Erscheinungsjahr
Medientyp
Format
Lizenz
Sprache
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Experimental and kinetic modeling study of laminar burning velocities of NH3/air, NH3/H2/air, NH3/CO/air and NH3/CH4/air premixed flames
Elsevier | 2019|Verlag: The Combustion Institute -
Experimental and kinetic modeling investigation on the laminar flame propagation of ammonia under oxygen enrichment and elevated pressure conditions
Elsevier | 2019|Verlag: The Combustion Institute -
Measurement and modelling of the laminar burning velocity of methane-ammonia-air flames at high pressures using a reduced reaction mechanism
Elsevier | 2019|Verlag: The Combustion Institute -
A comprehensive experimental and modeling study of isobutene oxidation
Elsevier | 2016|Verlag: The Combustion Institute -
Control of NOx and other emissions in micro gas turbine combustors fuelled with mixtures of methane and ammonia
Elsevier | 2019|Verlag: The Combustion Institute -
An updated experimental and kinetic modeling study of n-heptane oxidation
Elsevier | 2016|Verlag: The Combustion Institute -
Auto-ignition kinetics of ammonia and ammonia/hydrogen mixtures at intermediate temperatures and high pressures
Elsevier | 2019|Verlag: The Combustion Institute -
Experimental study and kinetic analysis of the laminar burning velocity of NH3/syngas/air, NH3/CO/air and NH3/H2/air premixed flames at elevated pressures
Elsevier | 2020|Verlag: The Combustion Institute -
A general theory of ignition and combustion of nano- and micron-sized aluminum particles
Elsevier | 2016|Verlag: The Combustion Institute -
Kinetic modeling of ammonia/air weak flames in a micro flow reactor with a controlled temperature profile
Elsevier | 2017|Verlag: The Combustion Institute -
The effects of large scale perturbation-generating obstacles on the propagation of detonation filled with methane–oxygen mixture
Elsevier | 2017|Verlag: The Combustion Institute -
Compositional effects on the ignition of FACE gasolines
Elsevier | 2016|Verlag: The Combustion Institute -
Flame inhibition of aluminum dust explosion by NaHCO3 and NH4H2PO4
Elsevier | 2018|Verlag: The Combustion Institute -
Machine learning assisted modeling of mixing timescale for LES/PDF of high-Karlovitz turbulent premixed combustion
Elsevier | 2021|Verlag: The Combustion Institute -
Study of aluminum particle combustion in solid propellant plumes using digital in-line holography and imaging pyrometry
Elsevier | 2017|Verlag: The Combustion Institute -
An experimental and detailed chemical kinetic modeling study of hydrogen and syngas mixture oxidation at elevated pressures
Elsevier | 2013|Verlag: The Combustion Institute. -
Assessing the predictions of a NOx kinetic mechanism on recent hydrogen and syngas experimental data
Elsevier | 2017|Verlag: The Combustion Institute -
Reaction pathway of coal oxidation at low temperatures: a model of cyclic chain reactions and kinetic characteristics
Elsevier | 2015|Verlag: The Combustion Institute -
A detailed chemical kinetic modeling, ignition delay time and jet-stirred reactor study of methanol oxidation
Elsevier | 2015|Verlag: The Combustion Institute -
Experimental and numerical simulation of multi-component combustion of typical charring material
Elsevier | 2019|Verlag: The Combustion Institute
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