass fraction evolve differently in hydrogen flames because of non-unity Lewis numbers, two reaction progress variables are used in the calculations. The computed turbulent burning velocity is compared to measured values to validate the computational models. The strained flamelets model captured the experimental variations quite well while the other two models overestimated the burning velocity of stoichiometric hydrogen-air flames. All of these models underestimated the burning velocit...
In this paper, we present some experimental and analytical model results of two-component fuel mixtu...
Modeling hydrogen-air flames is challenging for several reasons. Due to its high diffusivity and rea...
Computational Fluid Dynamics solvers are developed for explosion modelling and hazards analysis in H...
During a severe accident in a nuclear power plant, hydrogen can be generated, leading to risks of po...
A statistical analysis is conducted for turbulent hydrogen-air premixed flames at a range of Karlovi...
Unsteady three-dimensional Direct Numerical Simulations of seven statistically one-dimensional, plan...
In this study, we investigate some preliminary reaction model predictions analytically in comparison...
Purpose - The present paper is about numerical simulations of one- and two-dimensional lean hydrogen...
Purpose - The present paper is about numerical simulations of one- and two-dimensional lean hydrogen...
Purpose - The present paper is about numerical simulations of one- and two-dimensional lean hydrogen...
Purpose - The present paper is about numerical simulations of one- and two-dimensional lean hydrogen...
Purpose - The present paper is about numerical simulations of one- and two-dimensional lean hydrogen...
A Direct Numerical Simulation (DNS) study of statistically one-dimensional and planar, lean complex-...
Interactions of turbulence, molecular transport, and energy transport, coupled with chemistry play a...
The paper presents numerical simulations of the Sandia / Sydney bluff-body stabilized flame HM1 [1] ...
In this paper, we present some experimental and analytical model results of two-component fuel mixtu...
Modeling hydrogen-air flames is challenging for several reasons. Due to its high diffusivity and rea...
Computational Fluid Dynamics solvers are developed for explosion modelling and hazards analysis in H...
During a severe accident in a nuclear power plant, hydrogen can be generated, leading to risks of po...
A statistical analysis is conducted for turbulent hydrogen-air premixed flames at a range of Karlovi...
Unsteady three-dimensional Direct Numerical Simulations of seven statistically one-dimensional, plan...
In this study, we investigate some preliminary reaction model predictions analytically in comparison...
Purpose - The present paper is about numerical simulations of one- and two-dimensional lean hydrogen...
Purpose - The present paper is about numerical simulations of one- and two-dimensional lean hydrogen...
Purpose - The present paper is about numerical simulations of one- and two-dimensional lean hydrogen...
Purpose - The present paper is about numerical simulations of one- and two-dimensional lean hydrogen...
Purpose - The present paper is about numerical simulations of one- and two-dimensional lean hydrogen...
A Direct Numerical Simulation (DNS) study of statistically one-dimensional and planar, lean complex-...
Interactions of turbulence, molecular transport, and energy transport, coupled with chemistry play a...
The paper presents numerical simulations of the Sandia / Sydney bluff-body stabilized flame HM1 [1] ...
In this paper, we present some experimental and analytical model results of two-component fuel mixtu...
Modeling hydrogen-air flames is challenging for several reasons. Due to its high diffusivity and rea...
Computational Fluid Dynamics solvers are developed for explosion modelling and hazards analysis in H...