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Bio
Current research:
Premixed flame studies of alternative and traditional fuels:
Non-premixed flame studies of alternative and traditional fuels:
Laser diagnostics for NO measurements
Temperature and species diagnostics using raman spectroscopy
Alternative-fuel ignition properties
Stirling-engine burner technologies for biomass cogeneration
Gas-solid heat transfer effects on flames in small channels
"Hybrid" flames of gaseous and solid fuels
Droplet vaporization of biofuel/petrofuel blends
Metal-water reaction for hydrogen production
Honours thesis projects
Graduate research projects
Areas of interest:
Primary Research Theme: Combustion and Energy Systems
Research Lab/Group: Alternative Fuels
The development of technologies that do not rely on fossil fuels is a major challenge facing society today. Our research program is aimed at the development and validation of models for the combustion properties of alternative and sustainable (bio-derived) fuels through a complementary experimental, computational, and analytical modeling approach. We are also investigating flames of a mixture of solid and gaseous fuels, combustion in heat recirculating burners for Stirling engine generators, the vaporization properties of biofuel/petrofuel blends, and the reaction of metal-water mixtures for hydrogen production.
Premixed flame studies of alternative and traditional fuels:
Non-premixed flame studies of alternative and traditional fuels:
Laser diagnostics for NO measurements
Temperature and species diagnostics using raman spectroscopy
Alternative-fuel ignition properties
Stirling-engine burner technologies for biomass cogeneration
Gas-solid heat transfer effects on flames in small channels
"Hybrid" flames of gaseous and solid fuels
Droplet vaporization of biofuel/petrofuel blends
Metal-water reaction for hydrogen production
Honours thesis projects
Graduate research projects
Areas of interest:
Primary Research Theme: Combustion and Energy Systems
Research Lab/Group: Alternative Fuels
The development of technologies that do not rely on fossil fuels is a major challenge facing society today. Our research program is aimed at the development and validation of models for the combustion properties of alternative and sustainable (bio-derived) fuels through a complementary experimental, computational, and analytical modeling approach. We are also investigating flames of a mixture of solid and gaseous fuels, combustion in heat recirculating burners for Stirling engine generators, the vaporization properties of biofuel/petrofuel blends, and the reaction of metal-water mixtures for hydrogen production.
Research Interests
Papers共 25 篇Author StatisticsCo-AuthorSimilar Experts
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Applications in Energy and Combustion Science (2023): 100130-100130
Proceedings of the Combustion Instituteno. 1 (2022): 521-529
Applications in Energy and Combustion Science (2021): 100028
JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE ASMEno. 11 (2021)
Jan Palečka,Samuel Goroshin,Andrew J. Higgins,Yuriy Shoshin,Philip de Goey,Jean-Régis Angilella,Hergen Oltmann, Andreas Stein,Burkhard Schmitz, Antonio Verga,Sébastien Vincent-Bonnieu, Wim Sillekens,
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