1 |
Mean field coupling mechanisms explaining the impact of the precessing vortex core on the flame transfer function Luckoff F, Kaiser TL, Paschereit CO, Oberleithner K Combustion and Flame, 223, 254, 2021 |
2 |
LES/PDF modeling of swirl-stabilized non-premixed methane/air flames with local extinction and re-ignition Yu S, Liu X, Bai XS, Elbaz AM, Roberts WL Combustion and Flame, 219, 102, 2020 |
3 |
The role of strain rate, local extinction, and hydrodynamic instability on transition between attached and lifted swirl flames An Q, Steinberg AM Combustion and Flame, 199, 267, 2019 |
4 |
Premixed Flame Dynamics in Response to Two-Dimensional Acoustic Forcing Saurabh A, Paschereit CO Combustion Science and Technology, 191(7), 1184, 2019 |
5 |
An experimental/numerical investigation of the role of the quarl in enhancing the blowout limits of swirl-stabilized turbulent non-premixed flames Elbaz AM, Yu S, Liu X, Bai XS, Khesho I, Roberts WL Fuel, 236, 1226, 2019 |
6 |
A comparative study of the effect of varied reaction environments on a swirl stabilized flame geometry via optical measurements Banyon C, Rodriguez-Henriquez JJ, Paterakis G, Malliotakis Z, Souflas K, Keramiotis C, Vourliotakis G, Mauss F, Curran HJ, Skevis G, Koutmos P, Founti M Fuel, 216, 826, 2018 |
7 |
Experimental investigation of upstream flame propagation during boundary layer flashback of swirl flames Ebi D, Clemens NT Combustion and Flame, 168, 39, 2016 |
8 |
Coupled dynamics of lift-off and precessing vortex core formation in swirl flames An Q, Kwong WY, Geraedts BD, Steinberg AM Combustion and Flame, 168, 228, 2016 |
9 |
On the flame-flow interaction under distributed combustion conditions Khalil AEE, Gupta AK Fuel, 182, 17, 2016 |
10 |
Formation and flame-induced suppression of the precessing vortex core in a swirl combustor: Experiments and linear stability analysis Oberleithner K, Stohr M, Im SH, Arndt CM, Steinberg AM Combustion and Flame, 162(8), 3100, 2015 |