 
															助理教授
建造、环境及工程学系
联络方法
电话: +852 2176 1826
					 TEACHING AREAS 
							
			
			
		
						
				- Combustion
- Aviation Propulsion Systems
- Thermodynamics
- Gas Turbine Design and Performance
- Engineering Science and Physics 
- Differential Equations 
- Engineering Drawing 
					 ACADEMIC QUALIFICATIONS 
							
			
			
		
						
				| 2009 | PhD in Aerospace Engineering, University of Toronto, Canada | 
|---|---|
| 2003 | BSc in Mechanical Engineering, Queen’s University, Canada | 
					 EMPLOYMENT 
							
			
			
		
						
				
| 2019 – Present | Department of Construction, Environment and Engineering, Technological and Higher Education Institute of Hong Kong | 
|---|---|
| 2011 – 2016 | Post-Doctoral Fellow, Institute for Aerospace Studies, University of Toronto (UTIAS) | 
| 2009 – 2011 | Research Associate, Department of Engineering, University of Cambridge | 
					 SELECTED PUBLICATION 
							
			
			
		
						
				- Yuen, F. T. C., Liang, J. J., Young, N. G., Oskooei, S., Sreekanth, S., and Gülder, Ö. L., “Novel Experimental Approach to Studying the Thermal Stability and Coking Propensity of Jet Fuel,” Energy and Fuels, Vol. 31, pp.3585-3591, 2017.
- Yuen, F. T. C., and Gülder, Ö. L., “Turbulent premixed flame front dynamics and implications for limits of flamelet hypothesis,” Proceedings of the Combustion Institute, Vol. 34, pp.1393-1400, 2013.
- Hernández-Pérez, F. E., Yuen, F. T. C., Groth, C. P. T., Gülder, Ö. L., “LES of a laboratory-scale turbulent premixed Bunsen flame using FSD, PCM-FPI and thickened flame models,” Proceedings of the Combustion Institute, Vol. 33, pp.1365-1371, 2011.
- Yuen, F. T. C., and Gülder, Ö. L., “Dynamics of lean-premixed turbulent combustion at high turbulence intensities,” Combustion Science and Technology, Vol. 182, Issue 4-6, pp. 544-558, 2010.
- Yuen, F. T. C., and Gülder, Ö. L., “Investigation of Dynamics of Lean Turbulent Premixed Flames by Rayleigh Imaging,” AIAA Journal, Vol. 47, No. 12, pp. 2964-2973, 2009.
- Yuen, F. T. C., and Gülder, Ö. L., “Premixed turbulent flame front structure investigation by Rayleigh scattering in the thin reaction zone regime,” Proceedings of the Combustion Institute, Vol. 32, pp.1747-1754, 2009.
					 RESEARCH INTERESTS 
							
			
			
		
						
				- Combustion Experiments with Optical Diagnostics 
- Turbulent Premixed Flame Structure and Dynamics 
- Gas Turbine Emission and Sampling and Control 
- Jet Fuel Thermal Stability in Gas Turbine Engines 
- Accessibility Improvement for Aviation Industry 
- Automation in Aircraft Maintenance 
