Area of research
Computational Mechanics · Fluid Flow and Transfer Processes
Research interest
Research interests include Combustion and flame dynamics, Advanced Combustion Engine Technologies, Combustion and Detonation Processes, and Heat transfer and supercritical fluids.
A physics-based approach to modeling real-fuel combustion chemistry - I. Evidence from experiments, and thermodynamic, chemical kinetic and statistical considerations
A physics-based approach to modeling real-fuel combustion chemistry – II. Reaction kinetic models of jet and rocket fuels
A Physics-based approach to modeling real-fuel combustion chemistry – III. Reaction kinetic model of JP10
Mid-infrared laser absorption tomography for quantitative 2D thermochemistry measurements in premixed jet flames
Advances and challenges in laminar flame experiments and implications for combustion chemistry
EAGER: Collaborative Research: A Novel Method for Laminar Burning Speed Measurement at Ultra High-Pressures
UNS: Collaborative Research: Spectral Energy Transfer in Turbulent Flames: From its Characterization to Subgrid Scale Models
2009 Multi Agency Coordination Committee for Combustion Research (MACCCR) Fuels Summit in Los Angeles, CA: September 15-17, 2009
Aerodynamics and Kinetics Effects on the Dynamics of Steady/Unsteady Laminar, Stretched Flames