Influence of turbulence-chemical interaction on CFD pulverized coal MILD combustion modeling M Vascellari, G Cau Fuel, 2011 | 168 | 2011 |
Towards comprehensive coal combustion modelling for LES OT Stein, G Olenik, A Kronenburg, F Cavallo Marincola, BM Franchetti, ... Flow, turbulence and combustion 90, 859-884, 2013 | 145 | 2013 |
Simulation of entrained flow gasification with advanced coal conversion submodels. Part 1: Pyrolysis M Vascellari, R Arora, M Pollack, C Hasse Fuel 113, 654-669, 2013 | 134 | 2013 |
Flamelet modeling of coal particle ignition M Vascellari, H Xu, C Hasse Proceedings of the Combustion Institute 34 (2), 2445-2452, 2013 | 101 | 2013 |
Advanced modeling approaches for CFD simulations of coal combustion and gasification C Hasse, P Debiagi, X Wen, K Hildebrandt, M Vascellari, T Faravelli Progress in Energy and Combustion Science 86, 100938, 2021 | 75 | 2021 |
From laboratory-scale experiments to industrial-scale CFD simulations of entrained flow coal gasification M Vascellari, DG Roberts, DJ Harris, C Hasse Fuel 152, 58-73, 2015 | 70 | 2015 |
Resolved flow simulation of pulverized coal particle devolatilization and ignition in air-and O2/CO2-atmospheres GL Tufano, OT Stein, A Kronenburg, A Frassoldati, T Faravelli, L Deng, ... Fuel 186, 285-292, 2016 | 69 | 2016 |
Simulation of entrained flow gasification with advanced coal conversion submodels. Part 2: Char conversion M Vascellari, R Arora, C Hasse Fuel 118, 369-384, 2014 | 62 | 2014 |
Novel intrinsic-based submodel for char particle gasification in entrained-flow gasifiers: Model development, validation and illustration S Schulze, A Richter, M Vascellari, A Gupta, B Meyer, PA Nikrityuk Applied Energy 164, 805-814, 2016 | 58 | 2016 |
Flame structure analysis and flamelet progress variable modelling of strained coal flames D Messig, M Vascellari, C Hasse Combustion Theory and Modelling 21 (4), 700-721, 2017 | 57 | 2017 |
Comprehensive CFD model of an air-blown coal-fired updraft gasifier S Murgia, M Vascellari, G Cau Fuel 101, 129-138, 2012 | 52 | 2012 |
Fully-resolved simulations of coal particle combustion using a detailed multi-step approach for heterogeneous kinetics GL Tufano, OT Stein, A Kronenburg, G Gentile, A Stagni, A Frassoldati, ... Fuel 240, 75-83, 2019 | 51 | 2019 |
Numerical simulation of pulverized coal MILD combustion using a new heterogeneous combustion submodel M Vascellari, S Schulze, P Nikrityuk, D Safronov, C Hasse Flow, turbulence and combustion 92, 319-345, 2014 | 51 | 2014 |
Detailed analysis of reacting particles in an entrained-flow gasifier A Richter, M Vascellari, PA Nikrityuk, C Hasse Fuel Processing Technology 144, 95-108, 2016 | 47 | 2016 |
Numerical simulation of pulverized coal oxy-combustion with exhaust gas recirculation M Vascellari, G Cau Proceeding of CCT2009 Fourth International Conference on Clean Coal …, 2009 | 44 | 2009 |
A flamelet/progress variable approach for modeling coal particle ignition M Vascellari, GL Tufano, OT Stein, A Kronenburg, AM Kempf, ... Fuel 201, 29-38, 2017 | 41 | 2017 |
Evaluation of a flamelet/progress variable approach for pulverized coal combustion in a turbulent mixing layer M Rieth, AM Kempf, OT Stein, A Kronenburg, C Hasse, M Vascellari Proceedings of the Combustion Institute 37 (3), 2927-2934, 2019 | 36 | 2019 |
A consistent flamelet formulation for a reacting char particle considering curvature effects H Xu, F Hunger, M Vascellari, C Hasse Combustion and flame 160 (11), 2540-2558, 2013 | 33 | 2013 |
Flamelet/progress variable modeling of partial oxidation systems: From laboratory flames to pilot-scale reactors M Vascellari, H Xu, S Hartl, F Hunger, C Hasse Chemical Engineering Science 134, 694-707, 2015 | 26 | 2015 |
Numerical study of natural gas reforming by non-catalytic partial oxidation based on the Virtuhcon Benchmark Y Voloshchuk, M Vascellari, C Hasse, B Meyer, A Richter Chemical Engineering Journal 327, 307-319, 2017 | 20 | 2017 |