Heinz Pitsch
- An efficient error-propagation-based reduction method for large chemical kinetic mechanisms
2008/01/07 by P PEPIOTDESJARDINS, H PITSCH, Heinz Pitsch · 23 citations
Chemical Engineering · Engineering · Chemistry · #Advanced Combustion Engine Technologies #Biodiesel Production and Applications #Mass Spectrometry Techniques and Applications
- Chemical mechanism for high temperature combustion of engine relevant fuels with emphasis on soot precursors
2009/01/18 by G. Blanquart, Guillaume Blanquart, P. Pepiot-Desjardins +3 · 11 citations
Chemical Engineering · Engineering · Materials Science · #Advanced Combustion Engine Technologies #Combustion and flame dynamics #Catalytic Processes in Materials Science
- Analyzing the effects of temperature on soot formation with a joint volume-surface-hydrogen model
2009/05/26 by G. Blanquart, Guillaume Blanquart, H. Pitsch +1 · 6 citations
Chemical Engineering · Engineering · Earth and Planetary Sciences · #Advanced Combustion Engine Technologies #Combustion and flame dynamics #Atmospheric chemistry and aerosols
- Understanding the antagonistic effect of methanol as a component in surrogate fuel models: A case study of methanol/n-heptane mixtures
2021/01/19 by Yingtao Wu, Snehasish Panigrahy, Amrit Bikram Sahu +9 · 3 citations
Chemical Engineering · Engineering · #Advanced Combustion Engine Technologies #Combustion and Detonation Processes #Combustion and flame dynamics
- Applying Physics-Informed Enhanced Super-Resolution Generative Adversarial Networks to Turbulent Premixed Combustion and Engine-like Flame Kernel Direct Numerical Simulation Data
2022/10/28 by Mathis Bode, Michael Gauding, Bode, Mathis +7 · 3 citations
Chemical Engineering · Engineering · Environmental Science · #Advanced Combustion Engine Technologies #Combustion and flame dynamics #FOS: Computer and information sciences #FOS: Physical sciences #Fluid Dynamics (physics.flu-dyn) #Machine Learning (cs.LG) #Wind and Air Flow Studies
- Turbulent flame speed and reaction layer thickening in premixed jet\n flames at constant Karlovitz and increasing Reynolds numbers
2020/05/08 by Antonio Attili, Stefano Luca, Attili, Antonio +7 · 1 citation
Engineering · Environmental Science · #Combustion and flame dynamics #FOS: Physical sciences #Fire dynamics and safety research #Fluid Dynamics (physics.flu-dyn) #Wind and Air Flow Studies
- Efficient and accurate calculation of dispersion relations for intrinsically unstable premixed flames
2023/06/19 by Sofiane Al Kassar, Lukas Berger, Kassar, Sofiane Al +9 · 1 citation
Engineering · #Combustion and Detonation Processes #Combustion and flame dynamics #Computational Fluid Dynamics and Aerodynamics #FOS: Physical sciences #Fluid Dynamics (physics.flu-dyn)
- A Review of Terminology Used to Describe Soot Formation and Evolution under Combustion and Pyrolytic Conditions
2020/09/28 by Hope A. Michelsen, Meredith B. Colket, Per-Erik Bengtsson +7 · 1 citation
Chemical Engineering · Earth and Planetary Sciences · Physics and Astronomy · #Advanced Chemical Physics Studies #Advanced Combustion Engine Technologies #Atmospheric chemistry and aerosols
- Preferential and differential diffusion in RANS simulation of lean hydrogen flames with tabulated chemistry
2026/07/21 by Alex M. Garcia, Emiliano M. Fortes, Eduardo J. Pérez-Sánchez +6
#physics.flu-dyn