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Kevin Gleason
Kevin Gleason
Verified email at yale.edu
Title
Cited by
Cited by
Year
Probing gas-to-particle transition in a moderately sooting atmospheric pressure ethylene/air laminar premixed flame. Part I: gas phase and soot ensemble characterization
F Carbone, K Gleason, A Gomez
Combustion and Flame 181, 315-328, 2017
572017
Microdroplet evaporation with a forced pinned contact line
K Gleason, SA Putnam
Langmuir 30 (34), 10548-10555, 2014
542014
Effect of temperature on soot inception in highly controlled counterflow ethylene diffusion flames
K Gleason, F Carbone, A Gomez
Combustion and Flame 192, 283-294, 2018
532018
Steady-state droplet evaporation: Contact angle influence on the evaporation efficiency
K Gleason, H Voota, SA Putnam
International Journal of Heat and Mass Transfer 101, 418-426, 2016
512016
Small aromatic hydrocarbons control the onset of soot nucleation
K Gleason, F Carbone, AJ Sumner, BD Drollette, DL Plata, A Gomez
Combustion and Flame 223, 398-406, 2021
482021
Pressure effects on incipiently sooting partially premixed counterflow flames of ethylene
F Carbone, K Gleason, A Gomez
Proceedings of the Combustion Institute 36 (1), 1395-1402, 2017
482017
Pressure and temperature dependence of soot in highly controlled counterflow ethylene diffusion flames
K Gleason, F Carbone, A Gomez
Proceedings of the Combustion Institute 37 (2), 2057-2064, 2019
242019
PAHs controlling soot nucleation in 0.101—0.811 MPa ethylene counterflow diffusion flames
K Gleason, F Carbone, A Gomez
Combustion and Flame 227, 384-395, 2021
222021
Spatially resolved measurements of soot and gaseous precursors in ethylene counterflow diffusion flames up to 32 atm
K Gleason, F Carbone, A Gomez
Proceedings of the Combustion Institute 38 (2), 2517-2524, 2021
72021
Effect of equivalence ratio and temperature on soot formation in partially premixed counterflow flames
K Gleason, F Carbone, A Gomez
Combustion and Flame 242, 112088, 2022
62022
Atmospheric Deposition of Modified Graphene Oxide on Silicon by Evaporation-Assisted Deposition
K Gleason, S Saraf, S Seal, SA Putnam
ACS omega 3 (1), 1154-1158, 2018
52018
Detailed study of the formation of soot precursors and soot in highly controlled ethylene (/toluene) counterflow diffusion flames
K Gleason, A Gomez
The Journal of Physical Chemistry A 127 (1), 276-285, 2022
42022
Simulating the evaporation of pinned water microdroplets with implementation of a surface concentration distribution
K Gleason, SA Putnam
Fourteenth Intersociety Conference on Thermal and Thermomechanical Phenomena …, 2014
22014
Experimental and numerical investigations of microdroplet evaporation with a forced pinned contact line
K Gleason
22014
Soot research: Relevance and priorities by mid-century
F Carbone, K Gleason, A Gomez
Combustion chemistry and the carbon neutral future, 27-61, 2023
12023
Soot formation in high-pressure counterflow flames
K Gleason
Yale University, 2020
12020
A simple method for the quantitative assessment of soot production rate
K Gleason, A Gomez
Combustion and Flame 258, 113043, 2023
2023
Soot nucleation in diffusion flames and the role of aromatic hydrocarbons
K Gleason, A Gomez
Combustion and Flame 255, 112899, 2023
2023
An experimental study of the sooting behavior of a partially premixed flame under moderately rich conditions
K Gleason, A Gomez
Combustion and Flame 252, 112429, 2023
2023
Corrigendum to" Effect of temperature on soot inception in highly controlled counterflow ethylene diffusion flames"[Combustion and Flame (2018) 192, 283-294].
K Gleason, F Carbone, A Gomez
Combustion and Flame 218, 18-18, 2020
2020
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