Jeffrey Santner, PhD

Affiliations: 
2015-2017 Post Doctoral Fellow Argonne National Laboratory, Lemont, IL, United States 
 2017- Mechanical Engineering Cal State University, Los Angeles 
Website:
http://www.calstatela.edu/faculty/jeff-santner
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"Jeffrey Santner"

Parents

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Frederick L. Dryer grad student 2005-2009 Princeton
Yiguang Ju grad student 2009-2016 Princeton
 (Co-advised)
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Publications

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Ahmed SF, Santner J, Dryer FL, et al. (2016) Computational Study of NOx Formation at Conditions Relevant to Gas Turbine Operation, Part 2: NOx in High Hydrogen Content Fuel Combustion at Elevated Pressure Energy and Fuels. 30: 7691-7703
Santner J, Ahmed SF, Farouk T, et al. (2016) Computational Study of NOx Formation at Conditions Relevant to Gas Turbine Operation: Part 1 Energy and Fuels. 30: 6745-6755
Zhou CW, Li Y, O'Connor E, et al. (2015) A comprehensive experimental and modeling study of isobutene oxidation Combustion and Flame
Burke SM, Burke U, Mc Donagh R, et al. (2015) An experimental and modeling study of propene oxidation. Part 2: Ignition delay time and flame speed measurements Combustion and Flame. 162: 296-314
Dryer FL, Haas FM, Santner J, et al. (2014) Interpreting chemical kinetics from complex reaction-advection-diffusion systems: Modeling of flow reactors and related experiments Progress in Energy and Combustion Science. 44: 19-39
Yu H, Han W, Santner J, et al. (2014) Radiation-induced uncertainty in laminar flame speed measured from propagating spherical flames Combustion and Flame. 161: 2815-2824
Burke SM, Metcalfe W, Herbinet O, et al. (2014) An experimental and modeling study of propene oxidation. Part 1: Speciation measurements in jet-stirred and flow reactors Combustion and Flame. 161: 2765-2784
Santner J, Haas FM, Ju Y, et al. (2014) Uncertainties in interpretation of high pressure spherical flame propagation rates due to thermal radiation Combustion and Flame. 161: 147-153
Liu D, Santner J, Togbé C, et al. (2013) Flame structure and kinetic studies of carbon dioxide-diluted dimethyl ether flames at reduced and elevated pressures Combustion and Flame. 160: 2654-2668
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