화학공학소재연구정보센터
검색결과 : 45건
No. Article
1 Plug-flow reactor and shock-tube study of the oxidation of very fuel-rich natural gas/DME/O-2 mixtures
Kaczmarek D, Herzler J, Porras S, Shaqiri S, Fikri M, Schulz C, Atakan B, Maas U, Kasper T
Combustion and Flame, 225, 86, 2021
2 Reduced reaction mechanism for natural gas combustion in novel power cycles
Drost S, Aznar MS, Schiessl R, Ebert M, Chen JY, Maas U
Combustion and Flame, 223, 486, 2021
3 Experimental investigation of the stochastic early flame propagation after ignition by a low-energy electrical discharge
Essmann S, Markus D, Grosshans H, Maas U
Combustion and Flame, 211, 44, 2020
4 Experimental observation of diffusive-thermal oscillations of burner stabilized methane-air flames
Nechipurenko S, Miroshnichenko T, Pestovskii N, Tskhai S, Kichatov B, Gubernov V, Bykov V, Maas U
Combustion and Flame, 213, 202, 2020
5 An experimental and modeling study on the reactivity of extremely fuel-rich methane/dimethyl ether mixtures
Porras S, Kaczmarek D, Herzler J, Drost S, Werler M, Kasper T, Fikri M, Schiessl R, Atakan B, Schulz C, Maas U
Combustion and Flame, 212, 107, 2020
6 Methane/Air Auto-Ignition Based on Global Quasi-Linearization (GQL) and Directed Relation Graph (DRG): Implementation and Comparison
Yu CK, Minuzzi F, Bykov V, Maas U
Combustion Science and Technology, 192(9), 1802, 2020
7 Automatic Construction of REDIM Reduced Chemistry with a Detailed Transport and Its Application to CH4 Counterflow Flames
Yu CK, Li X, Wu CW, Neagos A, Maas U
Energy & Fuels, 34(12), 16572, 2020
8 The internal combustion engine as a CO2 reformer
Gossler H, Drost S, Porras S, Schiessl R, Maas U, Deutschmann O
Combustion and Flame, 207, 186, 2019
9 REDIM reduced modeling of flame quenching at a cold wall - The influence of detailed transport models and detailed mechanisms
Strassacker C, Bykov V, Maas U
Combustion Science and Technology, 191(2), 208, 2019
10 Preface to the 26th ICDERS Special Issue
Dunn-Rankin D, Maas U
Combustion Science and Technology, 191(4), 605, 2019