articleTop 1% cited
An efficient error-propagation-based reduction method for large chemical kinetic mechanisms
Combustion and Flame · 2008 · Vol. 154(1-2) · pp. 67–81
P PEPIOTDESJARDINS✉(Stanford University)Heinz Pitsch(Stanford University)
Advanced Combustion Engine TechnologiesBiodiesel Production and ApplicationsMass Spectrometry Techniques and ApplicationsReduction (mathematics)Propagation of uncertaintyComputer scienceAlgorithmGraphBiological systemChemical processMonotonic functionProcess (computing)Set (abstract data type)
Funding
- Air Force Office of Scientific Research
Citations
777
FWCI
15.51
field-weighted impact
References
20
Percentile
100%
vs. same field & year
Citations per year
Cited by
A path flux analysis method for the reduction of detailed chemical kinetic mechanisms
Combustion and Flame · 2010 · 460 citations
Large-Eddy Simulation: Current Capabilities, Recommended Practices, and Future Research
AIAA Journal · 2010 · 526 citations
Chemical mechanism for high temperature combustion of engine relevant fuels with emphasis on soot precursors
Combustion and Flame · 2009 · 487 citations
References
Self-ignition of S.I. engine model fuels: A shock tube investigation at high pressure
Combustion and Flame · 1997 · 555 citations
A comprehensive modeling study of iso-octane oxidation
Combustion and Flame · 2002 · 1,345 citations
Simplifying chemical kinetics: Intrinsic low-dimensional manifolds in composition space
Combustion and Flame · 1992 · 1,491 citations
Related articles
An efficient error-propagation-based reduction method for large chemical kinetic mechanisms
Combustion and Flame · 2008 · 777 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
