Jeffrey A. Sutton
Affiliations: | Aero/Astro Engineering | Ohio State University, Columbus, Columbus, OH |
Area:
Aerospace EngineeringGoogle:
"Jeffrey Sutton"Parents
Sign in to add mentorJames F. Driscoll | grad student | 2005 | University of Michigan (E-Tree) | |
(Mixture fraction and scalar dissipation rate imaging in turbulent nonpremixed flames near extinction.) |
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Publications
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Pu J, Sutton JA. (2021) Quantitative 2D thermometry in turbulent sooting non-premixed flames using filtered Rayleigh scattering. Applied Optics. 60: 5742-5751 |
Pu J, Sutton JA. (2020) Evaluation of the Tenti S6 model for hydrocarbon fuels at elevated temperatures using filtered Rayleigh scattering measurements. Optics Letters. 45: 5579-5582 |
McManus TA, Sutton JA. (2020) Simultaneous 2D filtered Rayleigh scattering thermometry and stereoscopic particle image velocimetry measurements in turbulent non-premixed flames Experiments in Fluids. 61 |
Schmidt BE, Sutton JA. (2020) Improvements in the accuracy of wavelet-based optical flow velocimetry (wOFV) using an efficient and physically based implementation of velocity regularization Experiments in Fluids. 61: 1-17 |
McManus TA, Sutton JA. (2019) Quantitative planar temperature imaging in turbulent non-premixed flames using filtered Rayleigh scattering. Applied Optics. 58: 2936-2947 |
Allison PM, Frederickson K, Kirik JW, et al. (2019) Flame Structure and Dynamics in a Premixed Dual-Mode Scramjet Combustor from Fluorescence Imaging Journal of Propulsion and Power. 35: 552-564 |
Neuber G, Fuest F, Kirchmann J, et al. (2019) Sparse-Lagrangian MMC modelling of the Sandia DME flame series Combustion and Flame. 208: 110-121 |
Schmidt BE, Sutton JA. (2019) High-resolution velocimetry from tracer particle fields using a wavelet-based optical flow method Experiments in Fluids. 60: 37 |
Mcmanus TA, Monje IT, Sutton JA. (2019) Experimental assessment of the Tenti S6 model for combustion-relevant gases and filtered Rayleigh scattering applications Applied Physics B. 125: 13 |
Fuest F, Barlow RS, Magnotti G, et al. (2018) Scalar dissipation rates in a turbulent partially-premixed dimethyl ether/air jet flame Combustion and Flame. 188: 41-65 |