Area of research
Computational Mechanics · Aerospace Engineering
Research interest
Research interests include Transonic, Wind tunnel, Airfoil, Subsonic and transonic wind tunnel, and Structural engineering.
Effect of Cavity Pressure on the Response of a Compliant Panel at Mach 2
Experimental Characterization of the Base Flow of a Slender Cone at Supersonic Speeds
Effect of Panel Compliance on Shockwave Boundary Layer Interaction at Mach 2
Surface Pressure Measurements on an Axisymmetric Body with Fins Using Pressure Sensitive Paint
Effect of Shock Impingement location on the Fluid-Structure Interaction over a Compliant Panel
Unstructured Large-Eddy Simulations of Rectangular Jet Screech: Assessment and Validation
Response of a Compliant Panel to Shock Boundary Layer Interaction at Mach 2
Fluid Structure Interaction on a Compliant Panel subject to Shock Boundary Layer Interaction
An Experimental Investigation into the Effect of Nozzle Spacing in Supersonic Twin Jets
Characterization of Bleedless Shockwave Boundary Layer Interaction Control for High Speed Intakes
Acoustic Liner Drag Measurements
Correction: Acoustic Liner Drag Measurements
Characterization of RAE 2822 Transonic Airfoil in FSU Polysonic Wind Tunnel Facility
Rocket Nozzle Thrust and Flow Field Measurements Using Particle Image Velocimetry
Correction: Characterization of RAE 2822 Transonic Airfoil in FSU Polysonic Wind Tunnel Facility
Studies on Microjet Control Effectiveness in High-Temperature Supersonic Impinging Jets
Development and Characterization of Ultra-High Frequency Resonance-Enhanced Microjet Actuator
Implementing Resonant Enhanced Pulsed Micro-Actuators for the Control of Supersonic Impinging Jets
Evaluation of the Sensing and Actuation Capabilities of Piezoelectric Composites in a Supersonic Impinging Jet Flowfield