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Fabian Mauss
Fabian Mauss
Brandenburg University of Technology
在 b-tu.de 的电子邮件经过验证
标题
引用次数
引用次数
年份
Supercharged homogeneous charge compression ignition
M Christensen, B Johansson, P Amnéus, F Mauss
SAE transactions, 1129-1144, 1998
5971998
An experimental and modeling study of ammonia with enriched oxygen content and ammonia/hydrogen laminar flame speed at elevated pressure and temperature
KP Shrestha, C Lhuillier, AA Barbosa, P Brequigny, F Contino, ...
Proceedings of the Combustion Institute 38 (2), 2163-2174, 2021
3122021
Detailed kinetic mechanism for the oxidation of ammonia including the formation and reduction of nitrogen oxides
KP Shrestha, L Seidel, T Zeuch, F Mauss
Energy & fuels 32 (10), 10202-10217, 2018
2872018
Analytic approximations of burning velocities and flame thicknesses of lean hydrogen, methane, ethylene, ethane, acetylene, and propane flames
J Göttgens, F Mauss, N Peters
Symposium (International) on Combustion 24 (1), 129-135, 1992
2851992
A comprehensive and compact n-heptane oxidation model derived using chemical lumping
SS Ahmed, F Mauß, G Moréac, T Zeuch
Physical Chemistry Chemical Physics 9 (9), 1107-1126, 2007
1942007
A comprehensive skeletal mechanism for the oxidation of n-heptane generated by chemistry-guided reduction
T Zeuch, G Moréac, SS Ahmed, F Mauss
Combustion and Flame 155 (4), 651-674, 2008
1802008
Inception and growth of soot particles in dependence on the surrounding gas phase
F Mauss, T Schäfer, H Bockhorn
Combustion and Flame 99 (3-4), 697-705, 1994
1771994
Detailed mass spectrometric and modeling study of isomeric butene flames
M Schenk, L Leon, K Moshammer, P Oßwald, T Zeuch, L Seidel, F Mauss, ...
Combustion and flame 160 (3), 487-503, 2013
1742013
Investigation of combustion emissions in a homogeneous charge compression injection engine: Measurements and a new computational model
M Kraft, P Maigaard, F Mauss, M Christensen, B Johansson
Proceedings of the Combustion Institute 28 (1), 1195-1201, 2000
1732000
Automatic reduction procedure for chemical mechanisms applied to premixed methane/air flames
T Løvs, D Nilsson, F Mauss
Proceedings of the Combustion Institute 28 (2), 1809-1815, 2000
1552000
In-cylinder pressure measurements using the spark plug as an ionization sensor
A Saitzkoff, R Reinmann, F Mauss, M Glavmo
SAE transactions, 1235-1245, 1997
1521997
Entwicklung eines kinetischen Modells der Rußbildung mit schneller Polymerisation
F Mauß
Cuvillier Verlag, 1998
1511998
Local air-fuel ratio measurements using the spark plug as an ionization sensor
R Reinmann, A Saitzkoff, F Mauss, M Glavmo
SAE transactions, 1224-1234, 1997
1491997
Comprehensive kinetic modeling and experimental study of a fuel-rich, premixed n-heptane flame
L Seidel, K Moshammer, X Wang, T Zeuch, K Kohse-Höinghaus, F Mauss
Combustion and Flame 162 (5), 2045-2058, 2015
1462015
A detailed chemical reaction mechanism for the oxidation of hydrocarbons and its application to the analysis of benzene formation in fuel-rich premixed laminar acetylene and …
K Hoyermann, F Mauß, T Zeuch
Physical Chemistry Chemical Physics 6 (14), 3824-3835, 2004
1432004
A lagrangian simulation of flamelet extinction and re-ignition in turbulent jet diffusion flames
F Mauß, D Keller, N Peters
Symposium (international) on combustion 23 (1), 693-698, 1991
1301991
Ignition delay time and laminar flame speed measurements of ammonia blended with dimethyl ether: a promising low carbon fuel blend
G Issayev, BR Giri, AM Elbaz, KP Shrestha, F Mauss, WL Roberts, ...
Renewable Energy 181, 1353-1370, 2022
1292022
Modelling of aromatics and soot formation from large fuel molecules
C Marchal, JL Delfau, C Vovelle, G Moréac, C Mounaı, F Mauss
Proceedings of the Combustion Institute 32 (1), 753-759, 2009
1252009
Calculating the soot particle size distribution function in turbulent diffusion flames using a sectional method
K Netzell, H Lehtiniemi, F Mauss
Proceedings of the Combustion Institute 31 (1), 667-674, 2007
1242007
Combustion behavior of ammonia blended with diethyl ether
G Issayev, BR Giri, AM Elbaz, KP Shrestha, F Mauss, WL Roberts, ...
Proceedings of the combustion institute 38 (1), 499-506, 2021
1212021
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