İzzet Şahin
Engineering · Purdue University West Lafayette
Publications
21
Citations
217
Est. group size
~4
Recurring co-author estimate
Active years
7
Publishing since 2018
İzzet Şahin's research focuses on heat transfer and cooling techniques used in gas turbine engines, particularly the internal cooling channels and film cooling methods that keep turbine blades from overheating. Much of the work involves experiments and computer simulations of rotating cooling passages with different rib, pin-fin, and hole patterns designed to improve airflow and heat removal efficiency. This work is relevant to improving the durability and performance of jet engines and power-generation turbines.
Publication output rose from 2018 through a peak in 2021, then fluctuated with a smaller resurgence in 2023, suggesting a somewhat variable but ongoing publication pace over the last decade.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Experimental and Numerical Investigation of Roughness Structure in Wind Turbine Airfoil at Low Reynolds Number
International Journal of Thermodynamics · 2024
- Heat Transfer in a Rotating, Blade-Shaped, Two-Pass Cooling Channel With Various 45-Deg Rib Orientations
Journal of Thermal Science and Engineering Applications · 2022
- Heat Transfer in a Rotating, Two-Pass, Variable Aspect Ratio Cooling Channel With Profiled V-Shaped Ribs
Journal of Turbomachinery · 2021
- Heat Transfer in a Rotating, Blade-Shaped, Two-Pass Cooling Channel With a Variable Aspect Ratio
Journal of Turbomachinery · 2021
- Heat Transfer in Rotating, Trailing Edge, Converging Channels With Partial Length Pin-Fins
Journal of Turbomachinery · 2021
- Heat Transfer in Rotating, Trailing-Edge, Converging Channels With Smooth Walls and Pin-Fins
Journal of Turbomachinery · 2021
- Heat Transfer in a Rotating, Blade-Shaped, Two-Pass Cooling Channel With a Variable Aspect Ratio
2021
- Heat Transfer in Rotating, Trailing Edge, Converging Channels With Full and Partial Height Strip-Fins
2021
- Effect of 45-deg Rib Orientations on Heat Transfer in a Rotating Two-Pass Channel With Aspect Ratio from 4:1 to 2:1
Journal of Turbomachinery · 2020
- Transonic Turbine Vane Endwall Film Cooling Using the Pressure-Sensitive Paint Measurement Technique
Journal of Turbomachinery · 2020
- Heat Transfer in a Rotating, Two-Pass, Variable Aspect Ratio Cooling Channel With Profiled V-Shaped Ribs
2020
- Heat Transfer in Rotating, Trailing Edge, Converging Channels With Smooth Walls and Pin-Fins
2020
- Effect of 45-Deg Rib Orientations on Heat Transfer in a Rotating Two-Pass Channel With Aspect Ratio From 4:1 to 2:1
2019
- Transonic Turbine Vane Endwall Film Cooling Using PSP Measurement Technique
2019
- TurbineVane Endwall Film Cooling Comparison From Five Film-Hole Design Patterns and Three UpstreamInjection Angles
Journal of Thermal Science and Engineering Applications · 2018
- Journal of Turbomachinery×6
- Journal of Thermal Science and Engineering Applications×2
- arXiv (Cornell University)×2
- International Journal of Heat and Mass Transfer×1
- International Journal of Thermodynamics×1
- Chien-Shing Lee
Engineering · Purdue University West Lafayette
- Louis Christensen
Engineering · The Ohio State University
- Ketan Yogi
Engineering · Purdue University West Lafayette
- Gopinath Sahu
Engineering · Purdue University West Lafayette
- T. I‐P. Shih
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 20, 2026.
Claim or correct this profile