Area of research
Biomedical Engineering · Aerospace Engineering
Research interest
Research focused on Slug flow and Rotor (electric), with related work in Mechanics, Drag, Particle image velocimetry. Notable publications include 'Two-phase flow regime identification based on the liquid-phase velocity information and machine learning', 'Surface Engineered Biomimetic Inks Based on UV Cross-Linkable Wood Biopolymers for 3D Printing', and 'Experimental and numerical investigation of flow patterns and performance of a modified Savonius hydrokinetic rotor'.
Comparison of performance between two compound hydrokinetic rotors equipped separately with Bach and helical-bladed drag rotors
Effect of Lignin Structure Characteristics on the Performance of Lignin Based Phenol Formaldehyde Adhesives
Intelligent Noise Reduction for Alarm Events
Catalytic Hydrodehydroxylation of Biomass-Related Chemicals via Water-Mediated Hydrogen Heterolysis over a Pd–S Interface
Two-phase flow regime identification based on the liquid-phase velocity information and machine learning
Slug flow development study in a horizontal pipe using particle image velocimetry
Transient startup characteristics of a drag-type hydrokinetic turbine rotor
Flow and atomization characteristics of a twin-fluid nozzle with internal swirling and self-priming effects
Surface Engineered Biomimetic Inks Based on UV Cross-Linkable Wood Biopolymers for 3D Printing
Experimental and numerical investigation of flow patterns and performance of a modified Savonius hydrokinetic rotor