Thomas A. Litzinger
Affiliations: | Pennsylvania State University, State College, PA, United States |
Area:
Mechanical Engineering, Aerospace EngineeringWebsite:
https://www.linkedin.com/in/thomas-litzinger-998ba610/Google:
"Thomas Litzinger"Parents
Sign in to add mentorIrvin Glassman | grad student | 1985 | Princeton (Physics Tree) | |
(PhD Thesis: The High Temperature Oxidation of Alkylated Aromatic Hydrocarbons) |
Children
Sign in to add traineeJames Hoffmann | grad student | 1991 | Penn State |
Barry Fetherolf | grad student | 1993 | Penn State |
Thomas Hunter | grad student | 1994 | Penn State |
John Pinson | grad student | 1994 | Penn State |
Christoph Espey | grad student | 1995 | Penn State |
YoungJoo Lee | grad student | 1996 | Penn State |
Ching-Jen Tang | grad student | 1997 | Penn State |
Jer-Sheng Chen | grad student | 1999 | Penn State |
Dean Skrzycke | grad student | 1999 | Penn State |
Hyungsik Lee | grad student | 2000 | Penn State |
Gautam N. Kudva | grad student | 2001 | Penn State |
Jianquan Li | grad student | 2004 | Penn State |
KiHoon Song | grad student | 2004 | Penn State |
Juntao Wu | grad student | 2004 | Penn State |
Suresh S. Iyer | grad student | 2005 | Penn State |
Saravanan Muthiah | grad student | 2006 | Penn State |
Venkatesh R. Iyer | grad student | 2012 | Penn State |
Yefu Wang | grad student | 2015 | Penn State |
Anandkumar Makwana | grad student | 2018 | Penn State |
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Publications
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Wang Y, Makwana A, Iyer S, et al. (2018) Effect of fuel composition on soot and aromatic species distributions in laminar, co-flow flames. Part 1. Non-premixed fuel Combustion and Flame. 189: 443-455 |
Makwana A, Iyer S, Linevsky M, et al. (2017) Effects of Fuel Molecular Weight on Emissions in a Jet Flame and a Model Gas Turbine Combustor Journal of Engineering For Gas Turbines and Power. 140 |
Katta VR, Wang YF, Linevsky MJ, et al. (2015) Evaluation of soot models in computing jet flames formed with n-dodecane and iso-octane 53rd Aiaa Aerospace Sciences Meeting |
Mouis AG, Litzinger TA, Wang Y, et al. (2015) Effects of a JP-8 surrogate and its components on soot in laminar, N |
Iyer VR, Iyer SS, Linevsky MJ, et al. (2014) Simulating the sooting propensity of JP-8 with surrogate fuels from hydrocarbon fluids Journal of Propulsion and Power. 30: 1410-1418 |
Dryer FL, Jahangirian S, Dooley S, et al. (2014) Emulating the combustion behavior of real jet aviation fuels by surrogate mixtures of hydrocarbon fluid blends: Implications for science and engineering Energy and Fuels. 28: 3474-3485 |
Wang Y, Iyer SS, Iyer VR, et al. (2013) Soot and aromatic species in non-premixed and partiallypremixed laminar co-flow flames Fall Technical Meeting of the Eastern States Section of the Combustion Institute 2013. 336-341 |
Iyer VR, Iyer SS, Litzinger TA, et al. (2012) Emulating the sooting propensity of JP-8 with surrogate fuels from solvent mixtures 50th Aiaa Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition |
Christensen MK, Pal S, Woodward RD, et al. (2012) Flow reactor autoignition studies of Iso-octane at high pressures and low to intermediate temperatures 50th Aiaa Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition |
Mouis AG, Menon A, Katta V, et al. (2012) Effects of m-xylene on aromatics and soot in laminar, N 2-diluted ethylene co-flow diffusion flames from 1 to 5atm Combustion and Flame. 159: 3168-3178 |