Dr.-Ing. Christoph Barfuß

Technical University of Munich
Chair of Thermodynamics (Prof. Sattelmayer)

Publications

  • Barfuß, C.; Heilbronn, D.; Sattelmayer, T.: Verbundvorhaben: Entwicklung von Verbrennungsmodellen und Kriterien für H2-CO-Luft-Schichten bei partiellem Einschluss – Teilvorhaben: Experimentelle Untersuchungen auf Laborskala sowie Entwicklung komplementärer CFD-Verfahren. , Ed.: GRS - Reaktorsicherheitsforschung: Lehrstuhl für Thermodynamik, EPC, SoED der TUM, 2022, more… BibTeX
  • Heilbronn, D.; Barfuss, C.; Sattelmayer, T.: Deflagration-to-detonation transition in H2-CO-Air mixtures in a partially obstructed channel. International Journal of Hydrogen Energy Volume 46 (Issue 23), 2021, 12372-12383 more… BibTeX
  • Barfuss, C.; Heilbronn, D.; Sattelmayer, T.: Impact of local flame quenching on the flame acceleration in H2-CO-air mixtures in obstructed channels. Journal of Loss Prevention in the Process Industries 71, 2021, 104491 more… BibTeX
  • Heilbronn, D.; Barfuss, C.; Sattelmayer, T.: Influence of geometry on flame acceleration and DDT in H2-CO-air mixtures in a partially obstructed channel. Journal of Loss Prevention in the Process Industries 71, 2021, Article number 104493 more… BibTeX
  • Barfuss, C.; Heilbronn, D.; Sattelmayer, T.: Impact of Local Flame Quenching in the Flame Acceleration in H2-CO-Air Mixtures in Obstructed Channels. 13th Int. Symposium on Hazards, Prevention, and Mitigation of Industrial Explosions, 2020ISHPMIE 2020 more… BibTeX
  • Heilbronn, D.; Barfuss, C.; Sattelmayer, T.: Influence of Geometry on Flame Acceleration and DDT in H2-CO-Air Mixtures in a Partially Obstructed Channel. 13th Int. Symposium on Hazards, Prevention, and Mitigation of Industrial Explosions, 2020ISHPMIE 2020 more… BibTeX
  • Barfuss, C.; Heilbronn, D.; Sattelmayer, T.: Simulation of Deflagration-to-Detonation Transition of Lean H2-CO-Air Mixtures in Obstructed Channels. International Conference on Hydrogen Safety, 2019ICHS 2019, 12 more… BibTeX
  • Heilbronn, D.; Barfuss, C.; Sattelmayer, T.: Deflagration-to Detonation Transition in H2-CO-Air Mixtures in a Partially obstructed Channel. International Conference on Hydrogen Safety, 2019ICHS 2019, 11 more… BibTeX
  • Barfuß, C.; Heilbronn, D.; Sattelmayer, T.: Numerical Simulation of Deflagration and Detonation in Homogeneous Hydrogen-Carbon Monoxide-Air Mixtures. 12th International Symposium on Hazards, Prevention, and Mitigation of Industrial Explosions, 2018ISHPMIE more… BibTeX
  • Lellek, S.; Barfuß, C.; Sattelmayer, T.:: Experimental Study of the Interaction of Water Sprays with Swirling Premixed Natural Gas Flames. Journal of Engineering for Gas Turbines and Power 139 (02), 2017, 021506-1 bis 9 more… BibTeX
  • Lellek, S.; Barfuß, C.; Sattelmayer, T.: Experimental Study of the Interaction of Water Sprays with Swirling Premixed Natural Gas Flames. Proceedings of the ASME Turbo Expo, 2016 more… BibTeX

Further Publications

  • Sapin, P., Taleb, A., Barfuss, C., White, A. J., Fabris, D., & Markides, C. N. (2016). Thermodynamic Losses in a Gas Spring: Comparison of Experimental and Numerical Results, 12th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics.
  • Taleb, A., Barfuss, C., Sapin, P., White, A. J., Willich, C., Fabris, D., & Markides, C. N. (2016). The Influence of Real Gas Effects on Thermally Induced Losses in Reciprocating Piston-Cylinder Systems, 12th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamicsi.
  • Taleb, A. I., Sapin, P., Barfuß, C., Fabris, D., & Markides, C. N. (2017, March). CFD analysis of thermally induced thermodynamic losses in the reciprocating compression and expansion of real gases. In Journal of Physics: Conference Series (Vol. 821, No. 1, p. 012016). IOP Publishing.
  • Taleb, A., Sapin, P., Barfuss, C., White, A. J., Fabris, D., & Markides, C. N. (2016). Wall temperature and system mass effects in a reciprocating gas spring. In Proceedings of the 29th International Conference on Efficiency, Cost, Optimisation, Simulation and Environmental Impact of Energy Systems (ECOS).