1 |
A DNS study of the impact of gravity on spherically expanding laminar premixed flames Berger L, Hesse R, Kleinheinz K, Hegetschweiler MJ, Attili A, Beeckmann J, Linteris GT, Pitsch H Combustion and Flame, 216, 412, 2020 |
2 |
Consumption and displacement speeds of stretched premixed flames - Theory and simulations Giannakopoulos GK, Frouzakis CE, Mohan S, Tomboulides AG, Matalon M Combustion and Flame, 208, 164, 2019 |
3 |
Insights into the Bending Effect in Premixed Turbulent Combustion Using the Flame Surface Density Transport Ahmed U, Chakraborty N, Klein M Combustion Science and Technology, 191(5-6), 898, 2019 |
4 |
Early flame propagation of hydrogen enriched methane-air mixtures at quasi laminar conditions in a rapid compression expansion machine Kammermann T, Giannakopoulos GK, Koch J, Soltic P, Boulouchos K International Journal of Hydrogen Energy, 44(49), 27107, 2019 |
5 |
Experimental and numerical study of cap-like lean limit flames in H-2-CH4-air mixtures Zhou Z, Shoshin Y, Hernandez-Perez FE, van Oijen JA, de Goey LPH Combustion and Flame, 189, 212, 2018 |
6 |
A numerical study of laminar flame speed of stratified syngas/air flames Wei W, Yu Z, Zhou TT, Ye TH International Journal of Hydrogen Energy, 43(18), 9036, 2018 |
7 |
A direct numerical simulation study of flame structure and stabilization of an experimental high Ka CH4/air premixed jet flame Wang HO, Hawkes ER, Chen JH Combustion and Flame, 180, 110, 2017 |
8 |
Flamelet characteristics at the leading edge and through the flame brush of statistically steady incompressible turbulent premixed flames Kwon J, Park Y, Huh KY Combustion and Flame, 164, 85, 2016 |
9 |
Propagating nonpremixed edge-flames in a counterflow, annular slot burner under DC electric fields Tran MV, Cha MS Combustion and Flame, 173, 114, 2016 |
10 |
Consistent definitions of "Flame Displacement Speed" and "Markstein Length" for premixed flame propagation Giannakopoulos GK, Gatzoulis A, Frouzakis CE, Matalon M, Tomboulides AG Combustion and Flame, 162(4), 1249, 2015 |