Area of research
Aerospace Engineering · Computational Mechanics
Research interest
Research interests include Detonation, Mechanics, Combustion, Combustor, Heptane, and Eulerian path.
Structure and dynamics of spray detonation in n-heptane droplet/vapor/air mixtures
Rotating detonative combustion in partially pre-vaporized dilute n-heptane sprays: Droplet size and equivalence ratio effects
Eulerian-Lagrangian modelling of detonative combustion in two-phase gas-droplet mixtures with OpenFOAM: Validations and verifications
Origin and chaotic propagation of multiple rotating detonation waves in hydrogen/air mixtures
Combustion mode and wave multiplicity in rotating detonative combustion with separate reactant injection
Large eddy simulation of turbulent supersonic hydrogen flames with OpenFOAM
Eulerian<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" altimg="si1.svg"><mml:mrow><mml:mo>-</mml:mo></mml:mrow></mml:math>Lagrangian modelling of rotating detonative combustion in partially pre-vaporized n-heptane sprays with hydrogen addition
Large eddy simulation of non-reacting flow and mixing fields in a rotating detonation engine
Numerical simulation of flame acceleration and deflagration-to-detonation transition in ammonia-hydrogen–oxygen mixtures
Effects of Variable Total Pressures on Instability and Extinction of Rotating Detonation Combustion
Modelling n-heptane dilute spray flames in a model supersonic combustor fueled by hydrogen