Area of research
Computational Mechanics · Ocean Engineering
Research interest
Research focused on Mechanics and Inviscid flow, with related work in Turbulence, Viscosity, Schlieren. Notable publications include 'Explicit discontinuous spectral element method with entropy generation based artificial viscosity for shocked viscous flows', 'Shock capturing with entropy-based artificial viscosity for staggered grid discontinuous spectral element method', and 'A Deep Learning Approach to Identifying Shock Locations in Turbulent Combustion Tensor Fields'.
IN MEMORIAM: PROFESSOR DARRELL W. PEPPER â A TRIBUTE TO AN EXCEPTIONAL ENGINEERING EDUCATOR AND RESEARCHER
Compressibility effects on energy exchange mechanisms in a spatially developing plane free shear layer
Compressibility effects on the transition to turbulence in a spatially developing plane free shear layer
Modal explicit filtering for large eddy simulation in discontinuous spectral element method
A Deep Learning Approach to Identifying Shock Locations in Turbulent Combustion Tensor Fields
Explicit discontinuous spectral element method with entropy generation based artificial viscosity for shocked viscous flows
Shock capturing with entropy-based artificial viscosity for staggered grid discontinuous spectral element method
Effect of turbulent inflow boundary condition in LES of flow over a backward-facing step using spectral element method