1 |
Chemical effects of hydrogen addition on soot formation in counterflow diffusion flames: Dependence on fuel type and oxidizer composition Xu L, Yan FW, Wang Y, Chung SH Combustion and Flame, 213, 14, 2020 |
2 |
Evaluation of semi-empirical soot models for nonpremixed flames with increased stoichiometric mixture fraction and strain Johnson PR, Chakrabarty RK, Kumfer BM Combustion and Flame, 219, 70, 2020 |
3 |
Modeling the effects of hydrogen and nitrogen addition on soot formation in laminar ethylene jet diffusion flames Yen M, Magi V, Abraham J Chemical Engineering Science, 196, 116, 2019 |
4 |
Development of a numerical model to simulate carbon black synthesis and predict the aggregate structure in flow reactors Naseri A, Thomson MJ Combustion and Flame, 207, 314, 2019 |
5 |
A numerically robust method of moments with number density function reconstruction and its application to soot formation, growth and oxidation Salenbauch S, Hasse C, Vanni M, Marchisio DL Journal of Aerosol Science, 128, 34, 2019 |
6 |
Detailed modeling of soot particle formation and comparison to optical diagnostics and size distribution measurements in premixed flames using a method of moments Salenbauch S, Sirignano M, Pollack M, D'Anna A, Hasse C Fuel, 222, 287, 2018 |
7 |
Formation of Soot in Counterflow Diffusion Flames with Carbon Dioxide Dilution Wang Y, Chung SH Combustion Science and Technology, 188(4-5), 805, 2016 |
8 |
A Hybrid Newton/Time Integration Approach Coupled to Soot Moment Methods for Modeling Soot Formation and Growth in Perfectly-Stirred Reactors Adhikari S, Sayre A, Chandy AJ Combustion Science and Technology, 188(8), 1262, 2016 |
9 |
Soot modeling of counterflow diffusion flames of ethylene-based binary mixture fuels Wang Y, Raj A, Chung SH Combustion and Flame, 162(3), 586, 2015 |
10 |
Modeling soot formation in premixed flames using an Extended Conditional Quadrature Method of Moments Salenbauch S, Cuoci A, Frassoldati A, Saggese C, Faravelli T, Hasse C Combustion and Flame, 162(6), 2529, 2015 |