Area of research
Computational Mechanics · Mechanical Engineering
Research interest
Research interests include Combustion and flame dynamics, Advanced Thermodynamic Systems and Engines, Rocket and propulsion systems research, and Advanced Combustion Engine Technologies.
Generalized Integral Formulations of Turbulent Boundary Layers for Arbitrary Prandtl Power-Law Exponents
Closed-Form Analytical Solutions for Various Thermoacoustic Properties in Rijke Tubes With Different Endpoint Conditions
On Prandtl's turbulent flow expressions for arbitrary power-law and shear-stress exponents
Twofold application of the dual reciprocity boundary element method to thermoacoustic analysis in two-dimensional space
Predicting bifurcation and amplitude death characteristics of thermoacoustic instabilities from PINNs-derived van der Pol oscillators
Outlet boundary condition and mean temperature gradient effects on the minimum acoustics disturbances energy in triggering nonlinear thermoacoustic instability
Characterization of the acoustic pressure waveforms in Rijke tubes with spatially varying heat sources and temperature distributions
Thermoacoustic velocity and pressure oscillations in one-dimensional combustors with spatially varying heat sources and thermal distributions
Effect of Various Flame Temperature Distributions on Pressure and Velocity Waveforms in Rijke Tubes
Acoustic Velocity and Heat Release Mode Shapes and Frequencies in a Circular Tube for an Arbitrary Temperature Distribution
Predicting thermoacoustic stability characteristics of longitudinal combustors using different endpoint conditions with a low Mach number flow
Acoustic Pressure Mode Shapes and Frequencies in a Circular Tube for an Arbitrary Temperature Distribution
Gravitational effects on intraocular pressure and ocular perfusion pressure
Different perspectives on predicting the thermoacoustic energy conversion response in a Rijke tube