1 |
Non-intrusive uncertainty quantification in the simulation of turbulent spray combustion using Polynomial Chaos Expansion: A case study Enderle B, Rauch B, Grimm F, Eckel G, Aigner M Combustion and Flame, 213, 26, 2020 |
2 |
Comparison of Finite Rate Chemistry and Flamelet/Progress-Variable Models: Sandia Flames and the Effect of Differential Diffusion Yang S, Wang XJ, Sun WT, Yang V Combustion Science and Technology, 192(7), 1137, 2020 |
3 |
Investigation of a High Karlovitz, High Pressure Premixed Jet Flame with Heat Losses by LES Gruhlke P, Janbazi H, Wlokas I, Beck C, Kempf AM Combustion Science and Technology, 192(11), 2138, 2020 |
4 |
Characterization of flameless combustion in a model gas turbine combustor using a novel post-processing tool Fooladgar E, Toth P, Duwig C Combustion and Flame, 204, 356, 2019 |
5 |
An efficient finite-rate chemistry model for a preconditioned compressible flow solver and its comparison with the flamelet/progress-variable model Yang S, Wang XJ, Huo HF, Sun WT, Yang V Combustion and Flame, 210, 172, 2019 |
6 |
LES of a swirl-stabilized kerosene spray flame with a multi-component vaporization model and detailed chemistry Eckel G, Grohmann J, Cantu L, Slavinskaya N, Kathrotia T, Rachner M, Le Clercq P, Meier W, Aigner M Combustion and Flame, 207, 134, 2019 |
7 |
A Comparison of Finite-Rate Kinetics and Flamelet-Generated Manifold Using a Multiscale Modeling Framework for Turbulent Premixed Combustion Panchal A, Ranjan R, Menon S Combustion Science and Technology, 191(5-6), 921, 2019 |
8 |
A multiscale combustion model formulation for NOx predictions in hydrogen enriched jet flames Iavarone S, Cafiero M, Ferrarotti M, Contino F, Parente A International Journal of Hydrogen Energy, 44(41), 23436, 2019 |
9 |
Numerical study of a laminar hydrogen diffusion flame based on the non-premixed finite-rate chemistry model; thermal NO assessment Lopez-Ruiz G, Fernandez-Akarregi AR, Diaz L, Urresti I, Alava I, Blanco JM International Journal of Hydrogen Energy, 44(36), 20426, 2019 |
10 |
Finite-rate chemistry modelling of non-conventional combustion regimes using a Partially-Stirred Reactor closure: Combustion model formulation and implementation details Li ZY, Ferrarotti M, Cuoci A, Parente A Applied Energy, 225, 637, 2018 |