Jeffrey A. Sutton
Engineering · The Ohio State University
Publications
131
Citations
2,146
Est. group size
~3
Recurring co-author estimate
Active years
24
Publishing since 2002
Jeffrey A. Sutton's research focuses on experimental combustion science, particularly the use of advanced laser-based imaging and diagnostic techniques to study turbulent flames, including how soot, temperature, and turbulence interact in these flames. He also develops and refines optical measurement methods, such as velocimetry and thermometry techniques, that can be applied broadly to fluid flow and combustion research. This work supports engineers and scientists in better understanding combustion processes relevant to engines, propulsion systems, and pollutant (soot) formation.
Publication output rose from 2017 to a peak around 2019-2020, then has gradually declined through 2024-2025, suggesting a slowing pace in recent years.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- The interaction between soot, thermal gradients, and dissipation rate in turbulent non-premixed jet flames
Proceedings of the Combustion Institute · 2024
- Analysis of Surface Chemistry and Detector Performance of Chemically Process CdZnTe crystals
OSTI OAI (U.S. Department of Energy Office of Scientific and Technical Information) · 2024
- Multi-parameter Measurements in Sooting Turbulent Non-premixed Flames
AIAA SCITECH 2023 Forum · 2023
- Correction: Multi-parameter Measurements in Sooting Turbulent Non-premixed Flames
AIAA SCITECH 2023 Forum · 2023
- Evaluation of a wavelet-based optical flow method for planar velocimetry using scalar fields
Experiments in Fluids · 2022
- Conditional analysis of temperature and strain rate effects on dissipation structure in turbulent non-premixed jet flames
Proceedings of the Combustion Institute · 2022
- Multiscale Interaction of Turbulence, Temperature, and Soot Formation: Measurements for Critical Assessments of Chemical Kinetics and Mechanisms
2022
- A physical interpretation of regularization for optical flow methods in fluids
Experiments in Fluids · 2021
- Quantitative 2D thermometry in turbulent sooting non-premixed flamesusing filtered Rayleigh scattering
Applied Optics · 2021
- Improvements in the accuracy of wavelet-based optical flow velocimetry (wOFV) using an efficient and physically based implementation of velocity regularization
Experiments in Fluids · 2020
- Simultaneous 2D filtered Rayleigh scattering thermometry and stereoscopic particle image velocimetry measurements in turbulent non-premixed flames
Experiments in Fluids · 2020
- High-resolution velocity measurements in turbulent premixed flames using wavelet-based optical flow velocimetry (wOFV)
Proceedings of the Combustion Institute · 2020
- Evaluation of gas- and particle-phase separation methods for velocity measurements in turbulent multiphase flows
Experiments in Fluids · 2020
- Evaluation of the Tenti S6 model for hydrocarbon fuels at elevated temperatures using filtered Rayleigh scattering measurements
Optics Letters · 2020
- Thermal dissipation rate measurements in turbulent non-premixed jet flames: dissipation length scales, layer structure, and the impact of flow turbulence
AIAA Scitech 2020 Forum · 2020
- Experiments in Fluids×8
- Proceedings of the Combustion Institute×7
- Combustion and Flame×6
- AIAA Scitech 2019 Forum×4
- Optics Letters×3
- Ziqiao Chang
Engineering · Purdue University West Lafayette
- Sreetam Bhaduri
Engineering · Purdue University West Lafayette
- Ignacio Trueba Monje
Engineering · The Ohio State University
- Normand M. Laurendeau
Engineering · Purdue University West Lafayette
- Aman Satija
Engineering · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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