Area of research
Computational Mechanics · Fluid Flow and Transfer Processes
Research interest
Research interests include Rheology and Fluid Dynamics Studies, Surface Modification and Superhydrophobicity, Fluid Dynamics and Heat Transfer, and Fluid Dynamics and Turbulent Flows.
Recovery of postconsumer mechanically recycled polymers
Viscoelastic vortex street
Ultrahigh-Strain-Rate Mechanical Properties of Polystyrene near the Glass Transition Temperature
Extending the measurable limits of filament stretching extensional rheometry using time-temperature superposition
Recovery dynamics and polymer scission in capillary breakup extensional rheometry
Suppression of vortex-induced vibrations of a cylinder in inertial-elastic flow
Viscoelasticity in the flow suppresses one- and two-degree-of-freedom vortex-induced vibrations of a cylinder
Forced oscillations of a cylinder in the flow of viscoelastic fluids
Experimental investigation of vortex-induced vibrations of a flexibly mounted cylinder in a shear-thinning fluid
Complex flows of viscoelastic wormlike micelle solutions
Using Footpad Sculpturing to Enhance the Maneuverability and Speed of a Robotic Marangoni Surfer.
Vortex-induced vibrations of a cylinder in inelastic shear-thinning and shear-thickening fluids
Diffusive mass transfer from a Janus sphere
Printed microfluidic sweat sensing platform for cortisol and glucose detection.
A remotely controlled Marangoni surfer.
Improving heat and mass transfer rates through continuous drop-wise condensation.
Epoxy Resin-Encapsulated Polymer Microparticles for Room-Temperature Cold Sprayable Coatings.
Characterization of the cold spray deposition of a wide variety of polymeric powders
Forward, reverse, and no motion of Marangoni surfers under confinement
Oscillations of a cantilevered micro beam driven by a viscoelastic flow instability.
Translational and rotational motion of disk-shaped Marangoni surfers
Effects of particle stiffness on the extensional rheology of model rod-like nanoparticle suspensions.
Experimental study of dynamic contact angles on rough hydrophobic surfaces
Dynamic contact angle measurements on superhydrophobic surfaces
Collaborative Research: ISS: Marangoni-Driven Propulsion, Assembly, and Disassembly along Curved Interfaces and Membranes
Suppression of Flow-Induced Oscillations through the Addition of Viscoelasticity to the Fluid Flow
RAPID: Collaborative Research: Low-Cost, Non-invasive, Fast Sample Collection System for COVID-19 Viral Load Level Diagnosis: Point-of-Care and Environmental Testing
Collaborative Research: Individual and Collective Dynamics of Marangoni Surface Tension Effects between Particles
The Role of Interface Shape on Drag Reduction and Filtration using Superhydrophobic Surfaces
Turbulent Drag Reduction using Superhydrophobic Surfaces
CAREER: The Stability of Viscoelastic Wormlike Micelle Solutions in Extensional Flows
Collaborative Proposal: Theoretical and Experimental Analysis of Wormlike Micellar Solutions and Polymeric Fluids