1 |
Large-Eddy Simulation and analysis of a sooting lifted turbulent jet flame Grader M, Eberle C, Gerlinger P Combustion and Flame, 215, 458, 2020 |
2 |
Toward finite-rate chemistry large-eddy simulations of sooting swirl flames Eberle C, Gerlinger P, Geigle KP, Aigner M Combustion Science and Technology, 190(7), 1194, 2018 |
3 |
A sectional PAH model with reversible PAH chemistry for CFD soot simulations Eberle C, Gerlinger P, Aigner M Combustion and Flame, 179, 63, 2017 |
4 |
CFD simulations of turbulent nonreacting and reacting flows for rocket engine applications Seidl MJ, Aigner M, Keller R, Gerlinger P Journal of Supercritical Fluids, 121, 63, 2017 |
5 |
NUMERICAL INVESTIGATION OF TRANSIENT SOOT EVOLUTION PROCESSES IN AN AERO-ENGINE MODEL COMBUSTOR Eberle C, Gerlinger P, Geigle KP, Aigner M Combustion Science and Technology, 187(12), 1841, 2015 |
6 |
Modeling of heat transfer and differential diffusion in transported PDF methods Fiolitakis A, Ess PR, Gerlinger P, Aigner M Combustion and Flame, 161(8), 2107, 2014 |
7 |
Soot predictions in premixed and non-premixed laminar flames using a sectional approach for PAHs and soot Blacha T, Di Domenico M, Gerlinger P, Aigner M Combustion and Flame, 159(1), 181, 2012 |
8 |
Experimental characterization and numerical simulation of a sooting lifted turbulent jet diffusion flame Kohler M, Geigle KP, Blacha T, Gerlinger P, Meier W Combustion and Flame, 159(8), 2620, 2012 |
9 |
Development and validation of a new soot formation model for gas turbine combustor simulations Di Domenico M, Gerlinger P, Aigner M Combustion and Flame, 157(2), 246, 2010 |
10 |
Scalar and joint scalar-velocity-frequency Monte Carlo PDF simulation of supersonic combustion Mobus H, Gerlinger P, Bruggemann D Combustion and Flame, 132(1-2), 3, 2003 |