1 |
Study on nonpremixed methane/air combustion from flame structure and NOX emission aspect for different burner head structures Buyukakin MK, Oztuna S International Journal of Energy Research, 43(10), 5421, 2019 |
2 |
Assessing LES models based on tabulated chemistry for the simulation of Diesel spray combustion Tillou J, Michel JB, Angelberger C, Veynante D Combustion and Flame, 161(2), 525, 2014 |
3 |
On the formation and early evolution of soot in turbulent nonpremixed flames Bisetti F, Blanquart G, Mueller ME, Pitsch H Combustion and Flame, 159(1), 317, 2012 |
4 |
One-dimensional turbulence-based closure with extinction and reignition Ranganath B, Echekki T Combustion and Flame, 154(1-2), 23, 2008 |
5 |
Prediction of extinction and reignition in nonpremixed turbulent flames using a flamelet/progress variable model 1. A priori study and presumed PDF closure Ihme M, Pitsch H Combustion and Flame, 155(1-2), 70, 2008 |
6 |
Prediction of extinction and reignition in nonpremixed turbulent flames using a flamelet/progress variable model 2. Application in LES of Sandia flames D and E Ihme M, Pitsch H Combustion and Flame, 155(1-2), 90, 2008 |
7 |
Rate-ratio asymptotic analysis of autoignition of n-heptane in laminar nonpremixed flows Seshadri K, Peters N, Paczko G Combustion and Flame, 146(1-2), 131, 2006 |
8 |
Enhanced radiation output from foam burners operating with a nonpremixed flame Kamal MM, Mohamad AA Combustion and Flame, 140(3), 233, 2005 |
9 |
Matching conditional moments in PDF modelling of nonpremixed combustion Klimenko AY Combustion and Flame, 143(4), 369, 2005 |
10 |
Combustion enhancement of a gas flare using acoustical excitation El Behery RE, Mohamad AA, Kamal MM Combustion Science and Technology, 177(9), 1627, 2005 |