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个人简介
Working within the Acoustics, Fluid Mechanics, Turbomachinery and Thermodynamics Division of the Department of Engineering, Dr Mastorakos’s research focuses on combustion and reacting flows. His current research concentrates on simulations and experiments of turbulent combustion, and in particular on "flames at the limit"; such as the ignition and extinction phenomena that have applications in diesel engines and gas turbines.
His work on simulations and simulation tools includes reduced chemical mechanism construction, laminar flames, Direct Numerical Simulations of turbulent flames, and simulations of non-premixed reacting flows with the Conditional Moment Closure (CMC) method. His research team’s CMC code is currently being used by various laboratories across the world.
On the experimental side, his work includes combustion in porous media for hydrogen production for fuel cells, auto-ignition and spark ignition of turbulent non-premixed flames, spray combustion and blow-off of flames. Spark ignition of non-premixed combustion has proven to be a very fruitful research topic. His team has recently performed various new experiments with igniting jets, counterflows, bluff-body flames and heptane sprays.
His work on simulations and simulation tools includes reduced chemical mechanism construction, laminar flames, Direct Numerical Simulations of turbulent flames, and simulations of non-premixed reacting flows with the Conditional Moment Closure (CMC) method. His research team’s CMC code is currently being used by various laboratories across the world.
On the experimental side, his work includes combustion in porous media for hydrogen production for fuel cells, auto-ignition and spark ignition of turbulent non-premixed flames, spray combustion and blow-off of flames. Spark ignition of non-premixed combustion has proven to be a very fruitful research topic. His team has recently performed various new experiments with igniting jets, counterflows, bluff-body flames and heptane sprays.
研究兴趣
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AIAA SCITECH 2024 Forum (2024)
Applied Energy (2024): 123075
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2024): 633-654
William I. F. David,Gerry D. Agnew,Rene Banares-Alcantara, James Barth,John Bogild Hansen,Pierre Brequigny,Mara de Joannon, Sofia Furstenberg Stott, Conor Furstenberg Stott, Andrea Guati-Rojo,Marta Hatzell,Douglas R. Macfarlane,
JOURNAL OF PHYSICS-ENERGYno. 2 (2024): 021501
Applied Thermal Engineeringpp.123294, (2024)
JOURNAL OF PROPULSION AND POWERno. 5 (2023): 728-742
Maritime Transport Research (2023): 100099
INTERNATIONAL JOURNAL OF SPRAY AND COMBUSTION DYNAMICSno. 2 (2023): 91-104
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