Lappeenranta
Finland
LUT University
Industrial-scale, Green hydrogen, Water electrolysis, PEM, modeling, simulation
Industrial-scale, atmospheric, alkaline water electrolysis, green hydrogen, simulation, Energy efficiency
Industrial-scale, atmospheric, alkaline water electrolysis, Simulation, Energy Efficiency
Alkaline water electrolysis, Bipolar stacks, Two-phase flow, Stray currents
Baseload, Battery Energy Storage System (BESS), Dispatchable Power Plant, Renewable Electricity, Solar Photovoltaics (PV), Wind Power
Green hydrogen, Water Electrolysis, Dynamic modeling, Equivalent circuit
Alkaline water electrolysis, Power quality, Waveform analysis, Dynamic modelling
Baseload green hydrogen, Alkaline Water Electrolysis, Solar PV-Wind power, Battery Energy Storage System, Hydrogen storage, Off-grid system optimization.
renewable hydrogen, cost optimization, sector integration, Thermal Energy Storage (TES), Heat Pump, levelized cost of heat (LCOH)
renewable hydrogen, cost optimization, sector integration, Thermal energy storage (TES), Heat pump, levelized cost of heat (LCOH)
Alkaline water electrolysis, Power quality, Waveform analysis, Static polarization curve
Green hydrogen, PEM water electrolysis, Power Quality, Dynamic operation, Efficiency
off-grid energy system, photovoltaics (PV), wind power, Energy Efficiency, heating system, Optimization
Electric vehicle, cost optimization, Intelligent control, Nordic conditions, solar photovoltaics (PV)
Life Cycle Assessment, carbon footprint, biodiversity, Land use, Power-to-X, CO2-to-X
renewable hydrogen, cost optimization, power-to-x, thermal energy storage (TES), Heat pump, levelized cost of DAC (LCODAC)
battery energy storage system (BESS), cost-optimization, Energy Efficiency, Intelligent control, Nordic conditions, solar photovoltaics (PV)