Omer L. Gulder
Affiliations: | Aerospace Science and Engineering | University of Toronto, Toronto, ON, Canada |
Area:
Aerospace EngineeringWebsite:
https://experts.engineering.utoronto.ca/omer-l-gulderGoogle:
"Omer Gulder"Bio:
https://www.proquest.com/openview/513f8f73a4e82965c1c9707702eac5a4/1
Parents
Sign in to add mentorWalter J. D. Annand | grad student | 1977 | University of Manchester | |
(An Investigation of Technical Aspects of Methanol as an Automotive Fuel) |
Children
Sign in to add traineeFrancisco E. Hernandez Perez | grad student | 2011 | University of Toronto |
Ahmet E. Karatas | grad student | 2014 | University of Toronto |
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Publications
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Rault TM, Vishwanath RB, Gülder ÖL. (2020) Corrigendum to “Influence of m-xylene addition to Jet A-1 on spray structure, flow field and soot production in turbulent swirl-stabilized spray flames in a model combustor” [Combustion and Flame 219 (2020) 258–267] Combustion and Flame. 220: 357 |
Yang SS, Gülder ÖL. (2020) Pressure dependence of sooting characteristics of m-xylene and n-octane doped laminar methane diffusion flames from 2 to 10 bar Combustion and Flame. 220: 203-209 |
Rault TM, Vishwanath RB, Gülder ÖL. (2020) Influence of m-xylene addition to Jet A-1 on spray structure, flow field and soot production in turbulent swirl-stabilized spray flames in a model combustor Combustion and Flame. 219: 258-267 |
Commodo M, Karataş AE, Falco GD, et al. (2020) On the effect of pressure on soot nanostructure: A Raman spectroscopy investigation Combustion and Flame. 219: 13-19 |
Tamadonfar P, Gülder ÖL. (2019) Comment on the paper “Experimental study of effect of hydrogen addition on combustion of low caloric value gas fuels” International Journal of Hydrogen Energy. 44: 4006-4007 |
Wang L, Chatterjee S, An Q, et al. (2019) Soot formation and flame structure in swirl-stabilized turbulent non-premixed methane combustion Combustion and Flame. 209: 303-312 |
Kheirkhah S, Gülder ÖL. (2019) A comment on papers by Zhou et al. (CNF, 2018) and Zhou et al. (CST, 2019): Flame displacement speed, flame front velocity, and edge (reactants) velocity Combustion and Flame. 205: 133-134 |
Wang W, Karataş AE, Groth CPT, et al. (2018) Combined experimental and numerical study of ethanol laminar flame extinction Combustion Science and Technology. 190: 1472-1487 |
Wang W, Karatas AE, Groth CPT, et al. (2018) Experimental and numerical study of laminar flame extinction for syngas and syngas-methane blends Combustion Science and Technology. 190: 1455-1471 |
Gülder ÖL. (2018) Comment on “Experimental Studies of Magnetic Effect on Methane Laminar Combustion Characteristics” Combustion Science and Technology. 190: 186-188 |