Area of research
Mechanics of Materials · Mechanical Engineering
Research interest
Research interests include Turbine, Renewable energy, Particle swarm optimization, Mechanics, Pumped-storage hydroelectricity, and Small hydro.
Techno-economic benefits deriving from optimal scheduling of a Virtual Power Plant: Pumped hydro combined with wind farms
CFD-based optimization of scroll compressor design and uncertainty quantification of the performance under geometrical variations
Optimal assets management of a water distribution network for leakage minimization based on an innovative index
Unstable behaviour of pump-turbines and its effects on power regulation capacity of pumped-hydro energy storage plants
Risk of penstock fatigue in pumped-storage power plants operating with variable speed in pumping mode
A novel two-swarm based PSO search strategy for optimal short-term hydro-thermal generation scheduling
Numerical Simulation of a Pump–Turbine Transient Load Following Process in Pump Mode
Accurate estimation model for small and micro hydropower plants costs in hybrid energy systems modelling
Numerical Analysis of the Transient Behaviour of a Variable Speed Pump-Turbine during a Pumping Power Reduction Scenario
Experimental Characterization of a Pump–Turbine in Pump Mode at Hump Instability Region
Analysis of the Unstable Behavior of a Pump-Turbine in Turbine Mode: Fluid-Dynamical and Spectral Characterization of the S-shape Characteristic
A new generation of small hydro and pumped-hydro power plants: Advances and future challenges
A PSO (particle swarm optimization)-based model for the optimal management of a small PV(Photovoltaic)-pump hydro energy storage in a rural dry area
Adaptive acceleration coefficients for a new search diversification strategy in particle swarm optimization algorithms
Numerical Analyses of Cavitating Flow in a Pelton Turbine
Using splitter blades to improve suction performance of centrifugal impeller pumps