Area of research
Computational Mechanics · Mechanics of Materials
Research interest
Research focused on Cavitation and Mechanics, with related work in Impeller, Vortex, Volute. Notable publications include 'Study on the trajectory of tip leakage vortex and energy characteristics of mixed-flow pump under cavitation conditions', 'Energy dissipation mechanism of tip-leakage cavitation in mixed-flow pump blades', and 'Vortex dynamics characteristics in the tip region based on Wray–Agarwal model'.
Application of the Wray-Agarwal turbulence model in the numerical simulation of unsteady cavitation around a three-dimensional hydrofoil
Energy dissipation mechanism of tip-leakage cavitation in mixed-flow pump blades
Vortex dynamics characteristics in the tip region based on Wray–Agarwal model
Global Sensitivity Analysis of Crop Parameters Based on AquaCrop Model
Numerical simulation of cryogenic cavitating flow by an extended transport-based cavitation model with thermal effects
Performance optimization of centrifugal pump based on particle swarm optimization and entropy generation theory
Impact characteristics and erosion mechanism of solid particles in a centrifugal pump
Study on the trajectory of tip leakage vortex and energy characteristics of mixed-flow pump under cavitation conditions